Chen Haijiang, Luo Qixia, Yin Jianhua, Gao Tong, Gao Haichun
Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Biochim Biophys Acta. 2015 Feb;1850(2):318-28. doi: 10.1016/j.bbagen.2014.10.005. Epub 2014 Oct 12.
Cytochrome bd oxidase, existing widely in bacteria, produces a proton motive force by the vectorial charge transfer of protons and more importantly, endows bacteria with a number of vitally important physiological functions, such as enhancing tolerance to various stresses. Although extensively studied as a CydA-CydB two-subunit complex for decades, the complex in certain groups of bacteria is recently found to in fact consist of an additional subunit, which is functionally essential.
We investigated the assembly of the CydA-CydB complex using BiFC. We investigated the function of CydX using mutational analysis.
CydX, a 38-amino-acid inner-membrane protein, is associated with the CydA-CydB complex in Shewanella oneidensis, a facultative anaerobe renowned for its respiratory versatility. It is clear that CydX is neither required for the in vivo assembly of the CydA-CydB complex nor relies on the complex for its translocation and integration into the membrane. The N-terminal segment (1-25 amino acid residues) and short periplasmic overhang of CydX, with respect to functionality, are important whereas the remaining C-terminal segment is rather flexible.
Based on these findings, we postulate that CydX may function by positioning and stabilizing the prosthetic hemes, especially heme d in the CydA-CydB complex although a role of participating in catalytic reaction is not excluded.
The work provides novel insights into our understanding of the small subunit of the cytochrome bd oxidase.
细胞色素bd氧化酶广泛存在于细菌中,通过质子的矢量电荷转移产生质子动力,更重要的是,赋予细菌许多至关重要的生理功能,如增强对各种压力的耐受性。尽管作为CydA - CydB二聚体复合物被广泛研究了数十年,但最近发现某些细菌群体中的该复合物实际上还包含一个额外的亚基,其在功能上是必不可少的。
我们使用双分子荧光互补技术研究了CydA - CydB复合物的组装。我们通过突变分析研究了CydX的功能。
CydX是一种由38个氨基酸组成的内膜蛋白,与兼性厌氧菌——因呼吸多样性而闻名的嗜铁素还原地杆菌中的CydA - CydB复合物相关。很明显,CydX既不是CydA - CydB复合物体内组装所必需的,也不依赖该复合物进行转运和整合到膜中。就功能而言,CydX的N端片段(1 - 25个氨基酸残基)和短的周质突出部分很重要,而其余的C端片段则相当灵活。
基于这些发现,我们推测CydX可能通过定位和稳定辅基血红素发挥作用,特别是CydA - CydB复合物中的血红素d,尽管不排除其参与催化反应的作用。
这项工作为我们理解细胞色素bd氧化酶的小亚基提供了新的见解。