Horazdovsky B F, Cowles C R, Mustol P, Holmes M, Emr S D
Department of Biochemistry, Texas Southwestern Medical Center, Dallas, Texas 75235-9038, USA.
J Biol Chem. 1996 Dec 27;271(52):33607-15. doi: 10.1074/jbc.271.52.33607.
Genetic analyses of vacuolar protein sorting in Saccharomyces cerevisiae have uncovered a large number of mutants (vps) that missort and secrete soluble vacuolar hydrolases. Here we report the characterization of the gene product affected in one of these mutants, Vps8p. Polyclonal antiserum raised against a trpE-Vps8 fusion protein specifically detects a 134-kDa protein in labeled yeast cell extracts. Subcellular fractionation studies demonstrate that Vps8p is distributed between a low speed membrane pellet fraction and a high speed membrane pellet fraction. The lack of a hydrophobic domain in Vps8p suggests that Vps8p peripherally associates with a membrane(s). This association was found to depend on the function of Vps21p, a member of the Rab/Ypt/Sec4 family of small GTPases. In vps21 null mutant cells, Vps8p is found in the cytosol. In addition, overexpression of Vps21p partially suppresses a vps8 null mutant, indicating that Vps8p and Vps21p functionally interact. Vps8p contains a C-terminal cysteine-rich region that conforms to the H2 variant of the RING finger Zn2+ binding motif. Truncation of this C-terminal region partially compromises Vps8p function. While vps8 null mutant strains missort and secrete soluble vacuolar hydrolases, the integral vacuolar membrane protein, alkaline phosphatase (ALP), is sorted to the vacuole and matured normally. In addition, when vps8 mutants are combined with endocytic or late secretory pathway mutants (end3 or sec1, respectively), ALP is still delivered to the vacuole. These observations indicate that ALP is sorted to the vacuole in a Vps8p-independent manner, possibly via an alternative vesicle carrier.
对酿酒酵母中液泡蛋白分选的遗传分析发现了大量错分选并分泌可溶性液泡水解酶的突变体(vps)。在此,我们报告了其中一个突变体Vps8p中受影响的基因产物的特征。针对trpE - Vps8融合蛋白产生的多克隆抗血清在标记的酵母细胞提取物中特异性检测到一种134 kDa的蛋白质。亚细胞分级分离研究表明,Vps8p分布在低速膜沉淀组分和高速膜沉淀组分之间。Vps8p中缺乏疏水结构域表明它与膜外周结合。发现这种结合依赖于小GTP酶Rab/Ypt/Sec4家族成员Vps21p的功能。在vps21缺失突变体细胞中,Vps8p存在于细胞质中。此外,Vps21p的过表达部分抑制了vps8缺失突变体,表明Vps8p和Vps21p在功能上相互作用。Vps8p包含一个C末端富含半胱氨酸的区域,符合RING指状Zn2 +结合基序的H2变体。该C末端区域的截短部分损害了Vps8p的功能。虽然vps8缺失突变体菌株错分选并分泌可溶性液泡水解酶,但完整的液泡膜蛋白碱性磷酸酶(ALP)被分选到液泡并正常成熟。此外,当vps8突变体与内吞或晚期分泌途径突变体(分别为end3或sec1)结合时,ALP仍被递送至液泡。这些观察结果表明,ALP以不依赖Vps8p的方式被分选到液泡中,可能通过替代的囊泡载体。