Inagaki Sayaka, Masuda Chiaki, Akaishi Tetsuhiro, Nakajima Hiroshi, Yoshioka Shiro, Ohta Takehiro, Pal Biswajit, Kitagawa Teizo, Aono Shigetoshi
Department of Structural Molecule Science, The Graduate University for Advanced Studies, 38 Nishigo-naka, Myodaiji, Okazaki 444-8585, Japan.
J Biol Chem. 2005 Feb 4;280(5):3269-74. doi: 10.1074/jbc.M409884200. Epub 2004 Nov 10.
CooA is a CO-sensing transcriptional activator that contains a b-type heme as the active site for sensing its physiological effector, CO. In this study, the spectroscopic and redox properties of a new CooA homologue from Carboxydothermus hydrogenoformans (Ch-CooA) were studied. Spectroscopic and mutagenesis studies revealed that His-82 and the N-terminal alpha-amino group were the axial ligands of the Fe(III) and Fe(II) hemes in Ch-CooA and that the N-terminal alpha-amino group was replaced by CO upon CO binding. Two neutral ligands, His-82 and the N-terminal alpha-amino group, are coordinated to the Fe(III) heme in Ch-CooA, whereas two negatively charged ligands, a thiolate from Cys-75 and the nitrogen atom of the N-terminal Pro, are the axial ligands of the Fe(III) heme in Rr-CooA. The difference in the coordination structure of the Fe(III) heme resulted in a large positive shift of redox potentials of Ch-CooA compared with Rr-CooA. Comparing the properties of Ch-CooA and Rr-CooA demonstrates that the essential elements for CooA function will be: (i) the heme is six-coordinate in the Fe(III), Fe(II), and Fe(II)-CO forms; (ii) the N-terminal is coordinated to the heme as an axial ligand, and (iii) CO replaces the N-terminal bound to the heme upon CO binding.
CooA是一种一氧化碳感应转录激活因子,它含有一个b型血红素作为感应其生理效应物一氧化碳的活性位点。在本研究中,对来自嗜氢羧基嗜热菌(Ch-CooA)的一种新型CooA同源物的光谱和氧化还原性质进行了研究。光谱和诱变研究表明,His-82和N端α-氨基是Ch-CooA中Fe(III)和Fe(II)血红素的轴向配体,并且在结合一氧化碳后,N端α-氨基被一氧化碳取代。在Ch-CooA中,两个中性配体His-82和N端α-氨基与Fe(III)血红素配位,而在Rr-CooA中,两个带负电荷的配体,来自Cys-75的硫醇盐和N端Pro的氮原子,是Fe(III)血红素的轴向配体。Fe(III)血红素配位结构的差异导致Ch-CooA的氧化还原电位相对于Rr-CooA有很大的正向偏移。比较Ch-CooA和Rr-CooA的性质表明,CooA功能的基本要素将是:(i)血红素在Fe(III)、Fe(II)和Fe(II)-CO形式下是六配位的;(ii)N端作为轴向配体与血红素配位,以及(iii)在结合一氧化碳后,一氧化碳取代与血红素结合的N端。