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人类红细胞水通道蛋白CHIP。I. ABH和科尔顿血型抗原的分子特征

Human red cell aquaporin CHIP. I. Molecular characterization of ABH and Colton blood group antigens.

作者信息

Smith B L, Preston G M, Spring F A, Anstee D J, Agre P

机构信息

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205-2185.

出版信息

J Clin Invest. 1994 Sep;94(3):1043-9. doi: 10.1172/JCI117418.

Abstract

Blood group antigens are structural variants in surface carbohydrate or amino acid polymorphisms on extracellular domains of membrane proteins. The red cell water channel-forming integral protein (Aquaporin CHIP) is a homotetramer with only one N-glycosylated subunit, however no CHIP-associated blood group antigens have yet been identified. Immunoblotting, monosaccharide composition analysis, and selective glycosidase digestions revealed that the CHIP-associated oligosaccharide contains ABH determinants and resembles a band 3-type glycan that cannot be cleaved from intact membranes by Peptide:N-glycosidase F. The molecular structure of the Colton antigens was previously unknown, but CHIP was selectively immunoprecipitated with anti-Coa or anti-Co(b). The DNA sequence from Colton-typed individuals predicted that residue 45 is alanine in the Co(a+b-) phenotype and valine in the Co(a-b+) phenotype. The nucleotide polymorphism corresponds to a PflMI endonuclease digestion site in the DNA from Co(a-b+) individuals. These studies have defined antigens within two blood group systems on CHIP: (a) an ABH-bearing polylactosaminoglycan attached to a poorly accessible site in the native membrane; and (b) the Colton antigen polymorphism which may permit the identification of rare individuals with defective water channel expression.

摘要

血型抗原是膜蛋白细胞外结构域表面碳水化合物或氨基酸多态性中的结构变体。红细胞水通道形成整合蛋白(水通道蛋白CHIP)是一种同四聚体,只有一个N - 糖基化亚基,然而尚未鉴定出与CHIP相关的血型抗原。免疫印迹、单糖组成分析和选择性糖苷酶消化表明,与CHIP相关的寡糖含有ABH决定簇,类似于一种带3型聚糖,不能被肽:N - 糖苷酶F从完整膜上切割下来。科尔顿抗原的分子结构以前未知,但CHIP可被抗 - Coa或抗 - Co(b)选择性免疫沉淀。来自科尔顿血型个体的DNA序列预测,在Co(a + b -)表型中第45位残基是丙氨酸,在Co(a - b +)表型中是缬氨酸。核苷酸多态性对应于Co(a - b +)个体DNA中的一个PflMI核酸内切酶切割位点。这些研究确定了CHIP上两个血型系统中的抗原:(a) 一种带有ABH的聚乳糖胺聚糖,附着在天然膜中难以接近的位点;(b) 科尔顿抗原多态性,这可能有助于识别水通道表达缺陷的罕见个体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77de/295159/256052ad73e4/jcinvest00021-0143-a.jpg

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