Instituto de Biología Funcional y Genómica (IBFG), CSIC/Universidad de Salamanca and Departamento de Microbiología y Genética, Universidad de Salamanca. C/ Zacarías González, Salamanca, Spain.
PLoS Biol. 2024 Nov 7;22(11):e3002491. doi: 10.1371/journal.pbio.3002491. eCollection 2024 Nov.
Cellular asymmetry begins with the selection of a discrete point on the cell surface that triggers Rho-GTPases activation and localized assembly of the cytoskeleton to establish new growth zones. The cylindrical shape of fission yeast is organized by microtubules (MT) that deliver the landmark Tea1-Tea4 complex at the cell tips to define the growth poles. However, only a few tea1Δ cells mistaken the direction of growth, indicating that they manage to detect their growth sites. Here, we show that Rgf1 (Rho1-GEF) and Tea4 are components of the same complex and that Rgf1 activity toward Rho1 is required for strengthen Tea4 at the cell tips. Moreover, in cells lacking Tea1, selection of the correct growth site depends on Rgf1 and on a correctly polarized actin cytoskeleton, both necessary for Rho1 activation at the pole. We propose an actin-dependent mechanism driven by Rgf1-Rho1 that marks the poles independently of MTs and the Tea1-Tea4 complex.
细胞不对称性始于细胞表面离散点的选择,该点触发 Rho-GTPases 的激活和细胞骨架的局部组装,以建立新的生长区。裂变酵母的圆柱形结构由微管 (MT) 组织,将地标 Tea1-Tea4 复合物输送到细胞尖端,以定义生长极。然而,只有少数 tea1Δ 细胞错误地选择了生长方向,这表明它们设法检测到了自己的生长部位。在这里,我们表明 Rgf1(Rho1-GEF)和 Tea4 是同一复合物的组成部分,并且 Rgf1 对 Rho1 的活性对于在细胞尖端加强 Tea4 是必需的。此外,在缺乏 Tea1 的细胞中,正确生长部位的选择取决于 Rgf1 和正确极化的肌动球蛋白细胞骨架,这两者对于在极区激活 Rho1 都是必需的。我们提出了一种由 Rgf1-Rho1 驱动的、依赖于肌动蛋白的机制,该机制独立于微管和 Tea1-Tea4 复合物标记极区。