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摇蚊血红素单体中远端组氨酸取向的质子核磁共振研究。通过不稳定质子交换监测血红素口袋的动态稳定性。

Proton nuclear magnetic resonance study of the solution distal histidine orientation in monomeric Chironomus thummi thummi cyanomet hemoglobins. Dynamic stability of the heme pocket as monitored by labile proton exchange.

作者信息

Peyton D H, La Mar G N, Ramaprasad S, Unger S W, Sankar S, Gersonde K

机构信息

Department of Chemistry, Portland State University, OR 97207-0751.

出版信息

J Mol Biol. 1991 Oct 5;221(3):1015-26. doi: 10.1016/0022-2836(91)80189-2.

Abstract

The 1H nuclear magnetic resonance spectral characteristics of the cyano-Met form of Chironomus thummi thummi monomeric hemoglobins I, III and IV in 1H2O solvent are reported. A set of four exchangeable hyperfine-shifted resonances is found for each of the two heme-insertion isomers in the hyperfine-shifted region downfield of ten parts per million. An analysis of relaxation, exchange rates and nuclear Overhauser effects leads to assignments for all these resonances to histidine F8 and the side-chains of histidine E7 and arginine FG3. It is evident that in aqueous solution, the side-chain from histidine E7 does not occupy two orientations, as found for the solid state, rather the histidine E7 side-chain adopts a conformation similar to that of sperm whale myoglobin or hemoglobin A, oriented into the heme pocket and in contact with the bound ligand. Evidence is presented to show that the allosteric transition in the Chironomus thummi thummi hemoglobins arises from the "trans effect". An analysis of the exchange with bulk solvent of the assigned histidine E7 labile proton confirms that the group is completely buried within the heme pocket in a manner similar to that found for sperm whale cyano-Met myoglobin, and that the transient exposure to solvent is no more likely than in mammalian myoglobins with the "normal" distal histidine orientation. Finally, a comparison of solvent access to the heme pocket of the three monomeric C. thummi thummi hemoglobins, as measured from proton exchange rates of heme pocket protons, is made and correlated to binding studies with the diffusible small molecules such as O2.

摘要

报道了在(^{1}H_2O)溶剂中,摇蚊(Chironomus thummi thummi)单体血红蛋白I、III和IV的氰基 - 甲硫氨酸形式的(^{1}H)核磁共振光谱特征。在百万分之十的低场超精细位移区域中,发现两种血红素插入异构体中的每一种都有一组四个可交换的超精细位移共振峰。通过对弛豫、交换速率和核Overhauser效应的分析,确定了所有这些共振峰对应于组氨酸F8以及组氨酸E7和精氨酸FG3的侧链。显然,在水溶液中,组氨酸E7的侧链不像在固态中那样占据两种取向,而是组氨酸E7侧链采用与抹香鲸肌红蛋白或血红蛋白A相似的构象,朝向血红素口袋并与结合的配体接触。有证据表明,摇蚊血红蛋白中的变构转变源于“反位效应”。对已确定的组氨酸E7不稳定质子与大量溶剂交换的分析证实,该基团完全以类似于抹香鲸氰基 - 甲硫氨酸肌红蛋白的方式埋在血红素口袋内,并且与具有“正常”远端组氨酸取向的哺乳动物肌红蛋白相比,短暂暴露于溶剂中的可能性并不更高。最后,根据血红素口袋质子的质子交换速率,对三种摇蚊单体血红蛋白的血红素口袋的溶剂可及性进行了比较,并与诸如(O_2)等可扩散小分子的结合研究相关联。

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