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小鼠红细胞蛋白4.2的分子克隆:一种与转谷氨酰胺酶超基因家族具有高度同源性的膜蛋白。

Molecular cloning of mouse erythrocyte protein 4.2: a membrane protein with strong homology with the transglutaminase supergene family.

作者信息

Rybicki A C, Schwartz R S, Qiu J J, Gilman J G

机构信息

Division of Hematology, Albert Einstein College of Medicine-Montefiore Medical Center, Bronx, New York 10467.

出版信息

Mamm Genome. 1994 Jul;5(7):438-45. doi: 10.1007/BF00357005.

Abstract

We report the molecular cloning and characterization of mouse erythrocyte protein 4.2 (P4.2). Mouse erythrocyte P4.2 is a 691-amino-acid protein with a predicted MW of 77 kDa. Northern blot analysis detected a 2.2-kb transcript in mouse reticulocytes, compared with a 2.4- to 2.5-kb transcript in human reticulocytes, which is consistent with the absence of the 30-amino-acid splicing insert in mouse erythrocyte P4.2 that is found in the human protein (isoform I). Like the human erythrocyte P4.2, mouse erythrocyte P4.2 contains regions strikingly homologous with the transglutaminase (TGase) proteins although it too most likely lacks TGase crosslinking activity. Mouse P4.2 is on average 73% identical with human erythrocyte P4.2, although regional variations exist, with greatest conservation in the regions of the molecule that contain the TGase active site, the TGase calcium-binding site, and a band 3 binding site. Hydropathy analysis reveals a protein containing a series of hydrophobic domains, similar to the situation for human P4.2 and consistent with its tight binding to the membrane, although the mouse P4.2 is missing both the strongly hydrophilic region and adjacent highly charged region that are present in the human protein, suggesting that the two proteins could differ in their physical characteristics, binding associations, or functional properties. The availability of the complete mouse erythrocyte P4.2 cDNA should help in the design of P4.2-deficient animal models (for example, ribozyme or homologous recombinant "knockout" models) that should accelerate the understanding of P4.2 function in both erythroid and non-erythroid cells.

摘要

我们报告了小鼠红细胞蛋白4.2(P4.2)的分子克隆及特性分析。小鼠红细胞P4.2是一种由691个氨基酸组成的蛋白质,预测分子量为77 kDa。Northern印迹分析在小鼠网织红细胞中检测到一条2.2 kb的转录本,而在人网织红细胞中为2.4至2.5 kb的转录本,这与小鼠红细胞P4.2中不存在人蛋白(同工型I)中发现的30个氨基酸的剪接插入片段一致。与人类红细胞P4.2一样,小鼠红细胞P4.2含有与转谷氨酰胺酶(TGase)蛋白显著同源的区域,尽管它很可能也缺乏TGase交联活性。小鼠P4.2与人红细胞P4.2平均有73%的同一性,不过存在区域差异,在包含TGase活性位点、TGase钙结合位点和带3结合位点的分子区域中保守性最高。亲水性分析显示该蛋白含有一系列疏水结构域,类似于人类P4.2的情况,且与其紧密结合于膜一致,尽管小鼠P4.2缺少人类蛋白中存在的强亲水区和相邻的高电荷区,这表明这两种蛋白在物理特性、结合关联或功能特性上可能存在差异。完整的小鼠红细胞P4.2 cDNA的获得应有助于设计P4.2缺陷动物模型(例如,核酶或同源重组“敲除”模型),这将加速对P4.2在红细胞和非红细胞中的功能的理解。

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