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水通道蛋白超家族的进化研究进展

Perspectives on the evolution of aquaporin superfamily.

机构信息

Division of Pathophysiology, Meiji Pharmaceutical University, Tokyo, Japan.

Division of Pathophysiology, Meiji Pharmaceutical University, Tokyo, Japan.

出版信息

Vitam Horm. 2020;112:1-27. doi: 10.1016/bs.vh.2019.08.001. Epub 2019 Oct 18.

Abstract

Aquaporins (AQPs) belong to a transmembrane protein superfamily composed of an internal repeat of a three membrane-spanning domain and each has a highly conserved NPA box. Based on the more variable carboxyl-terminal NPA box, AQPs can be divided into three subfamilies: (1) glycerol-channel aquaglyceroporin (gAQP) (2) water-selective AQP (wAQP), and (3) deviated superaquaporin (sAQP) in the order of passible evolution. This classification has functional and localization relevance: most wAQPs transports water selectively whereas gAQPs and sAQPs also transport small molecules with sAQPs mostly localized inside the cell. As this classification is not based on the function, some wAQPs functioning as glycerol channels will not be included in gAQPs. AQP ancestors may have first originated in eubacteria as gAQPs to transport small molecules such as glycerol. Later some of them may have acquired a water-selective filter to become wAQPs. Although AQPs are absent in many bacteria, especially in archaea, both gAQPs and wAQPs may have been carried over to eukaryotes or horizontally transferred. Finally, multicellular organisms have obtained new sAQPs, which are curiously absent in fungi and plants. Interestingly, both plants and higher insects independently have lost gAQPs, whose functions, however, have been taken over by functionally modified wAQPs partly obtained by horizontal gene transfers from bacteria. This evolutionary viewpoints on AQPs will facilitate further functional analysis of AQP-like sequences and expand our viewpoints on AQP superfamily.

摘要

水通道蛋白(AQP)属于跨膜蛋白超家族,由三个跨膜结构域的内部重复组成,每个结构域都有一个高度保守的 NPA 盒。根据羧基末端 NPA 盒的更多变异性,AQP 可以分为三个亚家族:(1)甘油通道水通道蛋白(gAQP)(2)水选择性 AQP(wAQP),(3)进化可能性的偏离超水通道蛋白(sAQP)。这种分类具有功能和定位相关性:大多数 wAQP 选择性运输水,而 gAQP 和 sAQP 也运输小分子,sAQP 主要定位于细胞内。由于这种分类不是基于功能,一些作为甘油通道的 wAQP 不会被包含在 gAQP 中。AQP 的祖先可能最初起源于真细菌中的 gAQP,以运输甘油等小分子。后来,其中一些可能获得了水选择性过滤器,成为 wAQP。尽管许多细菌,特别是古细菌中没有 AQP,但 gAQP 和 wAQP 可能已经转移到真核生物或水平转移。最后,多细胞生物获得了新的 sAQP,而真菌和植物中却没有 sAQP。有趣的是,植物和高等昆虫都独立地失去了 gAQP,但其功能部分被来自细菌的水平基因转移获得的功能修饰的 wAQP 所取代。AQP 的这种进化观点将有助于进一步对 AQP 样序列进行功能分析,并扩大我们对 AQP 超家族的观点。

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