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全肌红蛋白的稳定性由血红素亲和力决定。

The stability of holomyoglobin is determined by heme affinity.

作者信息

Hargrove M S, Olson J S

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77251-1892, USA.

出版信息

Biochemistry. 1996 Sep 3;35(35):11310-8. doi: 10.1021/bi9603736.

Abstract

The properties of wild-type, V68T, and H97D sperm whale myoglobins were compared to determine the relative importance of heme affinity and globin stability on the resistance of the holoprotein to denaturation. The V68T mutation decreases apoglobin stability by placing a polar side chain in the interior heme pocket. However, this substitution increases hemin affinity by formation of a strong hydrogen bond between coordinated water and the Thr68(E11) side chain. The H97D substitution disrupts favorable contacts with Ser92(F7) and the heme-7-propionate and causes a large increase in the rate of hemin dissociation. The Asp replacement has little affect on apoglobin stability because His97(FG3) is a surface residue. The aquomet, cyanomet, deoxyferrous, and apoglobin forms of each mutant and wild-type myoglobin were unfolded by titration with guanidinium chloride. Even though holomyoglobin denaturation involves the dissociation of heme and should be dependent on protein concentration, nonspecific heme binding to unfolded states makes the overall process appear to be a simple, unimolecular unfolding transition. The equilibrium constants for the denaturation of the holomyoglobin mutants correlate almost exclusively with heme affinity and not with the stability of the globin portion of the molecule. The strong correlation with heme affinity explains quantitatively why the stability of myoglobin is enhanced approximately 60-fold by reduction of iron to the ferrous deoxy state and by another approximately 100-fold with CO coordination. Parameters measured for GdmCl-, urea-, acid-, and heat-induced denaturation of holomyoglobins and hemoglobins reflect heme affinity and not the folding properties of the corresponding apoproteins. This conclusion suggests that (1) many previous studies of the denaturation of intact heme proteins need to be reevaluated in terms of heme affinity and (2) measurements with apoproteins are required for unambiguous determinations of the stability of globin structures.

摘要

比较野生型、V68T和H97D抹香鲸肌红蛋白的特性,以确定血红素亲和力和球蛋白稳定性对全蛋白抗变性能力的相对重要性。V68T突变通过在内部血红素口袋中放置一个极性侧链来降低脱辅基球蛋白的稳定性。然而,这种取代通过在配位水和Thr68(E11)侧链之间形成强氢键来增加血红素亲和力。H97D取代破坏了与Ser92(F7)和血红素-7-丙酸酯的有利接触,并导致血红素解离速率大幅增加。天冬氨酸取代对脱辅基球蛋白稳定性影响很小,因为His97(FG3)是一个表面残基。通过用氯化胍滴定,使每个突变体和野生型肌红蛋白的高铁肌红蛋白、氰化高铁肌红蛋白、脱氧亚铁肌红蛋白和脱辅基球蛋白形式展开。尽管全肌红蛋白变性涉及血红素的解离,且应取决于蛋白质浓度,但非特异性血红素与未折叠状态的结合使整个过程似乎是一个简单的单分子展开转变。全肌红蛋白突变体变性的平衡常数几乎完全与血红素亲和力相关,而与分子球蛋白部分的稳定性无关。与血红素亲和力的强相关性定量解释了为什么通过将铁还原为亚铁脱氧状态,肌红蛋白的稳定性提高了约60倍,而通过CO配位又提高了约100倍。对全肌红蛋白和血红蛋白的GdmCl-、尿素、酸和热诱导变性测量的参数反映了血红素亲和力,而不是相应脱辅基蛋白的折叠特性。这一结论表明:(1)许多以前对完整血红素蛋白变性的研究需要根据血红素亲和力重新评估;(2)为明确确定球蛋白结构的稳定性,需要对脱辅基蛋白进行测量。

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