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小鼠肠道上皮内淋巴细胞上CD45分子的特征分析。

Characterization of the CD45 molecule on murine intestinal intraepithelial lymphocytes.

作者信息

Goodman T G, Chang H L, Esselman W J, LeCorre R, Lefrancois L

机构信息

Department of Cell Biology, Upjohn Company, Kalamazoo, MI 49001.

出版信息

J Immunol. 1990 Nov 1;145(9):2959-66.

PMID:1976708
Abstract

The CD45 molecule was analyzed from murine intestinal intraepithelial lymphocytes (IEL). Immunofluorescent staining of CD8+ IEL revealed varying degrees of reactivity with mAb specific for CD45-restricted determinants, some which are typically expressed only by B cells. Immunoprecipitation of CD45 molecules from IEL yielded an array of proteins with apparent (m.w.) ranging from 180,000 to 260,000. The m.w. 260,000 form was restricted to IEL, was distinct from the B220 molecule, and was the only CD45 isoform that expressed the CD45-associated carbohydrate differentiation Ag CT1. Moreover, the CT1 determinant was present on cells of the Thy-1- but not the Thy-1+ IEL subset. Sequential immunoprecipitation studies indicated that expression of the m.w. 260,000 protein was not restricted to CT1+ cells. The protein composition of the m.w. 260,000 CD45 isoform was examined by using the polymerase chain reaction for analysis of CD45 variable exon usage. In contrast to B cells in which the major CD45 mRNA contained all three variable exons (exons 4, 5, and 6), IEL CD45 mRNA contained significant amounts of two-exon, single exon, and zero variable exon forms. Restriction enzyme analysis identified the single exon form as exon 5 and the two-exon form as a mixture of exons 4 and 5 and exons 5 and 6. Metabolic labeling of CD45 in pulse-chase experiments suggested that the generation of this high m.w. protein was caused by post-translational modifications, perhaps glycosylation. Overall, the results indicated that the high m.w. form of CD45 and the addition of the CT1 determinant were generated via IEL-specific post-translational modifications and not by novel alternate exon usage.

摘要

对来自小鼠肠道上皮内淋巴细胞(IEL)的CD45分子进行了分析。对CD8⁺ IEL进行免疫荧光染色,结果显示其与针对CD45限制性决定簇的单克隆抗体(mAb)有不同程度的反应性,其中一些决定簇通常仅由B细胞表达。从IEL中免疫沉淀CD45分子,得到一系列表观分子量(m.w.)在180,000至260,000之间的蛋白质。分子量为260,000的形式仅限于IEL,与B220分子不同,并且是唯一表达与CD45相关的碳水化合物分化抗原CT1的CD45同种型。此外,CT1决定簇存在于Thy-1⁻而非Thy-1⁺ IEL亚群的细胞上。连续免疫沉淀研究表明,分子量为260,000的蛋白质的表达不限于CT1⁺细胞。通过使用聚合酶链反应分析CD45可变外显子的使用情况,研究了分子量为260,000的CD45同种型的蛋白质组成。与主要CD45 mRNA包含所有三个可变外显子(外显子4、5和6)的B细胞不同,IEL CD45 mRNA包含大量的两外显子、单外显子和零可变外显子形式。限制性内切酶分析确定单外显子形式为外显子5,两外显子形式为外显子4和5以及外显子5和6的混合物。脉冲追踪实验中对CD45的代谢标记表明,这种高分子量蛋白质的产生是由翻译后修饰引起的,可能是糖基化。总体而言,结果表明CD45的高分子量形式和CT1决定簇的添加是通过IEL特异性翻译后修饰产生的,而不是通过新的可变外显子使用。

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