Biomedical Structural Biology, School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.
J Biol Chem. 2011 May 6;286(18):16525-32. doi: 10.1074/jbc.M111.222166. Epub 2011 Mar 22.
CorA is a family of divalent cation transporters ubiquitously present in bacteria and archaea. Although CorA can transport both Mg(2+) and Co(2+) almost equally well, its main role has been suggested to be that of primary Mg(2+) transporter of prokaryotes and hence the regulator of Mg(2+) homeostasis. The reason is that the affinity of CorA for Co(2+) is relatively low and thus considered non-physiological. Here, we show that Thermotoga maritima CorA (TmCorA) is incapable of regulating the Mg(2+) homeostasis and therefore cannot be the primary Mg(2+) transporter of T. maritima. Further, our in vivo experiments confirm that TmCorA is a highly selective Co(2+) transporter, as it selects Co(2+) over Mg(2+) at >100 times lower concentrations. In addition, we present data that show TmCorA to be extremely thermostable in the presence of Co(2+). Mg(2+) could not stabilize the protein to the same extent, even at high concentrations. We also show that addition of Co(2+), but not Mg(2+), specifically induces structural changes to the protein. Altogether, these data show that TmCorA has the role of being the transporter of Co(2+) but not Mg(2+). The physiological relevance and requirements of Co(2+) in T. maritima is discussed and highlighted. We suggest that CorA may have different roles in different organisms. Such functional diversity is presumably a reflection of minor, but important structural differences within the CorA family that regulate the gating, substrate selection, and transport.
CorA 是一种二价阳离子转运蛋白,广泛存在于细菌和古菌中。尽管 CorA 可以几乎同等程度地转运 Mg(2+)和 Co(2+),但其主要作用被认为是原核生物的主要 Mg(2+)转运蛋白,因此是 Mg(2+)稳态的调节剂。原因是 CorA 对 Co(2+)的亲和力相对较低,因此被认为是非生理的。在这里,我们表明 Thermotoga maritima CorA(TmCorA)不能调节 Mg(2+)稳态,因此不能作为 T. maritima 的主要 Mg(2+)转运蛋白。此外,我们的体内实验证实 TmCorA 是一种高度选择性的 Co(2+)转运蛋白,因为它在低得多的浓度下优先选择 Co(2+)而不是 Mg(2+)。此外,我们提供的数据表明,在 Co(2+)存在下,TmCorA 具有极高的热稳定性。Mg(2+)即使在高浓度下也不能使蛋白质稳定到相同程度。我们还表明,只有 Co(2+)而不是 Mg(2+)的添加会特异性地诱导蛋白质结构发生变化。总之,这些数据表明 TmCorA 的作用是 Co(2+)的转运蛋白,而不是 Mg(2+)的转运蛋白。讨论并强调了 Co(2+)在 T. maritima 中的生理相关性和需求。我们建议 CorA 在不同的生物体中可能具有不同的作用。这种功能多样性可能是 CorA 家族内的微小但重要的结构差异调节门控、底物选择和运输的反映。