Evidence for anaphase pulling forces during C. elegans meiosis

Author:

Danlasky Brennan M.1,Panzica Michelle T.1ORCID,McNally Karen P.1,Vargas Elizabeth1,Bailey Cynthia1,Li Wenzhe1ORCID,Gong Ting1,Fishman Elizabeth S.1,Jiang Xueer1ORCID,McNally Francis J.1ORCID

Affiliation:

1. Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA

Abstract

Anaphase chromosome movement is thought to be mediated by pulling forces generated by end-on attachment of microtubules to the outer face of kinetochores. However, it has been suggested that during C. elegans female meiosis, anaphase is mediated by a kinetochore-independent pushing mechanism with microtubules only attached to the inner face of segregating chromosomes. We found that the kinetochore proteins KNL-1 and KNL-3 are required for preanaphase chromosome stretching, suggesting a role in pulling forces. In the absence of KNL-1,3, pairs of homologous chromosomes did not separate and did not move toward a spindle pole. Instead, each homolog pair moved together with the same spindle pole during anaphase B spindle elongation. Two masses of chromatin thus ended up at opposite spindle poles, giving the appearance of successful anaphase.

Funder

National Institutes of Health

Office of Research Infrastructure Programs

National Institute of General Medical Sciences

U.S. Department of Agriculture

National Institute of Food and Agriculture

Publisher

Rockefeller University Press

Subject

Cell Biology

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