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单个α螺旋的内在稳定性调节脱辅基肌红蛋白熔球态的结构和稳定性。

Intrinsic stability of individual alpha helices modulates structure and stability of the apomyoglobin molten globule form.

作者信息

Kiefhaber T, Baldwin R L

机构信息

Department of Biochemistry, Stanford University School of Medicine, CA 94305, USA.

出版信息

J Mol Biol. 1995 Sep 8;252(1):122-32. doi: 10.1006/jmbi.1995.0479.

Abstract

During acid-induced unfolding of apomyoglobin, a partly folded form is observed at pH values of around four. In this form, the A, G and H helices are folded, while the rest of the molecule, including the B helix, demonstrates little structure. The partly folded form has been described as a molten globule form. To determine the factors that govern the structure and stability of this form, we introduced two helix-stabilizing mutations into the B helix, and tested their effect on the structure and stability of both the native form and the molten globule form. We show that the two Gly-->Ala replacements in the B helix produce altered fluorescence and CD properties of the partly folded intermediate, a result which implies that the B helix has become part of the structured region of the molten globule form. The helix content of a model peptide containing the sequence of the B helix is increased by the G-->A replacements, as is the helix content of the molten globule intermediate, whereas the stability and the helix content of the native protein are not altered. The observed increase in helicity is larger in the folding intermediate than in the model peptide, suggesting that nonspecific interactions, such as the hydrophobic interactions exhibited by the entire polypeptide chain, amplify the effect of intrinsic helix stability. The overall results suggest that the intrinsic stability of each individual helix is a factor in deciding whether or not that helix becomes part of the structured molten globule.

摘要

在酸诱导的脱辅基肌红蛋白展开过程中,在pH值约为4时观察到一种部分折叠形式。在这种形式下,A、G和H螺旋折叠起来,而分子的其余部分,包括B螺旋,几乎没有结构。这种部分折叠形式被描述为熔球态。为了确定控制这种形式的结构和稳定性的因素,我们在B螺旋中引入了两个稳定螺旋的突变,并测试了它们对天然形式和熔球态形式的结构和稳定性的影响。我们发现,B螺旋中的两个甘氨酸到丙氨酸的替换导致部分折叠中间体的荧光和圆二色性性质发生改变,这一结果表明B螺旋已成为熔球态形式的结构化区域的一部分。含有B螺旋序列的模型肽的螺旋含量因甘氨酸到丙氨酸的替换而增加,熔球态中间体的螺旋含量也增加,而天然蛋白质的稳定性和螺旋含量没有改变。在折叠中间体中观察到的螺旋度增加比在模型肽中更大,这表明非特异性相互作用,如整个多肽链表现出的疏水相互作用,放大了内在螺旋稳定性的影响。总体结果表明,每个单独螺旋的内在稳定性是决定该螺旋是否成为结构化熔球态一部分的一个因素。

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