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反式高尔基体膜蛋白半乳糖基转移酶在高尔基体的保留需要膜锚定结构域内的半胱氨酸和组氨酸残基。

Golgi retention of a trans-Golgi membrane protein, galactosyltransferase, requires cysteine and histidine residues within the membrane-anchoring domain.

作者信息

Aoki D, Lee N, Yamaguchi N, Dubois C, Fukuda M N

机构信息

La Jolla Cancer Research Foundation, CA 92037.

出版信息

Proc Natl Acad Sci U S A. 1992 May 15;89(10):4319-23. doi: 10.1073/pnas.89.10.4319.

Abstract

Galactosyltransferase (GT; UDPgalactose:beta-D-N-acetylglucosaminide beta-1,4-galactosyltransferase, EC 2.4.1.22) is a type II membrane-anchored protein composed of a short N-terminal cytoplasmic tail, a signal/membrane-anchoring domain, and a stem region followed by a large catalytic domain including the C terminus. To identify the peptide segment and key amino acid residues that are critical for Golgi localization of GT, the expression vector pGT-hCG was designed to encode the entire GT molecule fused to the C-terminal region of human chorionic gonadotropin alpha subunit (hCG alpha) as a reporter. COS-1 cells transfected with pGT-hCG expressed the chimera in the Golgi region, as detected by immunofluorescence microscopy using anti-hCG antibodies. Two deletion mutants, delta tail and delta stem, which are lacking most of the N-terminal cytoplasmic tail or 10 amino acids immediately after the membrane-anchoring domain, were localized in the Golgi. Replacement mutations of the membrane-anchoring domain of GT showed that the second quarter of the transmembrane domain or Cys29-Ala30-Leu31-His32-Leu33 is necessary for GT to be retained in the Golgi. Furthermore, the point mutants Cys29----Ser29 and His32----Leu32 were partially transported to the plasma membrane, whereas an Ala30-Leu31----Phe30-Gly31 mutant was localized in the Golgi. Finally, a double mutant, Cys29/His32----Ser29/Leu32, was found to be transported efficiently to the plasma membrane. The signal-anchoring domain of the transferrin receptor, a type II plasma membrane protein, was then replaced by portions of the GT transmembrane domain. Although the Cys-Xaa-Xaa-His sequence by itself cannot retain the transferrin receptor in the Golgi, the cytoplasmic half of the transmembrane domain of GT was partially capable of retaining the transferrin receptor in the Golgi. These results suggest that the cytoplasmic (or N-terminal) half of the transmembrane domain of GT contributes to the Golgi retention signal and that particularly Cys29 and His32 in this region are critical for GT to be retained in the Golgi.

摘要

半乳糖基转移酶(GT;尿苷二磷酸半乳糖:β-D-N-乙酰葡糖胺β-1,4-半乳糖基转移酶,EC 2.4.1.22)是一种II型膜锚定蛋白,由一个短的N端胞质尾、一个信号/膜锚定结构域、一个茎区以及一个包括C端的大催化结构域组成。为了鉴定对GT在高尔基体定位至关重要的肽段和关键氨基酸残基,设计了表达载体pGT-hCG,用于编码与人类绒毛膜促性腺激素α亚基(hCGα)的C端区域融合的完整GT分子作为报告基因。用抗hCG抗体通过免疫荧光显微镜检测发现,用pGT-hCG转染的COS-1细胞在高尔基体区域表达了嵌合体。两个缺失突变体,即缺失大部分N端胞质尾的delta tail和缺失膜锚定结构域后紧接着的10个氨基酸的delta stem,定位于高尔基体。GT膜锚定结构域的替换突变表明,跨膜结构域的第二个四分之一或Cys29-Ala30-Leu31-His32-Leu33对于GT保留在高尔基体中是必需的。此外,点突变体Cys29----Ser29和His32----Leu32部分转运到质膜,而Ala30-Leu31----Phe30-Gly31突变体定位于高尔基体。最后,发现双突变体Cys29/His32----Ser29/Leu32有效地转运到质膜。然后,将II型质膜蛋白转铁蛋白受体的信号锚定结构域替换为GT跨膜结构域的部分区域。虽然Cys-Xaa-Xaa-His序列本身不能将转铁蛋白受体保留在高尔基体中,但GT跨膜结构域的胞质半部分能够部分地将转铁蛋白受体保留在高尔基体中。这些结果表明,GT跨膜结构域的胞质(或N端)半部分有助于高尔基体保留信号,并且该区域中特别是Cys29和His32对于GT保留在高尔基体中至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/828c/49073/86115eef18f6/pnas01084-0110-a.jpg

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