Phosphatidylserine and GTPase activation control Cdc42 nanoclustering to counter dissipative diffusion

被引:32
作者
Sartorel, Elodie [1 ]
Unlu, Caner [1 ,4 ]
Jose, Mini [1 ,5 ]
Massoni-Laporte, Aurelie [1 ]
Meca, Julien [1 ]
Sibarita, Jean-Baptiste [2 ,3 ]
McCusker, Derek [1 ]
机构
[1] Univ Bordeaux, European Inst Chem & Biol, CNRS, UMR 5095, F-33607 Pessac, France
[2] Univ Bordeaux, F-33077 Bordeaux, France
[3] CNRS, UMR 5297, Inst Interdisciplinaire Neurosci, F-33077 Bordeaux, France
[4] Istanbul Tech Univ, Dept Chem, TR-34469 Istanbul, Turkey
[5] Indian Inst Sci, Ctr Neurosci, Bangalore 560012, Karnataka, India
关键词
YEAST SACCHAROMYCES-CEREVISIAE; PLASMA-MEMBRANE; CELL POLARITY; LIVING CELLS; LOCALIZATION MICROSCOPY; ENDOCYTIC MACHINERY; H-RAS; K-RAS; PROTEIN; ESTABLISHMENT;
D O I
10.1091/mbc.E18-01-0051
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The anisotropic organization of plasma membrane constituents is indicative of mechanisms that drive the membrane away from equilibrium. However, defining these mechanisms is challenging due to the short spatiotemporal scales at which diffusion operates. Here, we use high-density single protein tracking combined with photoactivation localization microscopy (sptPALM) to monitor Cdc42 in budding yeast, a system in which Cdc42 exhibits anisotropic organization. Cdc42 exhibited reduced mobility at the cell pole, where it was organized in nanoclusters. The Cdc42 nanoclusters were larger at the cell pole than those observed elsewhere in the cell. These features were exacerbated in cells expressing Cdc42-GTP, and were dependent on the scaffold Bem1, which contributed to the range of mobility and nanocluster size exhibited by Cdc42. The lipid environment, in particular phosphatidylserine levels, also played a role in regulating Cdc42 nanoclustering. These studies reveal how the mobility of a Rho GTPase is controlled to counter the depletive effects of diffusion, thus stabilizing Cdc42 on the plasma membrane and sustaining cell polarity.
引用
收藏
页码:1299 / 1310
页数:12
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