The proteasome controls ESCRT-III-mediated cell division in an archaeon

is the closest experimentally tractable archaeal relative of eukaryotes and, despite lacking obvious cyclin-dependent kinase and cyclin homologs, has an ordered eukaryote-like cell cycle with distinct phases of DNA replication and division. Here, in exploring the mechanism of cell division in , we i...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2020-08, Vol.369 (6504)
Hauptverfasser: Tarrason Risa, Gabriel, Hurtig, Fredrik, Bray, Sian, Hafner, Anne E, Harker-Kirschneck, Lena, Faull, Peter, Davis, Colin, Papatziamou, Dimitra, Mutavchiev, Delyan R, Fan, Catherine, Meneguello, Leticia, Arashiro Pulschen, Andre, Dey, Gautam, Culley, Siân, Kilkenny, Mairi, Souza, Diorge P, Pellegrini, Luca, de Bruin, Robertus A M, Henriques, Ricardo, Snijders, Ambrosius P, Šarić, Anđela, Lindås, Ann-Christin, Robinson, Nicholas P, Baum, Buzz
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Sprache:eng
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Zusammenfassung:is the closest experimentally tractable archaeal relative of eukaryotes and, despite lacking obvious cyclin-dependent kinase and cyclin homologs, has an ordered eukaryote-like cell cycle with distinct phases of DNA replication and division. Here, in exploring the mechanism of cell division in , we identify a role for the archaeal proteasome in regulating the transition from the end of one cell cycle to the beginning of the next. Further, we identify the archaeal ESCRT-III homolog, CdvB, as a key target of the proteasome and show that its degradation triggers division by allowing constriction of the CdvB1:CdvB2 ESCRT-III division ring. These findings offer a minimal mechanism for ESCRT-III-mediated membrane remodeling and point to a conserved role for the proteasome in eukaryotic and archaeal cell cycle control.
ISSN:0036-8075
1095-9203
1095-9203
DOI:10.1126/science.aaz2532