Handali Melody, Neupane Durga P, Roychowdhury Hridindu, Yukl Erik T
From the Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico 88003.
From the Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico 88003
J Biol Chem. 2015 May 8;290(19):11878-89. doi: 10.1074/jbc.M115.645853. Epub 2015 Mar 18.
ATP-binding cassette (ABC) transporters of the cluster 9 family are ubiquitous among bacteria and essential for acquiring Zn(2+) and Mn(2+) from the environment or, in the case of pathogens, from the host. These rely on a substrate-binding protein (SBP) to coordinate the relevant metal with high affinity and specificity and subsequently release it to a membrane permease for translocation into the cytoplasm. Although a number of cluster 9 SBP structures have been determined, the structural attributes conferring Zn(2+) or Mn(2+) specificity remain ambiguous. Here we describe the gene expression profile, in vitro metal binding properties, and crystal structure of a new cluster 9 SBP from Paracoccus denitrificans we have called AztC. Although all of our results strongly indicate Zn(2+) over Mn(2+) specificity, the Zn(2+) ion is coordinated by a conserved Asp residue only observed to date as a metal ligand in Mn(2+)-specific SBPs. The unusual sequence properties of this protein are shared among close homologues, including members from the human pathogens Klebsiella pneumonia and Enterobacter aerogenes, and would seem to suggest a subclass of Zn(2+)-specific transporters among the cluster 9 family. In any case, the unusual coordination environment of AztC expands the already considerable range of those available to Zn(2+)-specific SBPs and highlights the presence of a His-rich loop as the most reliable indicator of Zn(2+) specificity.
第9簇家族的ATP结合盒(ABC)转运蛋白在细菌中普遍存在,对于从环境中获取锌离子(Zn2+)和锰离子(Mn2+)至关重要,对于病原体而言,则是从宿主中获取这些离子。这些转运蛋白依赖于一种底物结合蛋白(SBP),以高亲和力和特异性来配位相关金属,随后将其释放到膜通透酶中,以便转运到细胞质中。尽管已经确定了许多第9簇SBP的结构,但赋予Zn2+或Mn2+特异性的结构属性仍不明确。在此,我们描述了来自反硝化副球菌的一种新的第9簇SBP(我们称之为AztC)的基因表达谱、体外金属结合特性和晶体结构。尽管我们所有的结果都强烈表明其对Zn2+的特异性高于Mn2+,但Zn2+离子仅由一个保守的天冬氨酸残基配位,迄今为止,该残基仅在Mn2+特异性SBP中作为金属配体被观察到。这种蛋白质不同寻常的序列特性在其紧密同源物中是共有的,包括人类病原体肺炎克雷伯菌和产气肠杆菌的成员,这似乎表明在第9簇家族中存在一类Zn2+特异性转运蛋白。无论如何,AztC不同寻常的配位环境扩展了Zn2+特异性SBP已有的相当大的范围,并突出了富含组氨酸的环是Zn2+特异性最可靠的指标。