Yin Jianhua, Jin Miao, Zhang Haiyan, Ju Lili, Zhang Lili, Gao Haichun
Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
Microbiologyopen. 2015 Feb;4(1):84-99. doi: 10.1002/mbo3.224. Epub 2014 Nov 22.
Cytochrome c proteins, as enzymes to exchange electrons with substrates or as pure electron carriers to shuttle electrons, play vital roles in bacterial respiration and photosynthesis. In Shewanella oneidensis, a research model for the respiratory diversity, at least 42 c-type cytochromes are predicted to be encoded in the genome and are regarded to be the foundation of its highly branched electron transport pathways. However, only a small number of c-type cytochromes have been extensively studied. In this study, we identify soluble cytochrome c ScyA as an important factor influencing the nitrite resistance of a strain devoid of the bd oxidase by utilizing a newly developed transposon mutagenesis vector, which enables overexpression of the gene(s) downstream of the insertion site. We show that when in overabundance ScyA facilitates growth against nitrite inhibition by enhancing nitrite resistance of the cbb3 oxidase. Based on the data presented in this study, we suggest two possible mechanisms underlying the observed effect of ScyA: (1) ScyA increases electron flow to the cbb3 oxidase; (2) ScyA promotes nitrite resistance of the cbb3 oxidase, possibly by direct interaction.
细胞色素c蛋白,作为与底物交换电子的酶或作为穿梭电子的纯电子载体,在细菌呼吸和光合作用中发挥着至关重要的作用。在作为呼吸多样性研究模型的嗜铁钩端螺旋菌中,预计基因组中至少编码42种c型细胞色素,它们被认为是其高度分支的电子传递途径的基础。然而,只有少数c型细胞色素得到了广泛研究。在本研究中,我们通过利用新开发的转座子诱变载体,鉴定出可溶性细胞色素c ScyA是影响缺乏bd氧化酶的菌株对亚硝酸盐抗性的一个重要因素,该载体能够使插入位点下游的基因过表达。我们表明,当ScyA过量时,它通过增强cbb3氧化酶的亚硝酸盐抗性来促进细胞在亚硝酸盐抑制下的生长。基于本研究提供的数据,我们提出了ScyA所观察到的效应背后的两种可能机制:(1)ScyA增加流向cbb3氧化酶的电子流;(2)ScyA可能通过直接相互作用促进cbb3氧化酶的亚硝酸盐抗性。