Augmin-dependent microtubule self-organization drives kinetochore fiber maturation in mammals.

Cell reports 2022 Vol.39(1) p. 110610

Almeida AC, Soares-de-Oliveira J, Drpic D, Cheeseman LP, Damas J, Lewin HA, Larkin DM, Aguiar P, Pereira AJ, Maiato H

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Abstract

Chromosome segregation in mammals relies on the maturation of a thick bundle of kinetochore-attached microtubules known as k-fiber. How k-fibers mature from initial kinetochore microtubule attachments remains a fundamental question. By combining molecular perturbations and phenotypic analyses in Indian muntjac fibroblasts containing the lowest known diploid chromosome number in mammals (2N = 6) and distinctively large kinetochores, with fixed/live-cell super-resolution coherent-hybrid stimulated emission depletion (CH-STED) nanoscopy and laser microsurgery, we demonstrate a key role for augmin in kinetochore microtubule self-organization and maturation, regardless of pioneer centrosomal microtubules. In doing so, augmin promotes kinetochore and interpolar microtubule turnover and poleward flux. Tracking of microtubule growth events within individual k-fibers reveals a wide angular dispersion, consistent with augmin-mediated branched microtubule nucleation. Augmin depletion reduces the frequency of kinetochore microtubule growth events and hampers efficient repair after acute k-fiber injury by laser microsurgery. Together, these findings underscore the contribution of augmin-mediated microtubule amplification for k-fiber self-organization and maturation in mammals.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 2
해부 kinetochore fiber scispacy 1
해부 kinetochore-attached microtubules scispacy 1
해부 k-fiber scispacy 1
해부 k-fibers scispacy 1
해부 fixed/live-cell scispacy 1
해부 kinetochore scispacy 1
해부 centrosomal scispacy 1
해부 poleward scispacy 1
기타 augmin scispacy 1
기타 interpolar microtubule scispacy 1

MeSH Terms

Animals; Chromosome Segregation; Kinetochores; Mammals; Microtubules; Mitosis; Spindle Apparatus

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