Chang Yung-Ning, Geertsma Eric R
Biol Chem. 2017 Feb 1;398(2):165-174. doi: 10.1515/hsz-2016-0254.
Solute carriers from the SLC4, SLC23, and SLC26 families are involved in pH regulation, vitamin C transport and ion homeostasis. While these families do not share any obvious sequence relationship, they are united by their unique and novel architecture. Each member of this structural class is organized into two structurally related halves of seven transmembrane segments each. These halves span the membrane with opposite orientations and form an intricately intertwined structure of two inverted repeats. This review highlights the general design principles of this fold and reveals the diversity between the different families. We discuss their domain architecture, structural framework and transport mode and detail an initial transport mechanism for this fold inferred from the recently solved structures of different members.
来自SLC4、SLC23和SLC26家族的溶质载体参与pH调节、维生素C转运和离子稳态。虽然这些家族没有任何明显的序列关系,但它们因其独特新颖的结构而联系在一起。这一结构类别的每个成员都被组织成两个结构相关的部分,每个部分由七个跨膜段组成。这两个部分以相反的方向跨越膜,形成两个反向重复的复杂交织结构。本综述突出了这种折叠的一般设计原则,并揭示了不同家族之间的差异。我们讨论了它们的结构域结构、结构框架和转运模式,并详细阐述了从最近解析的不同成员结构推断出的这种折叠的初始转运机制。