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大鼠连接蛋白40的分子克隆与表达,一种在血管平滑肌中表达的间隙连接蛋白。

Molecular cloning and expression of rat connexin40, a gap junction protein expressed in vascular smooth muscle.

作者信息

Beyer E C, Reed K E, Westphale E M, Kanter H L, Larson D M

机构信息

Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Membr Biol. 1992 Apr;127(1):69-76. doi: 10.1007/BF00232759.

DOI:10.1007/BF00232759
PMID:1328644
Abstract

Gap junctions contain intercellular channels which are formed by members of a group of related proteins called connexins. Connexins contain conserved transmembrane and extracellular domains, but unique cytoplasmic regions which may provide connexin-specific physiologic properties. We used polymerase chain reaction (PCR) amplification and cDNA library screening to clone DNA encoding a novel member of this gene family, rat connexin40 (Cx40). The derived rat Cx40 polypeptide contains 356 amino acids, with a predicted molecular mass of 40,233 Da. Sequence comparisons suggest that Cx40 is the mammalian homologue of chick connexin42, but it has predicted cytoplasmic regions that differ from previously described mammalian connexins. Southern blots of rat genomic DNA suggest that Cx40 is encoded by a single copy gene containing no introns within its coding region. Northern blots demonstrate that Cx40 is expressed in multiple tissues (including lung, heart, uterus, ovary, and blood vessels) and in primary cultures and established lines of vascular smooth muscle cells. Cx40 is coexpressed with connexin43 in several cell types, including A7r5 cells, which contain two physiologically distinct gap junctional channels. To demonstrate that Cx40 could form functional channels, we stably transfected communication-deficient Neuro2A cells with Cx40 DNA. These Cx40-transfected cells showed intercellular passage of microinjected Lucifer yellow CH. The expression of multiple connexins (such as Cx40 and Cx43) by a single cell may provide a mechanism by which cells regulate intercellular coupling through the formation of multiple channels.

摘要

缝隙连接包含细胞间通道,这些通道由一组称为连接蛋白的相关蛋白质成员形成。连接蛋白包含保守的跨膜和细胞外结构域,但具有独特的细胞质区域,这些区域可能提供连接蛋白特异性的生理特性。我们使用聚合酶链反应(PCR)扩增和cDNA文库筛选来克隆编码该基因家族新成员大鼠连接蛋白40(Cx40)的DNA。推导的大鼠Cx40多肽包含356个氨基酸,预测分子量为40,233 Da。序列比较表明,Cx40是鸡连接蛋白42的哺乳动物同源物,但它具有与先前描述的哺乳动物连接蛋白不同的预测细胞质区域。大鼠基因组DNA的Southern印迹表明,Cx40由一个单拷贝基因编码,其编码区域内没有内含子。Northern印迹表明,Cx40在多种组织(包括肺、心脏、子宫、卵巢和血管)以及血管平滑肌细胞的原代培养物和建立的细胞系中表达。Cx40与连接蛋白43在几种细胞类型中共表达,包括A7r5细胞,该细胞包含两种生理上不同的缝隙连接通道。为了证明Cx40可以形成功能性通道,我们用Cx40 DNA稳定转染了缺乏通讯能力的Neuro2A细胞。这些转染了Cx40的细胞显示出微注射的荧光素黄CH在细胞间通过。单个细胞表达多种连接蛋白(如Cx40和Cx43)可能提供一种机制,通过该机制细胞可以通过形成多个通道来调节细胞间偶联。

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Connexin43: a protein from rat heart homologous to a gap junction protein from liver.连接蛋白43:一种来自大鼠心脏的蛋白质,与来自肝脏的一种间隙连接蛋白同源。
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