Sharma Nidhi, Selvakumar Purushotham, Saini Gunjan, Warghane Ashish, Ghosh Dilip Kumar, Sharma Ashwani Kumar
Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee 247 667, India.
Plant Virology Laboratory, ICAR- Central Citrus Research Institute, Nagpur 440 010, India.
Biochim Biophys Acta. 2016 Dec;1864(12):1649-1657. doi: 10.1016/j.bbapap.2016.08.016. Epub 2016 Aug 26.
A periplasmic solute binding protein from second of the two gene clusters of Znu system in CLA (CLas-ZnuA2) belong to Cluster A1 family of solute binding proteins (SBPs). The crystal structures in metal-free, intermediate and metal-bound states, in the previous study, revealed the unusual mechanism of metal binding and release for CLas-ZnuA2. Although CLas-ZnuA2 showed maximum sequence identity to the Mn/Fe-specific SBPs, the mechanistic resemblance seems to be closer to Zn-specific SBPs of Cluster A-I family. The present study reports the binding affinity studies using SPR and CD and crystal structure of CLas-ZnuA2 in Zn-bound state. Despite a similar overall structure, there are noticeable differences at the metal binding site. The SPR and CD analysis confirmed our previous observation that CLas-ZnuA2 exhibits a low metal-binding affinity. The low metal-binding affinity of CLas-ZnuA2 could be attributed to the presence of a proline in linker helix resulting in relatively higher bending and rigidity of the same. This structural feature fixes the C-domain similar to metal-bound states of related SBPs. Further, the binding of both Mn and Zn occurs pentavalently with square pyramidal geometry not preferred by either. The site-specific positive Darwinian selection analysis showed that the proline in linker helix is under purifying selection and might have diverged long ago. Our structural and evolutionary analyses suggest that CLasZnua2 might have evolved, particularly for plant pathogens, to facilitate transport of both Mn and Zn, with reversible binding to Zn, unlike other Mn-binding SBPs (PsaA).
柑橘黄龙病菌(CLas)锌营养吸收系统(Znu)两个基因簇中第二个基因簇的周质溶质结合蛋白(CLas-ZnuA2)属于溶质结合蛋白(SBP)的A1家族。在之前的研究中,该蛋白在无金属、中间态和金属结合态的晶体结构揭示了CLas-ZnuA2不同寻常的金属结合和释放机制。尽管CLas-ZnuA2与锰/铁特异性SBP的序列一致性最高,但在机制上似乎更类似于A-I家族的锌特异性SBP。本研究报道了使用表面等离子体共振(SPR)和圆二色光谱(CD)对CLas-ZnuA2锌结合态的结合亲和力研究以及其晶体结构。尽管整体结构相似,但在金属结合位点存在明显差异。SPR和CD分析证实了我们之前的观察结果,即CLas-ZnuA2表现出较低的金属结合亲和力。CLas-ZnuA2较低的金属结合亲和力可能归因于连接螺旋中存在脯氨酸,导致其弯曲度和刚性相对较高。这一结构特征使C结构域固定,类似于相关SBP的金属结合态。此外,锰和锌均以五价形式结合,形成的四方锥几何结构两者都不偏好。位点特异性正向达尔文选择分析表明,连接螺旋中的脯氨酸处于纯化选择之下,可能在很久以前就发生了分化。我们的结构和进化分析表明,CLasZnua2可能已经进化,特别是对于植物病原体而言,以促进锰和锌的运输,与锌可逆结合,这与其他锰结合SBP(PsaA)不同。