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首页> 外文期刊>Biochemistry >The Na,K-ATPase alpha4 gene (Atp1a4) encodes a ouabain-resistant alpha subunit and is tightly linked to the alpha2 gene (Atp1a2) on mouse chromosome 1.
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The Na,K-ATPase alpha4 gene (Atp1a4) encodes a ouabain-resistant alpha subunit and is tightly linked to the alpha2 gene (Atp1a2) on mouse chromosome 1.

机译:Na,K-ATPase alpha4基因(Atp1a4)编码一种哇巴因抗性亚基,并与小鼠1号染色体上的alpha2基因(Atp1a2)紧密相连。

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摘要

We have isolated and characterized cDNA clones encoding the murine homologue of a putative fourth Na,K-ATPase alpha subunit isoform (alpha4). The predicted polypeptide is 1032 amino acids in length and exhibits 75% amino acid sequence identity to the rat alpha1, alpha2, and alpha3 subunits. Within the first extracellular loop, the alpha4 subunit is highly divergent from other Na,K-ATPase alpha subunits. Because this region of Na,K-ATPase is a major determinant of ouabain sensitivity, we tested the ability of the rodent alpha4 subunit to transfer ouabain resistance in a transfection protocol. We find that a cDNA containing the complete rodent alpha4 ORF is capable of conferring low levels of ouabain resistance upon HEK 293 cells, an indication that the alpha4 subunit can substitute for the endogenous ouabain-sensitive alpha subunit of human cells. Nucleotide sequences specific for the murine alpha4 subunit were used to identify the chromosomal position of the alpha4 subunit gene. By hybridizing an alpha4 probe with a series of BACs, we localized the alpha4 subunit gene (Atp1a4) to the distal portion of mouse chromosome 1, in very close proximity to the murine Na,K-ATPase alpha2 subunit gene. In adult mouse tissues, we detected expression of the alpha4 subunit gene almost exclusively in testis, with low levels of expression in epididymis. The close similarities in the organization and expression pattern of the murine and human alpha4 subunit genes suggest that these two genes are orthologous. Together, our studies indicate that the alpha4 subunit represents a functional Na,K-ATPase alpha subunit isoform.
机译:我们已经分离和表征了cDNA克隆,该克隆编码假定的第四个Na,K-ATPaseα亚基亚型(alpha4)的鼠类同源物。预测的多肽长度为1032个氨基酸,与大鼠的alpha1,alpha2和alpha3亚基具有75%的氨基酸序列同一性。在第一个细胞外环内,α4亚基与其他Na,K-ATPaseα亚基高度不同。由于Na,K-ATPase的这一区域是哇巴因敏感性的主要决定因素,因此我们在转染方案中测试了啮齿动物alpha4亚基转移哇巴因抗性的能力。我们发现含有完整啮齿动物α4ORF的cDNA能够赋予HEK 293细胞低水平的哇巴因抗性,这表明α4亚基可以替代人类细胞的内源性哇巴因敏感α亚基。对鼠α4亚基特异的核苷酸序列用于鉴定α4亚基基因的染色体位置。通过将alpha4探针与一系列BAC杂交,我们将alpha4亚基基因(Atp1a4)定位于小鼠染色体1的远端,非常接近鼠Na,K-ATPase alpha2亚基基因。在成年小鼠组织中,我们几乎只在睾丸中检测到了alpha4亚基基因的表达,而在附睾中的表达水平却很低。鼠和人α4亚基基因在组织和表达方式上的相似性表明这两个基因是直系同源的。总之,我们的研究表明,α4亚基代表功能性Na,K-ATPaseα亚基亚型。

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