Okada Hiroki, Chen Xi, Wang Kangji, Marquardt Joseph, Bi Erfei
Department of Cell and Developmental Biology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA.
Current affiliation: Department of Biology, Western Kentucky University, Bowling Green, KY.
bioRxiv. 2023 Nov 8:2023.11.07.566094. doi: 10.1101/2023.11.07.566094.
The collaboration between septins and myosin-II in driving processes outside of cytokinesis remains largely uncharted. Here, we demonstrate that Bni5 in the budding yeast interacts with myosin-II, septin filaments, and the septin-associated kinase Elm1 via distinct domains at its N- and C-termini, thereby tethering the mobile myosin-II to the stable septin hourglass at the division site from bud emergence to the onset of cytokinesis. The septin and Elm1-binding domains, together with a central disordered region, of Bni5 control timely remodeling of the septin hourglass into a double ring, enabling the actomyosin ring constriction. The Bni5-tethered myosin-II enhances retrograde actin cable flow, which contributes to the asymmetric inheritance of mitochondria-associated protein aggregates during cell division, and also strengthens cytokinesis against various perturbations. Thus, we have established a biochemical pathway involving septin-Bni5-myosin-II interactions at the division site, which can inform mechanistic understanding of the role of myosin-II in other retrograde flow systems.
在胞质分裂之外的过程中,septin与肌球蛋白-II之间的协作在很大程度上仍未被探索。在这里,我们证明出芽酵母中的Bni5通过其N端和C端的不同结构域与肌球蛋白-II、septin丝以及与septin相关的激酶Elm1相互作用,从而将可移动的肌球蛋白-II从芽出现到胞质分裂开始时固定在分裂位点的稳定septin沙漏结构上。Bni5的septin和Elm1结合结构域,连同中央无序区域,控制septin沙漏结构适时重塑为双环,从而使肌动球蛋白环收缩。与Bni5相连的肌球蛋白-II增强了肌动蛋白丝的逆行流动,这有助于细胞分裂过程中线粒体相关蛋白聚集体的不对称遗传,并且还能增强胞质分裂以抵抗各种干扰。因此,我们建立了一条涉及分裂位点处septin - Bni5 - 肌球蛋白-II相互作用的生化途径,这可以为从机制上理解肌球蛋白-II在其他逆行流动系统中的作用提供依据。