Han Yuchen, Meyer Martin H F, Keusgen Michael, Klug Gabriele
Institut für Mikrobiologie und Molekularbiologie, University of Giessen, D-35392 Giessen, Germany.
Mol Microbiol. 2007 May;64(4):1090-104. doi: 10.1111/j.1365-2958.2007.05724.x.
The AppA protein of Rhodobacter sphaeroides is unique in its ability to sense and transmit redox signals as well as light signals. By functioning as antagonist to the PpsR transcriptional repressor, it regulates the expression of photosynthesis genes in response to these environmental stimuli. Here we show binding of the cofactor haem to a domain in the C-terminal part of AppA and redox activity of bound haem. This is supported by the findings that: (i) the C-terminal domain of AppA (AppADeltaN) binds to haemin agarose, (ii) AppADeltaN isolated from Escherichia coli shows absorbance at 411 nm and absorbances at 424 nm and 556 nm after reduction with dithionite and (iii) AppADeltaN can be reconstituted with haem in vitro. Expression of AppA variants in R. sphaeroides reveals that the haem binding domain is important for normal expression levels of photosynthesis genes and for normal light regulation in the presence of oxygen. The haem cofactor affects the interaction of the C-terminal part of AppA to PpsR but also its interaction to the N-terminal light sensing AppA-BLUF domain. Based on this we present a model for the transmission of light and redox signals by AppA.
球形红细菌的AppA蛋白在感知和传递氧化还原信号以及光信号方面具有独特能力。通过作为PpsR转录阻遏物的拮抗剂发挥作用,它响应这些环境刺激调节光合作用基因的表达。在此我们展示了辅因子血红素与AppA C末端部分一个结构域的结合以及结合血红素的氧化还原活性。以下发现支持了这一点:(i)AppA的C末端结构域(AppADeltaN)与血晶素琼脂糖结合,(ii)从大肠杆菌中分离出的AppADeltaN在411 nm处有吸光度,在用连二亚硫酸盐还原后在424 nm和556 nm处有吸光度,以及(iii)AppADeltaN可在体外与血红素重构。AppA变体在球形红细菌中的表达表明,血红素结合结构域对于光合作用基因的正常表达水平以及在有氧存在时的正常光调节很重要。血红素辅因子影响AppA C末端部分与PpsR的相互作用,也影响其与N末端光感应AppA - BLUF结构域的相互作用。基于此,我们提出了一个AppA传递光和氧化还原信号的模型。