The meiotic LINC complex component KASH5 is an activating adaptor for cytoplasmic dynein

Author:

Garner Kirsten E. L.,Salter Anna,Lau Clinton K.ORCID,Gurusaran Manickam,Villemant Cécile,Granger Elizabeth P.,McNee Gavin,Woodman Philip G.,Davies Owen R.ORCID,Burke Brian E.,Allan Victoria J.ORCID

Abstract

AbstractCytoplasmic dynein-driven movement of chromosomes during prophase I of mammalian meiosis is essential for synapsis and genetic exchange. Dynein connects to chromosome telomeres via KASH5 and SUN1 or SUN2, which together span the nuclear envelope. Here, we show that KASH5 promotes dynein motility in vitro, and cytosolic KASH5 inhibits dynein’s interphase functions. KASH5 interacts with either dynein light intermediate chain (DYNC1LI1 or DYNC1LI2) via a conserved helix in the LIC C-terminal, and this region is also needed for dynein’s recruitment to other cellular membranes. KASH5’s N-terminal EF-hands are essential, as the interaction with dynein is disrupted by mutation of key calcium-binding residues, although it is not regulated by cellular calcium levels. Dynein can be recruited to KASH5 at the nuclear envelope independently of dynactin, while LIS1 is essential for dynactin incorporation into the KASH5-dynein complex. Altogether, we show that the trans-membrane protein KASH5 is an activating adaptor for dynein, and shed light on the hierarchy of assembly of KASH5-dynein-dynactin complexes.

Publisher

Cold Spring Harbor Laboratory

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Meiotic Chromosome Structure, the Synaptonemal Complex, and Infertility;Annual Review of Genomics and Human Genetics;2023-08-25

2. The many faces of the bouquet centrosome MTOC in meiosis and germ cell development;Current Opinion in Cell Biology;2023-04

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