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酵母 Rgd3 是一种磷酸化调节的 F-BAR 包含 RhoGAP,参与 Rho3 分布和细胞形态的调节。

Yeast Rgd3 is a phospho-regulated F-BAR-containing RhoGAP involved in the regulation of Rho3 distribution and cell morphology.

机构信息

Department of Molecular Biology and Genetics, Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY 14853.

出版信息

Mol Biol Cell. 2020 Nov 1;31(23):2570-2582. doi: 10.1091/mbc.E20-05-0288. Epub 2020 Sep 17.

Abstract

Polarized growth requires the integration of polarity pathways with the delivery of exocytic vesicles for cell expansion and counterbalancing endocytic uptake. In budding yeast, the myosin-V Myo2 is aided by the kinesin-related protein Smy1 in carrying out the essential Sec4-dependent transport of secretory vesicles to sites of polarized growth. Overexpression suppressors of a conditional mutant identified a novel F-BAR (Fes/CIP4 homology-Bin-Amphiphysin-Rvs protein)-containing RhoGAP, Rgd3, that has activity primarily on Rho3, but also Cdc42. Internally tagged Rho3 is restricted to the plasma membrane in a gradient corresponding to cell polarity that is altered upon Rgd3 overexpression. Rgd3 itself is localized to dynamic polarized vesicles that, while distinct from constitutive secretory vesicles, are dependent on actin and Myo2 function. In vitro Rgd3 associates with liposomes in a PIP-enhanced manner. Further, the Rgd3 C-terminal region contains several phosphorylatable residues within a reported SH3-binding motif. An unphosphorylated mimetic construct is active and highly polarized, while the phospho-mimetic form is not. Rgd3 is capable of activating Myo2, dependent on its phospho state, and Rgd3 overexpression rescues aberrant Rho3 localization and cell morphologies seen at the restrictive temperature in the mutant. We propose a model where Rgd3 functions to modulate and maintain Rho3 polarity during growth.

摘要

极化生长需要将极性途径与胞吐小泡的输送整合起来,以实现细胞的扩展和平衡胞吞作用。在出芽酵母中,肌球蛋白-V Myo2 在将依赖 Sec4 的分泌小泡运输到极化生长部位的过程中,得到了与驱动蛋白相关蛋白 Smy1 的辅助。条件性突变体的过表达抑制子鉴定出一种新型的 F-BAR(Fes/CIP4 同源-Bin-Amphiphysin-Rvs 蛋白)-含有 RhoGAP 的 Rgd3,它主要对 Rho3 有活性,但也对 Cdc42 有活性。内部标记的 Rho3 被限制在质膜上,呈与细胞极性相对应的梯度,而该梯度在 Rgd3 过表达时会发生改变。Rgd3 本身定位于动态极化小泡,虽然与组成型分泌小泡不同,但依赖于肌动蛋白和 Myo2 功能。在体外,Rgd3 以 PIP 增强的方式与脂质体结合。此外,Rgd3 的 C 末端区域在一个报道的 SH3 结合基序内包含几个可磷酸化的残基。未磷酸化的模拟构建体是有活性的和高度极化的,而磷酸化模拟形式则不是。Rgd3 能够激活 Myo2,这依赖于其磷酸化状态,并且 Rgd3 过表达可以挽救在 突变体的限制温度下观察到的异常 Rho3 定位和细胞形态。我们提出了一个模型,其中 Rgd3 能够在生长过程中调节和维持 Rho3 的极性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06f7/7851877/6b7207cfbe61/mbc-31-2570-g001.jpg

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