RRC ID 78930
著者 Kiyomitsu A, Nishimura T, Hwang SJ, Ansai S, Kanemaki MT, Tanaka M, Kiyomitsu T.
タイトル Ran-GTP assembles a specialized spindle structure for accurate chromosome segregation in medaka early embryos.
ジャーナル Nat Commun
Abstract Despite drastic cellular changes during cleavage, a mitotic spindle assembles in each blastomere to accurately segregate duplicated chromosomes. Mechanisms of mitotic spindle assembly have been extensively studied using small somatic cells. However, mechanisms of spindle assembly in large vertebrate embryos remain little understood. Here, we establish functional assay systems in medaka (Oryzias latipes) embryos by combining CRISPR knock-in with auxin-inducible degron technology. Live imaging reveals several unexpected features of microtubule organization and centrosome positioning that achieve rapid, accurate cleavage. Importantly, Ran-GTP assembles a dense microtubule network at the metaphase spindle center that is essential for chromosome segregation in early embryos. This unique spindle structure is remodeled into a typical short, somatic-like spindle after blastula stages, when Ran-GTP becomes dispensable for chromosome segregation. We propose that despite the presence of centrosomes, the chromosome-derived Ran-GTP pathway has essential roles in functional spindle assembly in large, rapidly dividing vertebrate early embryos, similar to acentrosomal spindle assembly in oocytes.
巻・号 15(1)
ページ 981
公開日 2024-2-1
DOI 10.1038/s41467-024-45251-w
PII 10.1038/s41467-024-45251-w
PMID 38302485
PMC PMC10834446
MeSH Animals Centrosome / metabolism Chromosome Segregation Guanosine Triphosphate / metabolism Microtubules / metabolism Mitosis Oryzias* / genetics Spindle Apparatus / metabolism Vertebrates
リソース情報
メダカ OK-Cab strain (MT830) cDNA clone, olli34h17,