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结核分枝杆菌一种新型截短血红蛋白中的独特配体-蛋白质相互作用。

Unique ligand-protein interactions in a new truncated hemoglobin from Mycobacterium tuberculosis.

作者信息

Mukai Masahiro, Savard Pierre-Yves, Ouellet Hugues, Guertin Michel, Yeh Syun-Ru

机构信息

Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

Biochemistry. 2002 Mar 26;41(12):3897-905. doi: 10.1021/bi0156409.

Abstract

A new truncated hemoglobin (HbO) from Mycobacterium tuberculosis has been expressed and purified. Sequence alignment of HbO with other hemoglobins suggests that the proximal F8 residue is histidine and the distal E7 and the B10 positions are occupied by alanine and tyrosine, respectively. The highly conserved residue at the CD1 position, surprisingly, is tyrosine, making HbO the first exception in the hemoglobin family that does not contain phenylalanine at this position. Resonance Raman data suggest that a strong hydrogen bonding network, involving the B10 Tyr and the CD1 Tyr, stabilizes the heme-bound O2 and CO as evidenced by the relatively low frequency of the Fe-O2 stretching mode (559 cm(-1)) and the high frequency of the Fe-CO stretching mode (527 cm(-1)). The presence of this hydrogen bonding network is supported by mutagenesis studies with the B10 tyrosine or the CD1 tyrosine mutated to phenylalanine. Taken together, these data demonstrate a rigid and polar distal pocket in HbO, which is significantly different from that of HbN, the other hemoglobin from M. tuberculosis. The distinct features in the heme active site structures and the temporal expression patterns of HbO and HbN suggest that these two hemoglobins may have very different physiological functions.

摘要

一种来自结核分枝杆菌的新型截短血红蛋白(HbO)已被表达和纯化。HbO与其他血红蛋白的序列比对表明,近端F8残基是组氨酸,远端E7和B10位置分别被丙氨酸和酪氨酸占据。令人惊讶的是,CD1位置的高度保守残基是酪氨酸,这使得HbO成为血红蛋白家族中该位置不含苯丙氨酸的首个例外。共振拉曼数据表明,一个涉及B10酪氨酸和CD1酪氨酸的强大氢键网络稳定了与血红素结合的O2和CO,这可由Fe-O2伸缩模式相对较低的频率(559 cm(-1))和Fe-CO伸缩模式较高的频率(527 cm(-1))证明。用B10酪氨酸或CD1酪氨酸突变为苯丙氨酸的诱变研究支持了这种氢键网络的存在。综上所述,这些数据表明HbO中存在一个刚性且极性的远端口袋,这与结核分枝杆菌的另一种血红蛋白HbN有显著不同。HbO和HbN在血红素活性位点结构以及时间表达模式上的明显特征表明,这两种血红蛋白可能具有非常不同的生理功能。

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