Faculty of Chemistry, University of Wroclaw, F. Joliot-Curie 14, 50-383 Wroclaw, Poland.
Metallomics. 2018 Nov 14;10(11):1631-1637. doi: 10.1039/c8mt00275d.
Polyhistidine triad proteins, which participate in Zn2+ uptake in Streptococcus pneumoniae, contain multiple copies of the HxxHxH (histidine triad motif) sequence. We focus on three such motifs from one of the most common and well-conserved polyhistidine triad proteins, PhtA, in order to understand their bioinorganic chemistry; particular focus is given to (i) understanding which of the PhtA triads binds Zn2+ with the highest affinity (and why) and (ii) explaining whether Ni2+ (also crucial for bacterial survival and virulence) could potentially outcompete Zn2+ at its native binding site. There is no significant difference in the stability of zinc(ii) complexes with the three studied protein fragments, but one of the nickel(ii)-polyhistidine triads is remarkably stable; we explain why and hypothesize about the biological importance of this finding.
多组氨酸三联体蛋白参与肺炎链球菌中 Zn2+ 的摄取,其中包含多个 HxxHxH(组氨酸三联体基序)序列。我们专注于一种最常见和高度保守的多组氨酸三联体蛋白 PhtA 中的三个这样的基序,以了解它们的生物无机化学;特别关注的是:(i)了解 PhtA 三联体中哪一个与 Zn2+ 具有最高亲和力(以及原因);(ii)解释 Ni2+(对细菌的生存和毒力也至关重要)是否有可能在其天然结合位点上与 Zn2+ 竞争。在研究的三个蛋白片段中,锌(II)配合物的稳定性没有显著差异,但一个镍(II)-多组氨酸三联体非常稳定;我们解释了原因,并对这一发现的生物学重要性进行了假设。