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SEC62编码一种假定的膜蛋白,该蛋白是蛋白质转运到酵母内质网中所必需的。

SEC62 encodes a putative membrane protein required for protein translocation into the yeast endoplasmic reticulum.

作者信息

Deshaies R J, Schekman R

机构信息

Division of Biochemistry and Molecular Biology, University of California, Berkeley 94720.

出版信息

J Cell Biol. 1989 Dec;109(6 Pt 1):2653-64. doi: 10.1083/jcb.109.6.2653.

Abstract

Yeast sec62 mutant cells are defective in the translocation of several secretory precursor proteins into the lumen of the endoplasmic reticulum (Rothblatt et al., 1989). The deficiency, which is most restrictive for alpha-factor precursor (pp alpha F) and preprocarboxypeptidase Y, has been reproduced in vitro. Membranes isolated from mutant cells display low and labile translocation activity with pp alpha F translated in a wild-type cytosol fraction. The defect is unique to the membrane fraction because cytosol from mutant cells supports translocation into membranes from wild-type yeast. Invertase assembly is only partly affected by the sec62 mutation in vivo and is nearly normal with mutant membranes in vitro. A potential membrane location for the SEC62 gene product is supported by evaluation of the molecular clone. DNA sequence analysis reveals a 32-kD protein with no obvious NH2-terminal signal sequence but with two domains of sufficient length and hydrophobicity to span a lipid bilayer. Sec62p is predicted to display significant NH2- and COOH-terminal hydrophilic domains on the cytoplasmic surface of the ER membrane. The last 30 amino acids of the COOH terminus may form an alpha-helix with 14 lysine and arginine residues arranged uniformly about the helix. This domain may allow Sec62p to interact with other proteins of the putative translocation complex.

摘要

酵母sec62突变体细胞在将几种分泌性前体蛋白转运到内质网腔中存在缺陷(Rothblatt等人,1989年)。这种缺陷对α-因子前体(ppαF)和前羧肽酶Y的限制最大,已在体外重现。从突变体细胞中分离出的膜对在野生型胞质溶胶部分中翻译的ppαF显示出低且不稳定的转运活性。这种缺陷是膜部分特有的,因为突变体细胞的胞质溶胶支持将蛋白转运到野生型酵母的膜中。在体内,蔗糖酶组装仅部分受sec62突变影响,在体外与突变体膜一起时几乎正常。对分子克隆的评估支持了SEC62基因产物的潜在膜定位。DNA序列分析揭示了一种32-kD的蛋白质,没有明显的NH2末端信号序列,但有两个足够长且具有疏水性的结构域,足以跨越脂质双层。预测Sec62p在内质网膜的细胞质表面显示出显著的NH2和COOH末端亲水区。COOH末端的最后30个氨基酸可能形成一个α-螺旋,14个赖氨酸和精氨酸残基围绕该螺旋均匀排列。该结构域可能允许Sec62p与假定的转运复合物的其他蛋白质相互作用。

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