Kerimoglu, C.* ; Pham, L.* ; Tonchev, A.B.* ; Sakib, M.S.* ; Xie, Y.* ; Sokpor, G.* ; Ulmke, P.A.* ; Kaurani, L.* ; Abbas, E.* ; Nguyen, H.T.* ; Rosenbusch, J.* ; Michurina, A.* ; Capece, V.* ; Angelova, M.* ; Maricic, N.* ; Brand-Saberi, B.* ; Esgleas Izquierdo, M. ; Albert, M.* ; Minkov, R.* ; Kovachev, E.* ; Teichmann, U.* ; Seong, R.H.* ; Huttner, W.B.* ; Nguyen, H.P.* ; Stoykova, A.* ; Staiger, J.F.* ; Fischer, A.* ; Tuoc, T.*
H3 acetylation selectively promotes basal progenitor proliferation and neocortex expansion.
Sci. Adv. 7:eabc6792 (2021)
Increase in the size of human neocortex―acquired in evolution―accounts
for the unique cognitive capacity of humans. This expansion reflects the
evolutionarily enhanced proliferative ability of basal progenitors
(BPs), including the basal radial glia and basal intermediate
progenitors (bIPs) in mammalian cortex, which may have been acquired
through epigenetic alterations in BPs. However, how the epigenome in BPs
differs across species is not known. Here, we report that histone H3
acetylation is a key epigenetic regulation in bIP amplification and
cortical expansion. Through epigenetic profiling of sorted bIPs, we show
that histone H3 lysine 9 acetylation (H3K9ac) is low in murine bIPs and
high in human bIPs. Elevated H3K9ac preferentially increases bIP
proliferation, increasing the size and folding of the normally smooth
mouse neocortex. H3K9ac drives bIP amplification by increasing
expression of the evolutionarily regulated gene, Trnp1, in developing cortex. Our findings demonstrate a previously unknown mechanism that controls cortical architecture.
Impact Factor
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Times Cited
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Cited By
Altmetric
Publikationstyp
Artikel: Journalartikel
Dokumenttyp
Wissenschaftlicher Artikel
Typ der Hochschulschrift
Herausgeber
Schlagwörter
Outer Subventricular Zone; Cerebral Cortical Size; Radial Glia; Lissencephalic Primate; Germinal Zones; Cell; Cortex; Pax6; Neurogenesis; Evolution
Keywords plus
Sprache
englisch
Veröffentlichungsjahr
2021
Prepublished im Jahr
HGF-Berichtsjahr
2021
ISSN (print) / ISBN
2375-2548
e-ISSN
2375-2548
ISBN
Bandtitel
Konferenztitel
Konferzenzdatum
Konferenzort
Konferenzband
Quellenangaben
Band: 7,
Heft: 38,
Seiten: ,
Artikelnummer: eabc6792
Supplement: ,
Reihe
Verlag
American Association for the Advancement of Science (AAAS)
Verlagsort
Washington, DC [u.a.]
Tag d. mündl. Prüfung
0000-00-00
Betreuer
Gutachter
Prüfer
Topic
Hochschule
Hochschulort
Fakultät
Veröffentlichungsdatum
0000-00-00
Anmeldedatum
0000-00-00
Anmelder/Inhaber
weitere Inhaber
Anmeldeland
Priorität
Begutachtungsstatus
Peer reviewed
POF Topic(s)
30204 - Cell Programming and Repair
Forschungsfeld(er)
Stem Cell and Neuroscience
PSP-Element(e)
G-500800-001
Förderungen
Copyright
Erfassungsdatum
2021-10-06