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首页> 外文期刊>Biochemistry >Identification of two important heme site residues (cysteine 75 and histidine 77) in CooA, the CO-sensing transcription factor of Rhodospirillum rubrum.
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Identification of two important heme site residues (cysteine 75 and histidine 77) in CooA, the CO-sensing transcription factor of Rhodospirillum rubrum.

机译:鉴定在CooA中两个重要的血红素位点残基(半胱氨酸75和组氨酸77),Rhodospirillum rubrum的CO感应转录因子。

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摘要

The CO-sensing mechanism of the transcription factor CooA from Rhodospirillum rubrum was studied through a systematic mutational analysis of potential heme ligands. Previous electron paramagnetic resonance (EPR) spectroscopic studies on wild-type CooA suggested that oxidized (FeIII) CooA contains a low-spin heme with a thiolate ligand, presumably a cysteine, bound to its heme iron. In the present report, electronic absorption and EPR analysis of various substitutions at Cys residues establish that Cys75 is a heme ligand in FeIII CooA. However, characterization of heme stability and electronic properties of purified C75S CooA suggest that Cys75 is not a ligand in FeII CooA. Mutational analysis of all CooA His residues showed that His77 is critical for CO-stimulated transcription. On the basis of findings that H77Y CooA is perturbed in its FeII electronic properties and is unable to bind DNA in a site-specific manner in response to CO, His77 appears to be an axial ligand to FeII CooA. These results imply a ligand switch from Cys75 to His77 upon reduction of CooA. In addition, an interaction has been identified between Cys75 and His77 in FeIII CooA that may be involved in the CO-sensing mechanism. Finally, His77 is necessary for the proper conformational change of CooA upon CO binding.
机译:通过对潜在血红素配体的系统突变分析,研究了红红螺旋藻转录因子CooA的CO感应机制。以前关于野生型CooA的电子顺磁共振(EPR)光谱研究表明,氧化的(FeIII)CooA包含一种低旋旋血红素,其硫醇盐配体(大概是半胱氨酸)与血红素铁结合。在本报告中,Cys残基上各种取代基的电子吸收和EPR分析确定Cys75是FeIII CooA中的血红素配体。但是,纯化的C75S CooA的血红素稳定性和电子性质的表征表明,Cys75不是FeII CooA中的配体。所有CooA His残基的突变分析表明,His77对于CO刺激的转录至关重要。基于以下发现:H77Y CooA的FeII电子特性受到干扰,并且无法响应于CO而以位点特异性方式结合DNA,His77似乎是FeII CooA的轴向配体。这些结果暗示在CooA减少时配体从Cys75切换为His77。另外,已经鉴定出FeIII CooA中Cys75和His77之间的相互作用可能与CO感应机制有关。最后,His77对于CO结合时CooA的正确构象变化是必需的。

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