Bem3, a Cdc42 GTPase-Activating Protein, traffics to an intracellular compartment and recruits the secretory Rab GTPase Sec4 to endomembranes

拉布 生物 细胞生物学 CDC42型 电池极性 内吞循环 GTP酶 细胞内 胞质分裂 GTPase激活蛋白 囊泡转运蛋白 分泌途径 小型GTPase 内吞作用 小泡 细胞分裂 细胞 信号转导 G蛋白 生物化学 内质网 高尔基体
作者
Debarati Mukherjee,Arpita Sen,Douglas R. Boettner,Gregory D. Fairn,Daniel Schlam,Fernando J. Bonilla Valentin,J. Michael McCaffery,Tony R. Hazbun,Chris J. Staiger,Sergio Grinstein,Sandra K. Lemmon,R. Claudio Aguilar
出处
期刊:Journal of Cell Science [The Company of Biologists]
被引量:23
标识
DOI:10.1242/jcs.117663
摘要

Cell polarity is essential for many cellular functions including cell division and cell-fate determination. Although RhoGTPase signaling and vesicle trafficking are both required for the establishment of cell polarity, the mechanisms by which they are coordinated are unclear. Here, we demonstrate that the yeast RhoGAP (GTPase Activating Protein), Bem3, is targeted to sites of polarized growth by the endocytic and recycling pathways. Specifically, deletion of SLA2 or RCY1 led to mislocalization of Bem3 to depolarized puncta and accumulation in intracellular compartments, respectively. Bem3 partitioned between the plasma membrane and an intracellular membrane-bound compartment. These Bem3-positive structures were polarized towards sites of bud emergence and were mostly observed during the pre-mitotic phase of apical growth. Cell biological and biochemical approaches demonstrated that this intracellular Bem3 compartment contained markers for both the endocytic and secretory pathways, thereby, reminiscent of the Spitzenkörper present in the hyphal tips of growing fungi. Importantly, Bem3 was not a passive cargo, but recruited the secretory Rab protein, Sec4, to Bem3-containing compartments. Moreover, Bem3 deletion resulted in less efficient localization of Sec4 to bud tips during early stages of bud emergence. Surprisingly, these effects of Bem3 on Sec4 were independent of its GAP activity, but rather depended on its ability to efficiently bind endomembranes. This work unveils unsuspected and important details of the relationship between vesicle traffic and elements of the cell polarity machinery: (1) Bem3, a cell polarity and peripherally-associated membrane protein, relies on vesicle trafficking for maintaining its proper localization and (2) in turn, Bem3 influences secretory vesicle trafficking.
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