document.write("
"); document.write("
Chen,\ X.W.*\ ; Don,\ A.S.*\ ; Fedorova,\ M.*\ ; Harayama,\ T.*\ ; Krahmer,\ N.\ ; Nagata,\ S.*\ ; Narayan,\ P.*\ ; Nicholas,\ D.*\ ; Nowinski,\ S.M.*\ ; Saheki,\ Y.*\ ; Semenkovich,\ C.F.*\ ; Zhao,\ X.*\ ; Zou,\ Y.*
"); document.write("
Time for lipid cell biology.
"); document.write("
Nat. Cell Biol. 27, 169-174 (2025)
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"); document.write("
"); document.write("
Fratton,\ A.\ ; Bonev,\ B.
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Deciphering glioma susceptibility.
"); document.write("
Nat. Cell Biol. 27, 1603-1604 (2025)
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Willem,\ T.\ ; Shitov,\ V.A.\ ; Luecken,\ M.\ ; Kilbertus,\ N.\ ; Bauer,\ S.\ ; Piraud,\ M.\ ; Buyx,\ A.*\ ; Theis,\ F.J.
"); document.write("
Biases in machine-learning models of human single-cell data.
"); document.write("
Nat. Cell Biol. 27, 384–392 (2025)
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"); document.write("
Al-Refaie,\ N.\ ; Padovani,\ F.\ ; Hornung,\ J.\ ; Pudelko,\ L\ ; Binando,\ F.\ ; Del Carmen Fabregat,\ A.*\ ; Zhao,\ Q.*\ ; Towbin,\ B.D.*\ ; Cenik,\ E.S.*\ ; Stroustrup,\ N.*\ ; Padeken,\ J.*\ ; Schmoller,\ K.M.\ ; Cabianca,\ D.S.
"); document.write("
Fasting shapes chromatin architecture through an mTOR/RNA Pol I axis.
"); document.write("
Nat. Cell Biol., DOI: 10.1038/s41556-024-01512-w (2024)
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"); document.write("
Dai,\ E.*\ ; Chen,\ X.*\ ; Linkermann,\ A.*\ ; Jiang,\ X.*\ ; Kang,\ R.*\ ; Kagan,\ V.E.*\ ; Bayir,\ H.*\ ; Yang,\ W.S.*\ ; Garcia-Saez,\ A.J.*\ ; Ioannou,\ M.S.*\ ; Janowitz,\ T.*\ ; Ran,\ Q.*\ ; Gu,\ W.*\ ; Gan,\ B.*\ ; Krysko,\ D.V.*\ ; Zhu,\ X.*\ ; Wang,\ J.*\ ; Krautwald,\ S.*\ ; Toyokuni,\ S.*\ ; Xie,\ Y.*\ ; Greten,\ F.R.*\ ; Yi,\ Q.*\ ; Schick,\ J.\ ; Liu,\ J.*\ ; Gabrilovich,\ D.I.*\ ; Zeh,\ H.J.*\ ; Zhang,\ D.D.*\ ; Yang,\ M.*\ ; Iovanna,\ J.L.*\ ; Kopf,\ M.*\ ; Adolph,\ T.E.*\ ; Chi,\ J.T.*\ ; Li,\ C.*\ ; Ichijo,\ H.*\ ; Karin,\ M.*\ ; Sankaran,\ V.G.*\ ; Zou,\ W.*\ ; Galluzzi,\ L.*\ ; Bush,\ A.I.*\ ; Li,\ B.*\ ; Melino,\ G.*\ ; Baehrecke,\ E.H.*\ ; Lotze,\ M.T.*\ ; Klionsky,\ D.J.*\ ; Stockwell,\ B.R.*\ ; Kroemer,\ G.*\ ; Tang,\ D.*
"); document.write("
A guideline on the molecular ecosystem regulating ferroptosis.
"); document.write("
Nat. Cell Biol., DOI: 10.1038/s41556-024-01360-8 (2024)
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"); document.write("
Herranz,\ N.*\ ; Gallage,\ S.*\ ; Mellone,\ M.*\ ; Wuestefeld,\ T.*\ ; Klotz,\ S.*\ ; Hanley,\ C.J.*\ ; Raguz,\ S.*\ ; Acosta,\ J.C.*\ ; Innes,\ A.J.*\ ; Banito,\ A.*\ ; Georgilis,\ A.*\ ; Montoya,\ A.*\ ; Wolter,\ K.*\ ; Dharmalingam,\ G.*\ ; Faull,\ P.*\ ; Carroll,\ T.*\ ; Martínez-Barbera,\ J.P.*\ ; Cutillas,\ P.*\ ; Reisinger,\ F.\ ; Heikenwälder,\ M.\ ; Miller,\ R.A.*\ ; Withers,\ D.*\ ; Zender,\ L.*\ ; Thomas,\ G.J.*\ ; Gil,\ J.*
"); document.write("
Author Correction: mTOR regulates MAPKAPK2 translation to control the senescence-associated secretory phenotype.
"); document.write("
Nat. Cell Biol. 26:1019 (2024)
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"); document.write("
Liu,\ B.*\ ; He,\ Y.*\ ; Wu,\ X.*\ ; Lin,\ Z.*\ ; Ma,\ J.*\ ; Qiu,\ Y.*\ ; Xiang,\ Y.*\ ; Kong,\ F.*\ ; Lai,\ F.*\ ; Pal,\ M.\ ; Wang,\ P.*\ ; Ming,\ J.*\ ; Zhang,\ B.*\ ; Wang,\ Q.*\ ; Wu,\ J.*\ ; Xia,\ W.*\ ; Shen,\ W.*\ ; Na,\ J.*\ ; Torres-Padilla,\ M.E.\ ; Li,\ J.*\ ; Xie,\ W.*
"); document.write("
Mapping putative enhancers in mouse oocytes and early embryos reveals TCF3/12 as key folliculogenesis regulators.
"); document.write("
Nat. Cell Biol. 26, 962-974 (2024)
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"); document.write("
Nakamura,\ T.\ ; Conrad,\ M.
"); document.write("
Exploiting ferroptosis vulnerabilities in cancer.
"); document.write("
Nat. Cell Biol., DOI: 10.1038/s41556-024-01425-8 (2024)
"); document.write("
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"); document.write("
Reverte-Salisa,\ L.*\ ; Siddig,\ S.*\ ; Hildebrand,\ S.*\ ; Yao,\ X.*\ ; Zurkovic,\ J.*\ ; Jaeckstein,\ M.Y.*\ ; Heeren,\ J.*\ ; Lezoualc’h,\ F.*\ ; Krahmer,\ N.\ ; Pfeifer,\ A.*
"); document.write("
EPAC1 enhances brown fat growth and beige adipogenesis.
"); document.write("
Nat. Cell Biol. 26, 113–123 (2024)
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Alkhoury,\ C.*\ ; Henneman,\ N.F.*\ ; Petrenko,\ V.*\ ; Shibayama,\ Y.*\ ; Segaloni,\ A.*\ ; Gadault,\ A.*\ ; Nemazanyy,\ I.*\ ; Le Guillou,\ E.*\ ; Wolide,\ A.D.\ ; Antoniadou,\ K.*\ ; Tong,\ X.*\ ; Tamaru,\ T.*\ ; Ozawa,\ T.*\ ; Girard,\ M.*\ ; Hnia,\ K.*\ ; Lutter,\ D.\ ; Dibner,\ C.*\ ; Panasyuk,\ G.*
"); document.write("
Class 3 PI3K coactivates the circadian clock to promote rhythmic de novo purine synthesis.
"); document.write("
Nat. Cell Biol. 25, 975-988 (2023)
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"); document.write("
"); document.write("
Deshwal,\ S.*\ ; Onishi,\ M.*\ ; Tatsuta,\ T.*\ ; Bartsch,\ T.*\ ; Cors,\ E.*\ ; Ried,\ K.*\ ; Lemke,\ K.*\ ; Nolte,\ H.*\ ; Giavalisco,\ P.*\ ; Langer,\ T.*
"); document.write("
Mitochondria regulate intracellular coenzyme Q transport and ferroptotic resistance via STARD7.
"); document.write("
Nat. Cell Biol. 25, 246-257 (2023)
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"); document.write("
"); document.write("
Gaggioli,\ V.*\ ; Lo,\ C.S.Y.*\ ; Reveron-Gomez,\ N.*\ ; Jasencakova,\ Z.*\ ; Domenech,\ H.*\ ; Nguyen,\ H.*\ ; Sidoli,\ S.*\ ; Tvardovskiy,\ A.\ ; Uruci,\ S.*\ ; Slotman,\ J.A.*\ ; Chai,\ Y.*\ ; Gonçalves,\ J.G.S.C.S.*\ ; Manolika,\ E.M.*\ ; Jensen,\ O.N.*\ ; Wheeler,\ D.*\ ; Sridharan,\ S.*\ ; Chakrabarty,\ S.*\ ; Demmers,\ J.*\ ; Kanaar,\ R.*\ ; Groth,\ A.*\ ; Taneja,\ N.*
"); document.write("
Dynamic de novo heterochromatin assembly and disassembly at replication forks ensures fork stability.
"); document.write("
Nat. Cell Biol. 25, 1017-1032 (2023)
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"); document.write("
"); document.write("
Griess,\ K.*\ ; Rieck,\ M.*\ ; Müller,\ N.*\ ; Karsai,\ G.*\ ; Hartwig,\ S.*\ ; Pelligra,\ A.*\ ; Hardt,\ R.*\ ; Schlegel,\ C.*\ ; Kuboth,\ J.*\ ; Uhlemeyer,\ C.*\ ; Trenkamp,\ S.*\ ; Jeruschke,\ K.*\ ; Weiss,\ J.*\ ; Peifer-Weiss,\ L.*\ ; Xu,\ W.\ ; Cames,\ S.*\ ; Yi,\ X.*\ ; Cnop,\ M.*\ ; Beller,\ M.*\ ; Stark,\ H.*\ ; Kondadi,\ A.K.*\ ; Reichert,\ A.S.*\ ; Markgraf,\ D.*\ ; Wammers,\ M.*\ ; Häussinger,\ D.*\ ; Kuss,\ O.*\ ; Lerch,\ S.*\ ; Eizirik,\ D.L.*\ ; Lickert,\ H.\ ; Lammert,\ E.*\ ; Roden,\ M.*\ ; Winter,\ D.*\ ; Al-Hasani,\ H.*\ ; Höglinger,\ D.*\ ; Hornemann,\ T.*\ ; Brüning,\ J.C.*\ ; Belgardt,\ B.F.*
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Sphingolipid subtypes differentially control proinsulin processing and systemic glucose homeostasis.
"); document.write("
Nat. Cell Biol. 25, 20–29 (2023)
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"); document.write("
Liang,\ D.*\ ; Jiang,\ X.*
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START smuggling CoQ to fight ferroptosis.
"); document.write("
Nat. Cell Biol. 25, 207-208 (2023)
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"); document.write("
"); document.write("
Lotfollahi,\ M.\ ; Rybakov,\ S.\ ; Hrovatin,\ K.\ ; Hediyeh-Zadeh,\ S.\ ; Talavera Lopez,\ C.N.\ ; Misharin,\ A.V.*\ ; Theis,\ F.J.
"); document.write("
Biologically informed deep learning to query gene programs in single-cell atlases.
"); document.write("
Nat. Cell Biol. 25, 337-350 (2023)
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"); document.write("
"); document.write("
Mishima,\ E.\ ; Conrad,\ M.
"); document.write("
Nonmetabolic role for CKB in ferroptosis.
"); document.write("
Nat. Cell Biol. 25, 633-634 (2023)
"); document.write("
"); document.write("
"); document.write("
Noack,\ F.\ ; Vangelisti,\ S.\ ; Ditzer,\ N.*\ ; Chong,\ F.\ ; Albert,\ M.*\ ; Bonev,\ B.
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Joint epigenome profiling reveals cell-type-specific gene regulatory programmes in human cortical organoids.
"); document.write("
Nat. Cell Biol. 12, 1873-1883 (2023)
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"); document.write("
Truong,\ D.J.J.\ ; Armbrust,\ N.\ ; Geilenkeuser,\ J.\ ; Lederer,\ E.-M.\ ; Santl,\ T.\ ; Beyer,\ M.\ ; Ittermann,\ S.\ ; Steinmaßl,\ E.\ ; Dyka,\ M.\ ; Raffl,\ G.\ ; Phlairaharn,\ T.\ ; Greisle,\ T.\ ; Živanić,\ M.\ ; Grosch,\ M.\ ; Drukker,\ M.\ ; Westmeyer,\ G.G.
"); document.write("
Intron-encoded cistronic transcripts for minimally invasive monitoring of coding and non-coding RNAs.
"); document.write("
Nat. Cell Biol. 24, 1666-1676 (2022)
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"); document.write("
Böttcher,\ A.\ ; Büttner,\ M.\ ; Tritschler,\ S.\ ; Sterr,\ M.\ ; Aliluev,\ A.\ ; Oppenländer,\ L.\ ; Burtscher,\ I.\ ; Sass,\ S.\ ; Irmler,\ M.\ ; Beckers,\ J.\ ; Ziegenhain,\ C.*\ ; Enard,\ W.*\ ; Schamberger,\ A.C.\ ; Verhamme,\ F.M.\ ; Eickelberg,\ O.\ ; Theis,\ F.J.\ ; Lickert,\ H.
"); document.write("
Author Correction: Non-canonical Wnt/PCP signalling regulates intestinal stem cell lineage priming towards enteroendocrine and Paneth cell fates.
"); document.write("
Nat. Cell Biol. 23, 566-576 (2021)
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"); document.write("
"); document.write("
Böttcher,\ A.\ ; Büttner,\ M.\ ; Tritschler,\ S.\ ; Sterr,\ M.\ ; Aliluev,\ A.\ ; Oppenländer,\ L.\ ; Burtscher,\ I.\ ; Sass,\ S.\ ; Irmler,\ M.\ ; Beckers,\ J.\ ; Ziegenhain,\ C.*\ ; Enard,\ W.*\ ; Schamberger,\ A.C.\ ; Verhamme,\ F.M.\ ; Eickelberg,\ O.\ ; Theis,\ F.J.\ ; Lickert,\ H.
"); document.write("
Non-canonical Wnt/PCP signalling regulates intestinal stem cell lineage priming towards enteroendocrine and Paneth cell fates.
"); document.write("
Nat. Cell Biol. 23, 23-31 (2021)
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"); document.write("
Burton,\ A.\ ; Torres-Padilla,\ M.E.
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Deconfining heterochromatin for expression.
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Nat. Cell Biol. 23, 814-816 (2021)
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Canat,\ A.\ ; Torres-Padilla,\ M.E.
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Retrotransposing a promoter for development.
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Nat. Cell Biol. 23, 1221-1223 (2021)
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Scheibner,\ K.\ ; Schirge,\ S.\ ; Burtscher,\ I.\ ; Büttner,\ M.\ ; Sterr,\ M.\ ; Yang,\ D.*\ ; Böttcher,\ A.\ ; Ansarullah\ ; Irmler,\ M.\ ; Beckers,\ J.\ ; Cernilogar,\ F.M.*\ ; Schotta,\ G.*\ ; Theis,\ F.J.\ ; Lickert,\ H.
"); document.write("
Epithelial cell plasticity drives endoderm formation during gastrulation.
"); document.write("
Nat. Cell Biol. 23, 692-703 (2021)
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"); document.write("
"); document.write("
Scheibner,\ K.\ ; Schirge,\ S.\ ; Burtscher,\ I.\ ; Büttner,\ M.\ ; Sterr,\ M.\ ; Yang,\ D.*\ ; Böttcher,\ A.\ ; Ansarullah\ ; Irmler,\ M.\ ; Beckers,\ J.\ ; Cernilogar,\ F.M.*\ ; Schotta,\ G.*\ ; Theis,\ F.J.\ ; Lickert,\ H.
"); document.write("
Publisher Correction: Epithelial cell plasticity drives endoderm formation during gastrulation.
"); document.write("
Nat. Cell Biol., DOI: 10.1038/s41556-021-00735-5 (2021)
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"); document.write("
Truong,\ D.J.J.\ ; Phlairaharn,\ T.\ ; Eßwein,\ B.\ ; Gruber,\ C.\ ; Tümen,\ D.\ ; Baligács,\ E.\ ; Armbrust,\ N.\ ; Vaccaro,\ F.L.\ ; Lederer,\ E.-M.\ ; Beck,\ E.M.\ ; Geilenkeuser,\ J.\ ; Göppert,\ S.\ ; Krumwiede,\ L.\ ; Grätz,\ C.\ ; Raffl,\ G.\ ; Schwarz,\ D.\ ; Zirngibl,\ M.\ ; Živanić,\ M.\ ; Beyer,\ M.\ ; Körner,\ J.D.\ ; Santl,\ T.\ ; Evsyukov,\ V.*\ ; Strauß,\ T.*\ ; Schwarz,\ S.C.*\ ; Höglinger,\ G.U.*\ ; Heutink,\ P.*\ ; Doll,\ S.\ ; Conrad,\ M.\ ; Giesert,\ F.\ ; Wurst,\ W.\ ; Westmeyer,\ G.G.
"); document.write("
Non-invasive and high-throughput interrogation of exon-specific isoform expression.
"); document.write("
Nat. Cell Biol. 23, 652-663 (2021)
"); document.write("
"); document.write("
"); document.write("
Burton,\ A.\ ; Brochard,\ V.*\ ; Galan,\ C.*\ ; Ruiz-Morales,\ E.R.*\ ; Rovira,\ Q.*\ ; Rodriguez-Terrones,\ D.*\ ; Kruse,\ K.*\ ; Le Gras,\ S.*\ ; Udayakumar,\ V.S.*\ ; Chin,\ H.G.*\ ; Eid,\ A.\ ; Liu,\ X.*\ ; Wang,\ C.*\ ; Gao,\ S.*\ ; Pradhan,\ S.*\ ; Vaquerizas,\ J.M.*\ ; Beaujean,\ N.*\ ; Jenuwein,\ T.*\ ; Torres-Padilla,\ M.E.
"); document.write("
Heterochromatin establishment during early mammalian development is regulated by pericentromeric RNA and characterized by non-repressive H3K9me3.
"); document.write("
Nat. Cell Biol. 22, 767-778 (2020)
"); document.write("
"); document.write("
"); document.write("
Neagu,\ A.*\ ; van Genderen,\ E.*\ ; Escudero,\ I.*\ ; Verwegen,\ L.*\ ; Kurek,\ D.*\ ; Lehmann,\ J.*\ ; Stel,\ J.*\ ; Dirks,\ R.A.M.*\ ; van Mierlo,\ G.*\ ; Maas,\ A.*\ ; Eleveld,\ C.*\ ; Ge,\ Y.*\ ; den Dekker,\ A.T.*\ ; Brouwer,\ R.W.W.*\ ; van IJcken,\ W.F.J.*\ ; Modic,\ M.*\ ; Drukker,\ M.\ ; Jansen,\ J.H.*\ ; Rivron,\ N.C.*\ ; Baart,\ E.B.*\ ; Marks,\ H.*\ ; ten Berge,\ D.*
"); document.write("
In vitro capture and characterization of embryonic rosette-stage pluripotency between naive and primed states.
"); document.write("
Nat. Cell Biol. 22, 534-545 (2020)
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"); document.write("
"); document.write("
Nakamura,\ K.*\ ; Saredi,\ G.*\ ; Becker,\ J.R.*\ ; Foster,\ B.\ ; Nguyen,\ N.V.*\ ; Beyer,\ T.E.*\ ; Cesa,\ L.C.*\ ; Faull,\ P.A.*\ ; Lukauskas,\ S.\ ; Frimurer,\ T.*\ ; Chapman,\ J.R.*\ ; Bartke,\ T.\ ; Groth,\ A.*
"); document.write("
H4K20meO recognition by BRCA1-BARD1 directs homologous recombination to sister chromatids.
"); document.write("
Nat. Cell Biol. 21, 311-318 (2019)
"); document.write("
"); document.write("
"); document.write("
Jiang,\ D.\ ; Correa-Gallegos,\ D.\ ; Christ,\ S.\ ; Stefanska,\ A.\ ; Liu,\ J.\ ; Ramesh,\ P.\ ; Rajendran,\ V.\ ; De Santis,\ M.\ ; Wagner,\ D.E.\ ; Rinkevich,\ Y.
"); document.write("
Two succeeding fibroblastic lineages drive dermal development and the transition from regeneration to scarring.
"); document.write("
Nat. Cell Biol. 20, 422-431 (2018)
"); document.write("
"); document.write("
"); document.write("
van Haren,\ J.*\ ; Charafeddine,\ R.A.*\ ; Ettinger,\ A.\ ; Wang,\ H.*\ ; Hahn,\ K.M.*\ ; Wittmann,\ T.*
"); document.write("
Local control of intracellular microtubule dynamics by EB1 photodissociation.
"); document.write("
Nat. Cell Biol. 20, 252–261 (2018)
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"); document.write("
"); document.write("
Löf-Öhlin,\ Z.M.*\ ; Nyeng,\ P.*\ ; Bechard,\ M.E.*\ ; Hess,\ K.*\ ; Bankaitis,\ E.*\ ; Greiner,\ T.U.*\ ; Ameri,\ J.*\ ; Wright,\ C.V.*\ ; Semb,\ H.*
"); document.write("
EGFR signalling controls cellular fate and pancreatic organogenesis by regulating apicobasal polarity.
"); document.write("
Nat. Cell Biol. 19, 1313-1325 (2017)
"); document.write("
"); document.write("
"); document.write("
Filipczyk,\ A.\ ; Marr,\ C.\ ; Hastreiter,\ S.\ ; Feigelman,\ J.\ ; Schwarzfischer,\ M.\ ; Hoppe,\ P.S.\ ; Loeffler,\ D.\ ; Kokkaliaris,\ K.D.\ ; Endele,\ M.\ ; Schauberger,\ B.\ ; Hilsenbeck,\ O.\ ; Skylaki,\ S.\ ; Hasenauer,\ J.\ ; Anastassiadis,\ K.*\ ; Theis,\ F.J.\ ; Schroeder,\ T.
"); document.write("
Network plasticity of pluripotency transcription factors in embryonic stem cells.
"); document.write("
Nat. Cell Biol. 17, 1235-1246 (2015)
"); document.write("
"); document.write("
"); document.write("
Herranz,\ N.*\ ; Gallage,\ S.*\ ; Mellone,\ M.*\ ; Wuestefeld,\ T.*\ ; Klotz,\ S.*\ ; Hanley,\ C.J.*\ ; Raguz,\ S.*\ ; Acosta,\ J.C.*\ ; Innes,\ A.J.*\ ; Banito,\ A.*\ ; Georgilis,\ A.*\ ; Montoya,\ A.*\ ; Wolter,\ K.*\ ; Dharmalingam,\ G.*\ ; Faull,\ P.*\ ; Carroll,\ T.*\ ; Martínez-Barbera,\ J.P.*\ ; Cutillas,\ P.*\ ; Reisinger,\ F.\ ; Heikenwälder,\ M.\ ; Miller,\ R.A.*\ ; Withers,\ D.*\ ; Zender,\ L.*\ ; Thomas,\ G.J.*\ ; Gil,\ J.*
"); document.write("
mTOR regulates MAPKAPK2 translation to control the senescence-associated secretory phenotype.
"); document.write("
Nat. Cell Biol. 17, 1205-1217 (2015)
"); document.write("
"); document.write("
"); document.write("
Wheway,\ G.*\ ; Schmidts,\ M.*\ ; Mans,\ D.A.*\ ; Szymanska,\ K.*\ ; Nguyen,\ T.T.*\ ; Racher,\ H.*\ ; Phelps,\ I.G.*\ ; Toedt,\ G.*\ ; Kennedy,\ J.*\ ; Wunderlich,\ K.A.*\ ; Sorusch,\ N.*\ ; Abdelhamed,\ Z.A.*\ ; Natarajan,\ S.*\ ; Herridge,\ W.*\ ; van Reeuwijk,\ J.*\ ; Horn,\ N.*\ ; Boldt,\ K.*\ ; Parry,\ D.A.*\ ; Letteboer,\ S.J.*\ ; Roosing,\ S.*\ ; Adams,\ M.*\ ; Bell,\ S.M.*\ ; Bond,\ J.*\ ; Higgins,\ J.*\ ; Morrison,\ E.E.*\ ; Tomlinson,\ D.C.*\ ; Slaats,\ G.G.*\ ; van Dam,\ T.J.*\ ; Huang,\ L.*\ ; Kessler,\ K.*\ ; Giessl,\ A.*\ ; Logan,\ C.V.*\ ; Boyle,\ E.A.*\ ; Shendure,\ J.*\ ; Anazi,\ S.*\ ; Aldahmesh,\ M.*\ ; Al Hazzaa,\ S.*\ ; Hegele,\ R.A.*\ ; Ober,\ C.*\ ; Frosk,\ P.*\ ; Mhanni,\ A.A.*\ ; Chodirker,\ B.N.*\ ; Chudley,\ A.E.*\ ; Lamont,\ R.*\ ; Bernier,\ F.P.*\ ; Beaulieu,\ C.L.*\ ; Gordon,\ P.M.*\ ; Pon,\ R.T.*\ ; Donahue,\ C.*\ ; Barkovich,\ A.J.*\ ; Wolf,\ L.*\ ; Toomes,\ C.*\ ; Thiel,\ C.T.*\ ; Boycott,\ K.M.*\ ; McKibbin,\ M.*\ ; Inglehearn,\ C.F.*\ ; Stewart,\ F.*\ ; Omran,\ H.*\ ; Huynen,\ M.A.*\ ; Sergouniotis,\ P.I.*\ ; Alkuraya,\ F.S.*\ ; Parboosingh,\ J.S.*\ ; Innes,\ A.M.*\ ; Willoughby,\ C.E.*\ ; Giles,\ R.H.*\ ; Webster,\ A.R.*\ ; Ueffing,\ M.\ ; Blacque,\ O.E.*\ ; Gleeson,\ J.G.*\ ; Wolfrum,\ U.*\ ; Beales,\ P.L.*\ ; Gibson,\ T.J.*\ ; Doherty,\ D.*\ ; Mitchison,\ H.M.*\ ; Roepman,\ R.*\ ; Johnson,\ C.A.*
"); document.write("
An siRNA-based functional genomics screen for the\ identification of regulators of ciliogenesis and ciliopathy\ genes.
"); document.write("
Nat. Cell Biol. 17, 1074-1087 (2015)
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"); document.write("
"); document.write("
Friedmann Angeli,\ J.P.F.*\ ; Schneider,\ M.*\ ; Proneth,\ B.\ ; Tyurina,\ Y.Y.*\ ; Tyurin,\ V.A.*\ ; Hammond,\ V.J.*\ ; Herbach,\ N.*\ ; Aichler,\ M.\ ; Walch,\ A.K.\ ; Eggenhofer,\ E.*\ ; Basavarajappa,\ D.*\ ; Rådmark,\ O.*\ ; Kobayashi,\ S.\ ; Seibt,\ T.\ ; Beck,\ H.*\ ; Neff,\ F.\ ; Esposito,\ I.*\ ; Wanke,\ R.*\ ; Förster,\ H.\ ; Yefremova,\ O.\ ; Heinrichmeyer,\ M.\ ; Bornkamm,\ G.W.\ ; Geissler,\ E.K.*\ ; Thomas,\ S.B.*\ ; Stockwell,\ B.R.*\ ; O\'Donnell,\ V.B.*\ ; Kagan,\ V.E.*\ ; Schick,\ J.\ ; Conrad,\ M.
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Inactivation of the ferroptosis regulator Gpx4 triggers acute renal failure in mice.
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Nat. Cell Biol. 16, 1180-1191 (2014)
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Heinrich,\ S.*\ ; Geissen,\ E.M.*\ ; Kamenz,\ J.*\ ; Trautmann,\ S.*\ ; Widmer,\ C.*\ ; Drewe,\ P.*\ ; Knop,\ M.*\ ; Radde,\ N.*\ ; Hasenauer,\ J.\ ; Hauf,\ S.*
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Determinants of robustness in spindle assembly checkpoint signalling.
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Nat. Cell Biol. 15, 1328-1239 (2013)
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Maliga,\ Z.*\ ; Junqueira,\ M.*\ ; Toyoda,\ Y.*\ ; Ettinger,\ A.*\ ; Mora-Bermudez,\ F.*\ ; Klemm,\ R.W.*\ ; Vasilj,\ A.*\ ; Guhr,\ E.*\ ; Ibarlucea-Benitez,\ I.*\ ; Poser,\ I.*\ ; Bonifacio,\ E.*\ ; Huttner,\ W.B.*\ ; Shevchenko,\ A.*\ ; Hyman,\ A.A.*
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A genomic toolkit to investigate kinesin and myosin motor function in cells.
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Nat. Cell Biol. 15, 325-334 (2013)
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Moignard,\ V.*\ ; Macaulay,\ I.C.*\ ; Swiers,\ G.*\ ; Buettner,\ F.\ ; Schütte,\ J.*\ ; Calero-Nieto,\ F.J.*\ ; Kinston,\ S.*\ ; Joshi,\ A.*\ ; Hannah,\ R.*\ ; Theis,\ F.J.\ ; Jacobsen,\ S.E.*\ ; de Bruijn,\ M.F.*\ ; Göttgens,\ B.*
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Characterization of transcriptional networks in blood stem and progenitor cells using high-throughput single-cell gene expression analysis.
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Nat. Cell Biol. 15, 363-372 (2013)
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Ortega,\ F.*\ ; Gascón,\ S.\ ; Masserdotti,\ G.\ ; Deshpande,\ A.*\ ; Simon,\ C.*\ ; Fischer,\ J.\ ; Dimou,\ L.\ ; Lie,\ D.C.C.*\ ; Schroeder,\ T.\ ; Berninger,\ B.
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Oligodendrogliogenic and neurogenic adult subependymal zone neural stem cells constitute distinct lineages and exhibit differential responsiveness to Wnt signalling.
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Nat. Cell Biol. 15, 602-613 (2013)
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Péret,\ B.*\ ; Li,\ G.*\ ; Zhao,\ J.*\ ; Band,\ L.R.*\ ; Voß,\ U.*\ ; Postaire,\ O.*\ ; Luu,\ D.T.*\ ; Da Ines,\ O.\ ; Casimiro,\ I.*\ ; Lucas,\ M.*\ ; Wells,\ D.M.*\ ; Lazzerini,\ L.*\ ; Nacry,\ P.*\ ; King,\ J.R.*\ ; Jensen,\ O.E.*\ ; Schäffner,\ A.\ ; Maurel,\ C.*\ ; Bennett,\ M.J.*
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Auxin regulates aquaporin function to facilitate lateral root emergence.
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Nat. Cell Biol. 14, 991-998 (2012)
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Clemente-Blanco,\ A.*\ ; Sen,\ N.*\ ; Mayan-Santos,\ M.*\ ; Sacristán,\ M.P.*\ ; Graham,\ B.*\ ; Jarmuz,\ A.*\ ; Giess,\ A.*\ ; Webb,\ E.*\ ; Game,\ L.*\ ; Eick,\ D.\ ; Bueno,\ A.*\ ; Merkenschlager,\ M*\ ; Aragón,\ L.*
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Cdc14 phosphatase promotes segregation of telomeres through repression of RNA polymerase II transcription.
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Nat. Cell Biol. 13, 1450-1456 (2011)
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Santenard,\ A.*\ ; Ziegler-Birling,\ C.*\ ; Koch,\ M.*\ ; Tora,\ L.*\ ; Bannister,\ A.J.*\ ; Torres-Padilla,\ M.E.*
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Heterochromatin formation in the mouse embryo requires critical residues of the histone variant H3.3.
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Nat. Cell Biol. 12, 853-862 (2010)
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Brandt,\ D.T.*\ ; Baarlink,\ C.*\ ; Kitzing,\ T.M.*\ ; Kremmer,\ E.\ ; Ivaska,\ J.*\ ; Nollau,\ P.*\ ; Grosse,\ R.*
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SCAI acts as a suppressor of cancer cell invasion through the transcriptional control of \β₁-integrin.
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Nat. Cell Biol. 11, 557-568 (2009)
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Maetzel,\ D.\ ; Denzel,\ S.\ ; Mack,\ B.*\ ; Canis,\ M.*\ ; Went,\ P.*\ ; Benk,\ M.\ ; Kieu,\ C.*\ ; Papior,\ P.\ ; Baeuerle,\ P.A.*\ ; Münz,\ M.\ ; Gires,\ O.
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Nuclear signalling by tumour-associated antigen EpCAM.
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Nat. Cell Biol. 11, 162-171 (2009)
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Rybak,\ A.*\ ; Fuchs,\ H.*\ ; Hadian,\ K.\ ; Smirnova,\ L.*\ ; Wulczyn,\ E.A.*\ ; Michel,\ G.*\ ; Nitsch,\ R.*\ ; Krappmann,\ D.\ ; Wulczyn,\ F.G.*
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The let-7 target gene mouse lin-41 is a stem cell specific E3 ubiquitin ligase for the miRNA pathway protein Ago2.
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Nat. Cell Biol. 11, 1411-1420 (2009)
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David,\ R.*\ ; Brenner,\ C.*\ ; Stieber,\ J.*\ ; Schwarz,\ F.*\ ; Brunner,\ S.*\ ; Vollmer,\ M.\ ; Mentele,\ E.*\ ; Müller-Höcker,\ J.*\ ; Kitajima,\ S.*\ ; Lickert,\ H.\ ; Rupp,\ R.*\ ; Franz,\ W.M.*
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MesP1 drives vertebrate cardiovascular differentiation through Dkk-1-mediated blockade of Wnt-signalling.
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Nat. Cell Biol. 10, 338-345 (2008)
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Löer,\ B.*\ ; Bauer,\ R.*\ ; Bornheim,\ R.*\ ; Grell,\ J.*\ ; Kremmer,\ E.\ ; Kolanus,\ W.*\ ; Hoch,\ M.*
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The NHL-domain protein Wech is crucial for the integrin-cytoskeleton link.
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Nat. Cell Biol. 10, 422-428 (2008)
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Wissmann,\ M.*\ ; Yin,\ N.*\ ; Müller,\ J.M.*\ ; Greschik,\ H.*\ ; Fodor,\ B.D.*\ ; Jenuwein,\ T.*\ ; Vogler,\ C.*\ ; Schneider,\ R.*\ ; Günther,\ T.*\ ; Buettner,\ R.*\ ; Metzger,\ E.*\ ; Schule,\ R.*
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Cooperative demethylation by JMJD2C and LSD1 promotes androgen receptor-dependent gene expression.
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Nat. Cell Biol. 9, 347-353 (2007)
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Ancelin,\ K.*\ ; Lange,\ U.C.*\ ; Hajkova,\ P.*\ ; Schneider,\ R.*\ ; Bannister,\ A.J.*\ ; Kouzarides,\ T.*\ ; Surani,\ M.A.*
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Blimp1 associates with Prmt5 and directs histone arginine methylation in mouse germ cells.
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Nat. Cell Biol. 8, 623-630 (2006)
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Mziaut,\ H.*\ ; Trajkovski,\ M.*\ ; Kersting,\ S.*\ ; Ehninger,\ A.*\ ; Altkrüger,\ A.*\ ; Lemaitre,\ R.P.*\ ; Schmidt,\ D.*\ ; Saeger,\ H.-D.*\ ; Lee,\ M.S.*\ ; Drechsel,\ D.N.*\ ; Müller,\ S.*\ ; Solimena,\ M.*
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Synergy of glucose and growth hormone signalling in islet cells through ICA512 and STAT5.
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Nat. Cell Biol. 8, 435-445 (2006)
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Knoch,\ K.P.*\ ; Bergert,\ H.*\ ; Borgonovo,\ B.*\ ; Saeger,\ H.-D.*\ ; Altkrüger,\ A.*\ ; Verkade,\ P.*\ ; Solimena,\ M.*
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Polypyrimidine tract-binding protein promotes insulin secretory granule biogenesis.
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Nat. Cell Biol. 6, 207-214 (2004)
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Schneider,\ R.*\ ; Bannister,\ A.J.*\ ; Myers,\ F.A.*\ ; Thorne,\ A.W.*\ ; Crane-Robinson,\ C.*\ ; Kouzarides,\ T.*
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Histone H3 lysine 4 methylation patterns in higher eukaryotic genes.
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Nat. Cell Biol. 6, 73-77 (2004)
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