Piao Hai Lan, Machado Iara M P, Payne Gregory S
Department of Biological Chemistry, David Geffen School of Medicine, University of California-Los Angeles, Los Angeles, CA 90095, USA.
Mol Biol Cell. 2007 Jan;18(1):57-65. doi: 10.1091/mbc.e06-08-0721. Epub 2006 Oct 25.
The actin-associated protein Sla1p, through its SHD1 domain, acts as an adaptor for the NPFX(1,2)D endocytic targeting signal in yeast. Here we report that Wsc1p, a cell wall stress sensor, depends on this signal-adaptor pair for endocytosis. Mutation of NPFDD in Wsc1p or expression of Sla1p lacking SHD1 blocked Wsc1p internalization. By live cell imaging, endocytically defective Wsc1p was not concentrated at sites of endocytosis. Polarized distribution of Wsc1p to regions of cell growth was lost in the absence of endocytosis. Mutations in genes necessary for endosome to Golgi traffic caused redistribution of Wsc1p from the cell surface to internal compartments, indicative of recycling. Inhibition of Wsc1p endocytosis caused defects in polarized deposition of the cell wall and increased sensitivity to perturbation of cell wall synthesis. Our results reveal that the NPFX(1,2)D-Sla1p system is responsible for directing Wsc1p into an endocytosis and recycling pathway necessary to maintain yeast cell wall polarity. The dynamic localization of Wsc1p, a sensor of the extracellular wall in yeast, resembles polarized distribution of certain extracellular matrix-sensing integrins through endocytic recycling.
肌动蛋白相关蛋白Sla1p通过其SHD1结构域,在酵母中作为NPFX(1,2)D内吞靶向信号的衔接蛋白。在此我们报告,细胞壁应激传感器Wsc1p的内吞作用依赖于这一信号-衔接蛋白对。Wsc1p中NPFDD的突变或缺乏SHD1的Sla1p的表达会阻断Wsc1p的内化。通过活细胞成像,内吞缺陷的Wsc1p不会聚集在内吞位点。在缺乏内吞作用的情况下,Wsc1p向细胞生长区域的极化分布丧失。内体到高尔基体运输所需基因的突变导致Wsc1p从细胞表面重新分布到内部区室,这表明存在再循环。抑制Wsc1p的内吞作用会导致细胞壁极化沉积缺陷,并增加对细胞壁合成扰动的敏感性。我们的结果表明,NPFX(1,2)D-Sla1p系统负责将Wsc1p导向一条维持酵母细胞壁极性所必需的内吞和再循环途径。酵母中细胞外壁传感器Wsc1p的动态定位类似于某些通过内吞再循环的细胞外基质传感整合素的极化分布。