Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee-247 667, India.
Plant Virology Laboratory, ICAR-Central Citrus Research Institute, Nagpur-440 010, India.
Metallomics. 2020 Feb 26;12(2):280-289. doi: 10.1039/c9mt00200f.
Candidatus Liberibacter asiaticus (CLas), a phloem-limited unculturable Gram-negative bacterium, causes citrus greening disease. The proteome analysis of CLas showed the presence of a heavy metal permease and Co/Zn/Cd cation exporter system. However, there is no designated metal uptake protein specific for the heavy metal permease in CLas. One of the metal uptake proteins, designated as CLas-ZnuA2, in our previous studies, showed a lower metal-binding affinity for Mn2+ and Zn2+ and was postulated to bind and transport metals rather non-specifically. The present study focused on the characterization of the heavy metal binding properties of CLas-ZnuA2 using SPR, CD, DSC and crystallographic studies. The crystal structure analysis of Cd2+ bound CLas-ZnuA2 showed octahedral geometry for Cd2+ binding as compared to a non-preferred square-pyramidal geometry for Mn2+ and Zn2+ binding in earlier reported crystal structures. In SPR analysis, the binding affinities of 4.7 × 10-6 M, 7.2 × 10-6 M, 5.3 × 10-5 M and 4.3 × 10-5 M for Hg2+, Cd2+, Ba2+ and Co2+ respectively were higher as compared to earlier reported values for Mn2+ and Zn2+. Likewise, CD and DSC analysis showed relatively higher thermal stability for CLas-ZnuA2 on heavy metal binding. Taken together with the expression of the permease and exporter system for heavy metals, our results indicate that CLas-ZnuA2 may be involved in sequestering and transport of various transition divalent metals in environmentally stressed conditions.
亚洲韧皮杆菌(CLas)是一种局限在韧皮部的、无法培养的革兰氏阴性细菌,它会引起柑橘黄龙病。CLas 的蛋白质组分析显示存在重金属透性酶和 Co/Zn/Cd 阳离子外排系统。然而,CLas 中没有专门针对重金属透性酶的金属摄取蛋白。在我们之前的研究中,一种名为 CLas-ZnuA2 的金属摄取蛋白对 Mn2+和 Zn2+的金属结合亲和力较低,推测其具有非特异性的金属结合和运输能力。本研究使用 SPR、CD、DSC 和晶体学研究,重点研究了 CLas-ZnuA2 的重金属结合特性。与早期报道的晶体结构中 Mn2+和 Zn2+结合所采用的非优选的四方锥几何形状相比,Cd2+结合的 CLas-ZnuA2 的晶体结构分析显示出八面体几何形状用于 Cd2+结合。在 SPR 分析中,Hg2+、Cd2+、Ba2+和 Co2+的结合亲和力分别为 4.7×10-6 M、7.2×10-6 M、5.3×10-5 M 和 4.3×10-5 M,均高于早期报道的 Mn2+和 Zn2+的结合亲和力。同样,CD 和 DSC 分析表明,CLas-ZnuA2 在重金属结合时具有相对较高的热稳定性。综合考虑透性酶和重金属外排系统的表达,我们的结果表明,CLas-ZnuA2 可能参与了环境胁迫条件下各种过渡二价金属的螯合和运输。