Institute of Biochemistry, Biocenter, Goethe University Frankfurt, Max-von-Laue Str. 9, 60438, Frankfurt am Main, Germany.
Institute of Physical and Theoretical Chemistry, Goethe University Frankfurt, Max-von-Laue Str. 7, 60438, Frankfurt am Main, Germany.
Nat Commun. 2019 May 2;10(1):2032. doi: 10.1038/s41467-019-10001-w.
The SLC26 family of transporters maintains anion equilibria in all kingdoms of life. The family shares a 7 + 7 transmembrane segments inverted repeat architecture with the SLC4 and SLC23 families, but holds a regulatory STAS domain in addition. While the only experimental SLC26 structure is monomeric, SLC26 proteins form structural and functional dimers in the lipid membrane. Here we resolve the structure of an SLC26 dimer embedded in a lipid membrane and characterize its functional relevance by combining PELDOR/DEER distance measurements and biochemical studies with MD simulations and spin-label ensemble refinement. Our structural model reveals a unique interface different from the SLC4 and SLC23 families. The functionally relevant STAS domain is no prerequisite for dimerization. Characterization of heterodimers indicates that protomers in the dimer functionally interact. The combined structural and functional data define the framework for a mechanistic understanding of functional cooperativity in SLC26 dimers.
SLC26 家族转运蛋白在所有生命领域中维持阴离子平衡。该家族与 SLC4 和 SLC23 家族共享 7+7 跨膜片段反向重复结构,但除此之外还具有调节性 STAS 结构域。虽然唯一的实验 SLC26 结构是单体,但 SLC26 蛋白在脂质膜中形成结构和功能二聚体。在这里,我们通过结合 PELDOR/DEER 距离测量和生化研究与 MD 模拟和自旋标记整体细化,解析了嵌入脂质膜中的 SLC26 二聚体的结构,并通过生化研究和 MD 模拟与自旋标记整体细化,确定了其功能相关性。我们的结构模型揭示了一种不同于 SLC4 和 SLC23 家族的独特界面。功能相关的 STAS 结构域不是二聚化的必要条件。异源二聚体的表征表明二聚体中的原聚体在功能上相互作用。综合结构和功能数据为理解 SLC26 二聚体功能协同作用的机制提供了框架。