Crambert Gilles, Li Ciming, Swee Lee Kim, Geering Käthi
Institute of Pharmacology and Toxicology of the University of Lausanne, Rue du Bugnon 27, CH-1005 Lausanne, Switzerland.
J Biol Chem. 2004 Jul 16;279(29):30888-95. doi: 10.1074/jbc.M313494200. Epub 2004 May 7.
The brain-specific FXYD7 is a member of the recently defined FXYD family that associates with the alpha1-beta1 Na,K-ATPase isozyme and induces an about 2-fold decrease in its apparent K+ affinity. By using the Xenopus oocyte as an expression system, we have investigated the role of conserved and FXYD7-specific amino acids in the cellular routing of FXYD7 and in its association with and regulation of Na,K-ATPase. In contrast to FXYD2 and FXYD4, the studies on FXYD7 show that the conserved FXYD motif in the extracytoplasmic domain is not involved in the efficient association of FXYD7 with Na,K-ATPase. On the other hand, the conserved Gly40 and Gly29, located on the same face of the transmembrane helix, were found to be implicated both in the association with and the regulation of Na,K-ATPase. Mutational analysis of FXYD7-specific regions revealed the presence of an ER export signal at the end of the cytoplasmic tail. Deletion of a C-terminal valine residue in FXYD7 significantly delayed and decreased its O-glycosylation processing and retarded the rate of its cell surface expression. This result indicates that the C-terminal valine residue is involved in the rapid and selective ER export of FXYD7, which could explain the observed post-translational association of FXYD7 with Na,K-ATPase. In conclusion, our study on FXYD7 provides new information on structural determinants of general importance for FXYD protein action. Moreover, FXYD7 is identified as a new member of proteins with a regulated ER export, which suggests that, among FXYD proteins, FXYD7 has a particular regulatory function in brain.
大脑特异性FXYD7是最近定义的FXYD家族的成员,它与α1-β1钠钾ATP酶同工酶相关联,并使其表观钾离子亲和力降低约2倍。通过使用非洲爪蟾卵母细胞作为表达系统,我们研究了保守的和FXYD7特异性氨基酸在FXYD7的细胞转运及其与钠钾ATP酶的关联和调节中的作用。与FXYD2和FXYD4不同,对FXYD7的研究表明,胞外结构域中保守的FXYD基序不参与FXYD7与钠钾ATP酶的有效结合。另一方面,位于跨膜螺旋同一面上的保守甘氨酸40和甘氨酸29被发现既参与与钠钾ATP酶的结合,也参与对其的调节。对FXYD7特异性区域的突变分析揭示了在细胞质尾巴末端存在一个内质网输出信号。FXYD7中C末端缬氨酸残基的缺失显著延迟并降低了其O-糖基化加工,并延缓了其细胞表面表达的速率。这一结果表明,C末端缬氨酸残基参与了FXYD7的快速和选择性内质网输出,这可以解释观察到的FXYD7与钠钾ATP酶的翻译后关联。总之,我们对FXYD7的研究提供了关于FXYD蛋白作用普遍重要的结构决定因素的新信息。此外,FXYD7被鉴定为具有受调节内质网输出的蛋白质新成员,这表明在FXYD蛋白中,FXYD7在大脑中具有特殊的调节功能。