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1.
Iturbide Martinez De Albeniz, A. et al.: Addendum: Retinoic acid signaling is critical during the totipotency window in early mammalian development. Nat. Struct. Mol. Biol. 32, 2128-2129 (2025)
2.
Throll, P.* et al.: Author Correction: Structural basis of tRNA recognition by the m3C RNA methyltransferase METTL6 in complex with SerRS seryl-tRNA synthetase. Nat. Struct. Mol. Biol. 32:405 (2025)
3.
Throll, P.* et al.: Structural basis of tRNA recognition by the m3C RNA methyltransferase METTL6 in complex with SerRS seryl-tRNA synthetase. Nat. Struct. Mol. Biol., DOI: 10.1038/s41594-024-01341-3 (2024)
4.
Aretz, J.* ; Aziz, M. ; Strohmeyer, N.* ; Sattler, M. & Fässler, R.*: Talin and kindlin use integrin tail allostery and direct binding to activate integrins. Nat. Struct. Mol. Biol. 30, 1913-1924 (2023)
5.
Basu, S.* et al.: Live-cell three-dimensional single-molecule tracking reveals modulation of enhancer dynamics by NuRD. Nat. Struct. Mol. Biol. 30, 1628-1639 (2023)
6.
Basu, S.* et al.: Publisher Correction: Live-cell three-dimensional single-molecule tracking reveals modulation of enhancer dynamics by NuRD. Nat. Struct. Mol. Biol., DOI: 10.1038/s41594-023-01179-1 (2023)
7.
Günsel, U. et al.: Structural basis of metabolite transport by the chloroplast outer envelope channel OEP21. Nat. Struct. Mol. Biol. 30, 761-769 (2023)
8.
Nakamura, T. et al.: Integrated chemical and genetic screens unveil FSP1 mechanisms of ferroptosis regulation. Nat. Struct. Mol. Biol. 30, 1806-1815 (2023)
9.
Seel, A. et al.: Regulation with cell size ensures mitochondrial DNA homeostasis during cell growth. Nat. Struct. Mol. Biol. 30, 1549-1560 (2023)
10.
Iturbide Martinez De Albeniz, A. et al.: Author Correction: Retinoic acid signaling is critical during the totipotency window in early mammalian development. Nat. Struct. Mol. Biol. 29:282 (2022)
11.
Iturbide Martinez De Albeniz, A. et al.: Retinoic acid signaling is critical during the totipotency window in early mammalian development. Nat. Struct. Mol. Biol. 28, 521-532 (2021)
12.
Schmid, P.W.N.* et al.: Imbalances in the eye lens proteome are linked to cataract formation. Nat. Struct. Mol. Biol. 28, 143–151 (2021)
13.
Zhang, M.* et al.: Cryo-EM structure of an activated GPCR-G protein complex in lipid nanodiscs. Nat. Struct. Mol. Biol. 28, 258-267 (2021)
14.
Vogl, A.M.* et al.: Publisher Correction: Global site-specific neddylation profiling reveals that NEDDylated cofilin regulates actin dynamics (Nature Structural & Molecular Biology, (2020), 27, 2, (210-220), 10.1038/s41594-019-0370-3). Nat. Struct. Mol. Biol., DOI: 10.1038/s41594-020-0395-7 (2020)
15.
Vogl, A.M.* et al.: Global site-specific neddylation profiling reveals that NEDDylated cofilin regulates actin dynamics. Nat. Struct. Mol. Biol. 27, 210-220 (2020)
16.
Beltran, M.* et al.: G-tract RNA removes Polycomb repressive complex 2 from genes. Nat. Struct. Mol. Biol. 26, 899-909 (2019)
17.
Beltran, M.* et al.: Author Correction: G-tract RNA removes Polycomb repressive complex 2 from genes (Nature Structural & Molecular Biology, (2019), 26, 10, (899-909), 10.1038/s41594-019-0293-z). Nat. Struct. Mol. Biol., DOI: 10.1038/s41594-019-0341-8 (2019)
18.
Kaiser, C.J.O.* et al.: The structure and oxidation of the eye lens chaperone αA-crystallin. Nat. Struct. Mol. Biol. 26, 1141-1150 (2019)
19.
Hanna, C.W.* et al.: MLL2 conveys transcription-independent H3K4 trimethylation in oocytes. Nat. Struct. Mol. Biol. 25, 73-82 (2018)
20.
Edelmann, F. et al.: Molecular architecture and dynamics of ASH1 mRNA recognition by its mRNA-transport complex. Nat. Struct. Mol. Biol. 24, 152-161 (2017)