Parrish William R, Stefan Christopher J, Emr Scott D
Department of Cellular and Molecular Medicine and the Howard Hughes Medical Institute, School of Medicine, University of California at San Diego, La Jolla, California 92093-0668, USA.
Mol Biol Cell. 2004 Aug;15(8):3567-79. doi: 10.1091/mbc.e04-03-0209. Epub 2004 May 28.
The requirement of Vps34p, the sole phosphatidylinositol (PI) 3-kinase in Saccharomyces cerevisiae, for protein sorting to the vacuole in yeast has exemplified the essential role for phosphoinositides, phosphorylated derivatives of PI, in membrane trafficking. To better understand mechanisms that regulate PI 3-phosphate [PI(3)P]-mediated signaling, the role of the yeast myotubularin-related PI(3)P phosphatase Ymr1p was investigated. We found that Ymr1p and the synaptojanin-like phosphatase Sjl3p function as key regulators of the localization and levels of PI(3)P. Our data indicated that the ymr1Delta sjl3Delta double mutant aberrantly accumulated PI(3)P and demonstrated a steady-state redistribution of this lipid that leads to enrichment on the vacuolar membrane. This resulted in vacuole protein sorting defects, vacuolar fragmentation, and the misregulation of PI(3)P-specific effectors. Triple deletion of YMR1, SJL2, and SJL3 was lethal, suggesting an essential requirement for phosphatase-mediated PI(3)P regulation. Consistent with this, growth was restored to a ymr1Delta sjl2Delta sjl3Delta triple mutant by a PI(3)P-targeted Sac1p domain chimera (GFP-Sac1DeltaC-FYVE(EEA1)) that returned PI(3)P to levels comparable with wild-type cells. Together, this study demonstrated that Ymr1p, a myotubularin phosphatase family member, functions in the control of PI(3)P-dependent signaling and the maintenance of endosomal system integrity. In addition, this work defined an essential overlapping role for lipid phosphatases in the regulation of 3' phosphoinositides in yeast.
Vps34p是酿酒酵母中唯一的磷脂酰肌醇(PI)3激酶,其在酵母中将蛋白质分选至液泡的过程体现了磷酸肌醇(PI的磷酸化衍生物)在膜运输中的重要作用。为了更好地理解调节PI 3 - 磷酸[PI(3)P]介导信号传导的机制,研究了酵母中与肌管蛋白相关的PI(3)P磷酸酶Ymr1p的作用。我们发现Ymr1p和类突触素样磷酸酶Sjl3p作为PI(3)P定位和水平的关键调节因子。我们的数据表明,ymr1Delta sjl3Delta双突变体异常积累PI(3)P,并表现出这种脂质的稳态重新分布,导致其在液泡膜上富集。这导致液泡蛋白分选缺陷、液泡碎片化以及PI(3)P特异性效应器的调节异常。YMR1、SJL2和SJL3的三重缺失是致死性的,表明磷酸酶介导的PI(3)P调节是必不可少的。与此一致的是,通过靶向PI(3)P的Sac1p结构域嵌合体(GFP - Sac1DeltaC - FYVE(EEA1))将PI(3)P恢复到与野生型细胞相当的水平,从而使ymr1Delta sjl2Delta sjl3Delta三重突变体恢复生长。总之,这项研究表明,肌管蛋白磷酸酶家族成员Ymr1p在控制PI(3)P依赖性信号传导和维持内体系统完整性方面发挥作用。此外,这项工作确定了脂质磷酸酶在酵母中3'磷酸肌醇调节中的重要重叠作用。