Department of Biochemistry and Structural Biology, Centre for Protein Molecular Science, Lund University, Lund, Sweden.
Department of Biochemistry and Structural Biology, Centre for Protein Molecular Science, Lund University, Lund, Sweden.
Curr Opin Struct Biol. 2015 Aug;33:126-34. doi: 10.1016/j.sbi.2015.08.004. Epub 2015 Sep 3.
Aquaporins have emerged as one of the structurally best-characterized membrane protein families, with fourteen different structures available from a diverse range of organisms. While all aquaporins share the same fold and passive mechanism for water permeation, structural details allow for differences in selectivity and modes of regulation. These details are now the emphasis of aquaporin structural biology. Recent structural studies of eukaryotic aquaporins have revealed reoccurring structural themes in both gating and trafficking, implying a limited number of structural solutions to aquaporin regulation. Moreover, the groundbreaking subangstrom resolution structure of a yeast aquaporin allows hydrogens to be visualized in the water-conducting channel, providing exclusive new insights into the proton exclusion mechanism.
水通道蛋白已成为结构研究最为透彻的膜蛋白家族之一,目前已从不同生物中鉴定出 14 种不同的结构。尽管所有水通道蛋白的折叠结构和水通透的被动机制相同,但结构细节决定了它们在选择性和调控模式上的差异。这些细节是水通道蛋白结构生物学的研究重点。近期对真核水通道蛋白的结构研究揭示了门控和转运过程中反复出现的结构主题,这意味着水通道蛋白的调控可能存在有限数量的结构解决方案。此外,酵母水通道蛋白的亚埃分辨率结构使人们能够在导水通道中可视化氢原子,从而为质子排斥机制提供了独特的新见解。