Curwin Amy J, Fairn Gregory D, McMaster Christopher R
Department of Pediatrics, Atlantic Research Centre, Dalhousie University, Halifax, Nova Scotia B3H 4H7, Canada.
J Biol Chem. 2009 Mar 13;284(11):7364-75. doi: 10.1074/jbc.M808732200. Epub 2009 Jan 6.
A protein known to regulate both lipid metabolism and vesicular transport is the phosphatidylcholine/phosphatidylinositol transfer protein Sec14 of Saccharomyces cerevisiae. Sec14 is thought to globally affect secretion from the trans-Golgi. The results from a synthetic genetic array screen for genes whose inactivation impaired growth of cells with a temperature-sensitive SEC14 allele implied Sec14 regulates transport into and out of the Golgi. This prompted us to examine the role of Sec14 in various vesicular transport pathways. We determined that Sec14 function was required for the route followed by Bgl2, whereas trafficking of other secreted proteins, including Hsp150, Cts1, Scw4, Scw10, Exg1, Cis3, and Ygp1, still occurred, indicating Sec14 regulates specific trans-Golgi export pathways. Upon diminution of Sec14 function, the v-SNARE Snc1 accumulated in endosomes and the trans-Golgi. Its accumulation in endosomes is consistent with Sec14 being required for transport from endosomes to the trans-Golgi. Sec14 was also required for trafficking of Ste3 and the lipophilic dye FM4-64 from the plasma membrane to the vacuole at the level of the endosome. The combined genetic and cell biology data are consistent with regulation of endosome trafficking being a major role for Sec14. We further determined that lipid ligand occupancy differentially regulates Sec14 functions.
一种已知可调节脂质代谢和囊泡运输的蛋白质是酿酒酵母的磷脂酰胆碱/磷脂酰肌醇转移蛋白Sec14。Sec14被认为会对反式高尔基体的分泌产生全局性影响。一项针对基因的合成基因阵列筛选结果显示,那些基因的失活会损害带有温度敏感型SEC14等位基因的细胞的生长,这暗示Sec14调节进出高尔基体的运输。这促使我们研究Sec14在各种囊泡运输途径中的作用。我们确定Sec14的功能是Bgl2所遵循途径所必需的,而其他分泌蛋白,包括Hsp150、Cts1、Scw4、Scw10、Exg1、Cis3和Ygp1的运输仍会发生,这表明Sec14调节特定的反式高尔基体输出途径。当Sec14功能减弱时,v-SNARE Snc1在内体和反式高尔基体中积累。它在内体中的积累与 Sec14是从内体运输到反式高尔基体所必需的这一情况相符。Sec14对于Ste3和亲脂性染料FM4-64在内体水平从质膜运输到液泡也是必需的。综合的遗传学和细胞生物学数据与Sec14在内体运输调节中起主要作用这一观点一致。我们进一步确定脂质配体占据情况会差异性地调节Sec14的功能。