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首页> 外文期刊>American Journal of Physiology >Evolution of the Na-P(i) cotransport systems.
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Evolution of the Na-P(i) cotransport systems.

机译:Na-P(i)共运系统的演变。

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摘要

Membrane transport systems for P(i) transport are key elements in maintaining homeostasis of P(i) in organisms as diverse as bacteria and human. Two Na-P(i) cotransporter families with well-described functional properties in vertebrates, namely NaPi-II and NaPi-III, show conserved structural features with prokaryotic origin. A clear vertical relationship can be established among the mammalian protein family NaPi-III, a homologous system in C. elegans, the yeast system Pho89, and the bacterial P(i) transporter Pit. An alternative lineage connects the mammalian NaPi-II-related transporters with homologous proteins from Caenorhabditis elegans and Vibrio cholerae. The present review focuses on the molecular evolution of the NaPi-II protein family. Preliminary results indicate that the NaPi-II homologue cloned from V. cholerae is indeed a functional P(i) transporter when expressed in Xenopus oocytes. The closely related NaPi-II isoforms NaPi-IIa and NaPi-IIb are responsible for regulated epithelial Na-dependent P(i) transport in all vertebrates. Most species express two different NaPi-II proteins with the exception of the flounder and Xenopus laevis, which rely on only a single isoform. Using an RT-PCR-based approach with degenerate primers, we were able to identify NaPi-II-related mRNAs in a variety of vertebrates from different families. We hypothesize that the original NaPi-IIb-related gene was duplicated early in vertebrate development. The appearance of NaPi-IIa correlates with the development of the mammalian nephron.
机译:P(i)转运的膜转运系统是维持P(i)在细菌和人类等生物体内动态平衡的关键要素。 NaPi-II和NaPi-III在脊椎动物中具有良好描述的功能特性的两个Na-P(i)共转运蛋白家族显示出具有原核生物来源的保守结构特征。可以在哺乳动物蛋白家族NaPi-III,秀丽隐杆线虫的同源系统,酵母系统Pho89和细菌P(i)转运蛋白Pit之间建立明确的垂直关系。另一种谱系将哺乳动物的NaPi-II相关转运蛋白与秀丽隐杆线虫和霍乱弧菌的同源蛋白连接起来。本综述着眼于NaPi-II蛋白家族的分子进化。初步结果表明,从非洲霍乱弧菌克隆的NaPi-II同源物在非洲爪蟾卵母细胞中表达时确实是功能性P(i)转运蛋白。密切相关的NaPi-II亚型NaPi-IIa和NaPi-IIb负责调节所有脊椎动物中Na-依赖性P(i)上皮运输。除了比目鱼和非洲爪蟾(Xenopus laevis),它们仅依赖一个同种型,大多数物种表达两种不同的NaPi-II蛋白。使用基于RT-PCR的简并引物方法,我们能够鉴定出来自不同家族的各种脊椎动物中与NaPi-II相关的mRNA。我们假设原始的NaPi-IIb相关基因在脊椎动物发育早期被复制。 NaPi-IIa的出现与哺乳动物肾单位的发育有关。

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