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关于脱辅基血红蛋白因血红素结合而发生构象变化的自旋标记研究。

Spin label studies on conformational changes of aphohemoglobin due to heme binding.

作者信息

Lau P, Asakura T

出版信息

J Biol Chem. 1976 Nov 10;251(21):6838-43.

PMID:185221
Abstract

Human apohemoglobin (globin) was spin-labeled at the beta-93 sulfhydryl groups with 2,2,5,5-tetramethyl-3-aminopyrrolidine-I-oxyl. Spin-labeled globin exhibited an EPR spectra that is less immobilized than that of spin-labeled hemoglobin, indicating the conformational difference in the vicinity of the label between hemoglobin and globin. Spectrophotometric titration of spin-labeled globin with protohemin showed that 1 mol of globin (on the tetramer basis) combines with 4 mol of hemin, producing a holomethemoglobin spectrophotometrically indistinguishable from native methemoglobin. The EPR spectrum was also changed strikingly upon the addition of protohemin. This change, however, was not proportional to the amount of hemin added, but marked changes occurred after 3 to 4 mol of hemin were mixed with 1 mol of spin-labeled globin. The EPR spectrum of spin-labeled hemoglobin thus prepared was identical with that prepared by direct spin labeling to methemoglobin. These results suggest the preferential binding of hemin to alpha-globin chains in the course of heme binding by globin. This assumption was further confirmed by preparing spin-labeled semihemoglobin in which only one kind of chain contained hemin (alpha h betaO SL and alpha O beta h SL). The EPR spectrum of the alpha h beta O SL molecule showed a slightly immobilized EPR spectrum, similar to that of spin-labeled globin mixed with 50% of the stoichiometric amount of hemin. On the other hand, the alpha O beta h SL molecule showed a distinctly different EPR signal from that of globin half-saturated with hemin, and showed an intermediate spectrum between those of beta h SL and alpha h beta h SL. These results indicate that heme binding to globin chains brings about a major conformational change in the protein moiety and that chain-chain association plays a secondary role. We conclude that hemin binds preferentially to alpha-globin chains and that the conformation of globin changes rapidly to that of methemoglobin after all four hemes are attached to globin heme pockets.

摘要

人脱辅基血红蛋白(珠蛋白)在β-93巯基处用2,2,5,5-四甲基-3-氨基吡咯烷-1-氧基进行自旋标记。自旋标记的珠蛋白呈现出的电子顺磁共振(EPR)谱比自旋标记的血红蛋白的EPR谱固定程度更低,这表明血红蛋白和珠蛋白在标记附近的构象存在差异。用原卟啉对自旋标记的珠蛋白进行分光光度滴定表明,1摩尔珠蛋白(以四聚体计)与4摩尔血红素结合,产生的全血红蛋白在分光光度上与天然高铁血红蛋白无法区分。加入原卟啉后,EPR谱也发生了显著变化。然而,这种变化与加入的血红素量不成正比,而是在3至4摩尔血红素与1摩尔自旋标记的珠蛋白混合后发生了显著变化。如此制备的自旋标记血红蛋白的EPR谱与通过直接自旋标记高铁血红蛋白制备的EPR谱相同。这些结果表明,在珠蛋白结合血红素的过程中,血红素优先与α-珠蛋白链结合。通过制备仅一种链含有血红素的自旋标记半血红蛋白(αhβO SL和αOβh SL),这一假设得到了进一步证实。αhβO SL分子的EPR谱显示出略微固定的EPR谱,类似于与50%化学计量的血红素混合的自旋标记珠蛋白的EPR谱。另一方面,αOβh SL分子显示出与半饱和血红素的珠蛋白明显不同的EPR信号,并显示出介于βh SL和αhβh SL之间的中间谱。这些结果表明,血红素与珠蛋白链的结合会导致蛋白质部分发生主要的构象变化,而链间缔合起次要作用。我们得出结论,血红素优先与α-珠蛋白链结合,并且在所有四个血红素附着到珠蛋白血红素口袋后,珠蛋白的构象会迅速转变为高铁血红蛋白的构象。

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