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来自集胞藻属PCC 6803和聚球藻属PCC 7002的蓝藻血红蛋白中血红素-组氨酸交联的表征

Characterization of the heme-histidine cross-link in cyanobacterial hemoglobins from Synechocystis sp. PCC 6803 and Synechococcus sp. PCC 7002.

作者信息

Vu B Christie, Vuletich David A, Kuriakose Syna A, Falzone Christopher J, Lecomte Juliette T J

机构信息

Chemistry Department, The Pennsylvania State University, 152 Davey Laboratory, University Park, PA 16802, USA.

出版信息

J Biol Inorg Chem. 2004 Mar;9(2):183-94. doi: 10.1007/s00775-003-0512-1. Epub 2004 Jan 15.

Abstract

The recombinant product of the hemoglobin gene of the cyanobacterium Synechocystis sp. PCC 6803 forms spontaneously a covalent bond linking one of the heme vinyl groups to a histidine located in the C-terminal helix (His117, or H16). The present report describes the (1)H, (15)N, and (13)C NMR spectroscopy experiments demonstrating that the recombinant hemoglobin from the cyanobacterium Synechococcus sp. PCC 7002, a protein sharing 59% identity with Synechocystis hemoglobin, undergoes the same facile heme adduct formation. The observation that the extraordinary linkage is not unique to Synechocystis hemoglobin suggests that it constitutes a noteworthy feature of hemoglobin in non-N(2)-fixing cyanobacteria, along with the previously documented bis-histidine coordination of the heme iron. A qualitative analysis of the hyperfine chemical shifts of the ferric proteins indicated that the cross-link had modest repercussions on axial histidine ligation and heme electronic structure. In Synechocystis hemoglobin, the unreacted His117 imidazole had a normal p K(a) whereas the protonation of the modified residue took place at lower pH. Optical experiments revealed that the cross-link stabilized the protein with respect to thermal and acid denaturation. Replacement of His117 with an alanine yielded a species inert to adduct formation, but inspection of the heme chemical shifts and ligand binding properties of the variant identified position 117 as important in seating the cofactor in its site and modifying the dynamic properties of the protein. A role for bis-histidine coordination and covalent adduct formation in heme retention is proposed.

摘要

集胞藻属PCC 6803蓝细菌血红蛋白基因的重组产物会自发形成一种共价键,将其中一个血红素乙烯基与位于C端螺旋中的组氨酸(His117,或H16)相连。本报告描述了氢-1、氮-15和碳-13核磁共振光谱实验,这些实验表明来自聚球藻属PCC 7002蓝细菌的重组血红蛋白(一种与集胞藻血红蛋白有59%序列同一性的蛋白质)也会发生同样容易的血红素加合物形成。这种特殊连接并非集胞藻血红蛋白所特有的这一观察结果表明,它是不固氮蓝细菌中血红蛋白的一个显著特征,同时还有之前记录的血红素铁的双组氨酸配位。对铁蛋白超精细化学位移的定性分析表明,这种交联对轴向组氨酸配位和血红素电子结构有适度影响。在集胞藻血红蛋白中,未反应的His117咪唑具有正常的pKa,而修饰残基的质子化在较低pH下发生。光学实验表明,这种交联使蛋白质在热变性和酸变性方面更稳定。用丙氨酸取代His117产生了一种对加合物形成无反应的物种,但对该变体的血红素化学位移和配体结合特性的检查确定117位在将辅因子定位在其位点以及改变蛋白质的动态特性方面很重要。有人提出双组氨酸配位和共价加合物形成在血红素保留中起作用。

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