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14-3-3蛋白Rad24对Cdc42鸟嘌呤核苷酸交换因子Gef1的磷酸化依赖性抑制在细胞形态发生过程中对Cdc42 GTP酶活性和振荡动力学进行空间调节。

Phosphorylation-dependent inhibition of Cdc42 GEF Gef1 by 14-3-3 protein Rad24 spatially regulates Cdc42 GTPase activity and oscillatory dynamics during cell morphogenesis.

作者信息

Das Maitreyi, Nuñez Illyce, Rodriguez Marbelys, Wiley David J, Rodriguez Juan, Sarkeshik Ali, Yates John R, Buchwald Peter, Verde Fulvia

机构信息

Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, Miami, FL 33101.

Department of Chemical Physiology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

Mol Biol Cell. 2015 Oct 1;26(19):3520-34. doi: 10.1091/mbc.E15-02-0095. Epub 2015 Aug 5.

Abstract

Active Cdc42 GTPase, a key regulator of cell polarity, displays oscillatory dynamics that are anticorrelated at the two cell tips in fission yeast. Anticorrelation suggests competition for active Cdc42 or for its effectors. Here we show how 14-3-3 protein Rad24 associates with Cdc42 guanine exchange factor (GEF) Gef1, limiting Gef1 availability to promote Cdc42 activation. Phosphorylation of Gef1 by conserved NDR kinase Orb6 promotes Gef1 binding to Rad24. Loss of Rad24-Gef1 interaction increases Gef1 protein localization and Cdc42 activation at the cell tips and reduces the anticorrelation of active Cdc42 oscillations. Increased Cdc42 activation promotes precocious bipolar growth activation, bypassing the normal requirement for an intact microtubule cytoskeleton and for microtubule-dependent polarity landmark Tea4-PP1. Further, increased Cdc42 activation by Gef1 widens cell diameter and alters tip curvature, countering the effects of Cdc42 GTPase-activating protein Rga4. The respective levels of Gef1 and Rga4 proteins at the membrane define dynamically the growing area at each cell tip. Our findings show how the 14-3-3 protein Rad24 modulates the availability of Cdc42 GEF Gef1, a homologue of mammalian Cdc42 GEF DNMBP/TUBA, to spatially control Cdc42 GTPase activity and promote cell polarization and cell shape emergence.

摘要

活性Cdc42 GTP酶是细胞极性的关键调节因子,在裂殖酵母的两个细胞尖端呈现出振荡动力学,且二者呈反相关。反相关表明存在对活性Cdc42或其效应器的竞争。在此,我们展示了14-3-3蛋白Rad24如何与Cdc42鸟嘌呤交换因子(GEF)Gef1结合,限制Gef1的可用性以促进Cdc42激活。保守的NDR激酶Orb6对Gef1的磷酸化促进了Gef1与Rad24的结合。Rad24 - Gef1相互作用的缺失增加了Gef1蛋白在细胞尖端的定位和Cdc42激活,并降低了活性Cdc42振荡的反相关性。Cdc42激活增加促进了早熟的双极生长激活,绕过了对完整微管细胞骨架和微管依赖性极性标志物Tea4 - PP1的正常需求。此外,Gef1增加的Cdc42激活拓宽了细胞直径并改变了尖端曲率,抵消了Cdc42 GTP酶激活蛋白Rga4的作用。膜上Gef1和Rga4蛋白的各自水平动态地定义了每个细胞尖端的生长区域。我们的研究结果表明14-3-3蛋白Rad24如何调节Cdc42 GEF Gef1(哺乳动物Cdc42 GEF DNMBP/TUBA的同源物)的可用性,以在空间上控制Cdc42 GTP酶活性并促进细胞极化和细胞形状形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c95/4591695/121679fbff9b/3520fig1.jpg

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