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Globin-coupled sensors: A class of heme-containing sensors in Archaea and Bacteria

机译:球蛋白偶联传感器:古细菌和细菌中一类含血红素的传感器

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摘要

The recently discovered prokaryotic signal transducer HemAT, which has been described in both Archaea and Bacteria, mediates aerotactic responses. The N-terminal regions of HemAT from the archaeon Halobacterium salinarum (HemAT-Hs) and from the Gram-positive bacterium Bacillus subtilis (HemAT-Bs) contain a myoglobin-like motif, display characteristic heme–protein absorption spectra, and bind oxygen reversibly. Recombinant HemAT-Hs and HemAT-Bs shorter than 195 and 176 residues, respectively, do not bind heme effectively. Sequence homology comparisons and three-dimensional modeling predict that His-123 is the proximal heme-binding residue in HemAT from both species. The work described here used site-specific mutagenesis and spectroscopy to confirm this prediction, thereby providing direct evidence for a functional domain of prokaryotic signal transducers that bind heme in a globin fold. We postulate that this domain is part of a globin-coupled sensor (GCS) motif that exists as a two-domain transducer having no similarity to the PER-ARNT-SIM (PAS)-domain superfamily transducers. Using the GCS motif, we have identified several two-domain sensors in a variety of prokaryotes. We have cloned, expressed, and purified two potential globin-coupled sensors and performed spectral analysis on them. Both bind heme and show myoglobin-like spectra. This observation suggests that the general function of GCS-type transducers is to bind diatomic oxygen and perhaps other gaseous ligands, and to transmit a conformational signal through a linked signaling domain.
机译:在古细菌和细菌中都描述过的新近发现的原核信号转导子HemAT介导了拟气反应。来自古细菌盐单胞菌(HemAT-Hs)和革兰氏阳性细菌枯草芽孢杆菌(HemAT-Bs)的HemAT N端区域包含肌红蛋白样基序,显示出特征性的血红蛋白吸收光谱,并且可逆地结合氧。分别短于195和176个残基的重组HemAT-Hs和HemAT-B无法有效结合血红素。序列同源性比较和三维建模预测,His-123是这两种物种在HemAT中的近端血红素结合残基。此处描述的工作使用了位点特异性诱变和光谱学来证实这一预测,从而为结合血红蛋白折叠成血红素的原核信号传感器的功能域提供了直接的证据。我们假设此域是球蛋白耦合传感器(GCS)主题的一部分,该主题以与PER-ARNT-SIM(PAS)域超家族传感器不相似的两域换能器形式存在。使用GCS母题,我们在各种原核生物中鉴定了几个两域传感器。我们已经克隆,表达和纯化了两个潜在的球蛋白偶联传感器,并对它们进行了光谱分析。两者都结合血红素并显示出类似肌红蛋白的光谱。该观察结果表明,GCS型传感器的一般功能是结合双原子氧和可能的其他气体配体,并通过链接的信号传导域传输构象信号。

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