Xu Peng, Okkeri Juha, Hanisch Susanne, Hu Rui-Ying, Xu Qin, Pomorski Thomas Günther, Ding Xiao-Yan
Laboratory of Molecular Cell Biology, Key Laboratory of Stem Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of Chinese Academy of Sciences, China.
J Cell Sci. 2009 Aug 15;122(Pt 16):2866-76. doi: 10.1242/jcs.047423.
P4-ATPases are transmembrane proteins unique to eukaryotes that play a fundamental role in vesicular transport. They have been proposed to act as phospholipid flippases thereby regulating lipid topology in cellular membranes. We cloned and characterized a novel murine P4-ATPase that is specifically expressed in testis, and named it FetA (flippase expressed in testis splicing form A). When expressed in Saccharomyces cerevisiae, FetA localizes partially to the plasma membrane resulting in increased internalization of NBD-labeled phosphatidylethanolamine and phosphatidylcholine, supporting a role for FetA in the inward lipid translocation across cellular membranes. In mouse testis, FetA protein is detected in gamete cells, from pachytene spermatocytes to mature sperms, and its intracellular localization is tightly related with acrosome formation, a process that involves intensive intracellular vesicle formation and fusion. Furthermore, loss-of-function of FetA by RNA interference in mastocytoma P815 cells profoundly perturbs the structural organization of the Golgi complex and causes loss of constitutive secretion at lower temperature. Our findings point to an essential role of FetA in Golgi morphology and secretory function, suggesting a crucial role for this novel murine P4-ATPase in spermatogenesis.
P4-ATP酶是真核生物特有的跨膜蛋白,在囊泡运输中起基本作用。有人提出它们作为磷脂翻转酶,从而调节细胞膜中的脂质拓扑结构。我们克隆并鉴定了一种在睾丸中特异性表达的新型小鼠P4-ATP酶,并将其命名为FetA(睾丸中表达的翻转酶剪接形式A)。当在酿酒酵母中表达时,FetA部分定位于质膜,导致NBD标记的磷脂酰乙醇胺和磷脂酰胆碱的内化增加,支持FetA在跨细胞膜向内脂质转运中的作用。在小鼠睾丸中,从粗线期精母细胞到成熟精子的配子细胞中都能检测到FetA蛋白,其细胞内定位与顶体形成密切相关,顶体形成过程涉及密集的细胞内囊泡形成和融合。此外,在肥大细胞瘤P815细胞中通过RNA干扰使FetA功能丧失,会严重扰乱高尔基体复合体的结构组织,并在较低温度下导致组成型分泌丧失。我们的研究结果表明FetA在高尔基体形态和分泌功能中起重要作用,提示这种新型小鼠P4-ATP酶在精子发生中起关键作用。