School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester , Manchester, UK.
A*STAR Institute of Medical Biology , Singapore, Singapore.
J Cell Biol. 2023 May 1;222(5). doi: 10.1083/jcb.202204042. Epub 2023 Mar 22.
Cytoplasmic 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 a 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 transmembrane protein KASH5 is an activating adaptor for dynein and shed light on the hierarchy of assembly of KASH5-dynein-dynactin complexes.
在哺乳动物减数分裂前期 I 中,细胞质动力蛋白驱动染色体运动对于联会和遗传交换是必不可少的。动力蛋白通过 KASH5 和 SUN1 或 SUN2 与染色体端粒连接,这两者共同跨越核膜。在这里,我们表明 KASH5 可促进体外动力蛋白的运动,并且细胞质 KASH5 抑制动力蛋白的有丝分裂功能。KASH5 通过 LIC C 末端保守的螺旋与动力蛋白轻中间链(DYNC1LI1 或 DYNC1LI2)相互作用,该区域对于动力蛋白向其他细胞膜的募集也是必需的。KASH5 的 N 端 EF 手是必需的,因为与动力蛋白的相互作用被关键钙结合残基的突变破坏,尽管它不受细胞内钙水平的调节。动力蛋白可以在核膜上独立于动力蛋白激活因子dynactin 而被招募到 KASH5,而 LIS1 对于 dynactin 掺入 KASH5-动力蛋白复合物是必需的。总之,我们表明跨膜蛋白 KASH5 是动力蛋白的激活接头,并阐明了 KASH5-动力蛋白-dynactin 复合物组装的层次结构。