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α1结构域中的氨基酸序列而非糖基化在HLA - A2/β2 - 微球蛋白的结合及细胞表面表达中起重要作用。

Amino acid sequences in the alpha 1 domain and not glycosylation are important in HLA-A2/beta 2-microglobulin association and cell surface expression.

作者信息

Santos-Aguado J, Biro P A, Fuhrmann U, Strominger J L, Barbosa J A

出版信息

Mol Cell Biol. 1987 Mar;7(3):982-90. doi: 10.1128/mcb.7.3.982-990.1987.

Abstract

The role of the single carbohydrate moiety present on the HLA-A2 molecule was studied by introducing several amino acid substitutions (by site-directed mutagenesis of the HLA-A2 gene) in the consensus glycosylation sequence Asn-X-Ser. Two different amino acid substitutions of the asparagine residue at position 86 (glutamine and aspartic acid) resulted in the synthesis of ca. 39,000-molecular-weight nonglycosylated heavy chains that were detected in the cytoplasm but not on the surface of mouse L-cell transfectants. However, a low level of surface expression was detected following transfection of human (rhabdomyosarcoma) cells or mouse L cells containing human beta 2-microglobulin. The defect in surface expression was not due to the absence of the glycan moiety, since the substitution of a glycine for a serine at amino acid 88 did not have the same drastic effect in the presence of human beta 2-microglobulin. These and other data suggest that the asparagine residue may play a critical role in the conformation of the HLA heavy chain and its interaction with beta 2-microglobulin. Immunofluorescence microscopy following permeabilization of the transfectants demonstrated that the unglycosylated HLA heavy chains are sequestered in an unidentified cellular compartment that is different from the Golgi structure.

摘要

通过在共有糖基化序列天冬酰胺- X -丝氨酸中引入几个氨基酸取代(通过对HLA - A2基因进行定点诱变),研究了HLA - A2分子上单个碳水化合物部分的作用。对第86位天冬酰胺残基进行两种不同的氨基酸取代(谷氨酰胺和天冬氨酸),导致合成了约39,000分子量的非糖基化重链,在小鼠L细胞转染子的细胞质中可检测到,但在其表面未检测到。然而,转染含有人类β2 -微球蛋白的人(横纹肌肉瘤)细胞或小鼠L细胞后,检测到了低水平的表面表达。表面表达缺陷并非由于聚糖部分的缺失,因为在存在人类β2 -微球蛋白的情况下,将第88位氨基酸处的丝氨酸替换为甘氨酸并没有产生同样剧烈的影响。这些以及其他数据表明,天冬酰胺残基可能在HLA重链的构象及其与β2 -微球蛋白的相互作用中起关键作用。转染子通透后进行的免疫荧光显微镜检查表明,未糖基化的HLA重链被隔离在一个与高尔基体结构不同的未知细胞区室中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eced/365167/164d30417ec5/molcellb00075-0029-a.jpg

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