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Determination of the volume changes for pressure-induced transitions of apomyoglobin between the native, molten globule, and unfolded states.

机译:确定在天然,熔融小球和未折叠状态之间压力引起的肌红蛋白转变的体积变化。

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摘要

The volume change for the transition from the native state of horse heart apomyoglobin to a pressure-induced intermediate with fluorescence properties similar to those of the well-established molten globule or I form was measured to be -70 ml/mol. Complete unfolding of the protein by pressure at pH 4.2 revealed an upper limit for the unfolding of the intermediate of -61 ml/mol. At 0.3 M guanidine hydrochloride, the entire transition from native to molten globule to unfolded state was observed in the available pressure range below 2.5 kbar. The volume change for the N-->I transition is relatively large and does not correlate well with the changes in relative hydration for these transitions derived from measurements of the changes in heat capacity, consistent with the previously observed lack of correlation between the m-value for denaturant-induced transitions and the measured volume change of unfolding for cooperativity mutants of staphylococcal nuclease (Frye et al. 1996. Biochemistry. 35:10234-10239). Our results support the hypothesis that the volume change associated with the hydration of protein surface upon unfolding may involve both positive and negative underlying contributions that effectively cancel, and that the measured volume changes for protein structural transitions arise from another source, perhaps the elimination of void volume due to packing defects in the structured chains.
机译:从马心脏磷肌红蛋白的天然状态到压力诱导的中间体的转变的体积变化为-70 ml / mol,该中间体的荧光性质与公认的熔融小球或I形式相似。通过在pH 4.2的压力下蛋白质的完全展开,揭示了中间体展开的上限为-61 ml / mol。在盐酸胍为0.3 M时,在低于2.5 kbar的可用压力范围内观察到了从天然小球到熔融小球到未折叠状态的整个转变。 N-> I跃迁的体积变化相对较大,并且与这些跃迁的相对水合变化没有很好的相关性,这些变化是通过测量热容变化得出的,这与之前观察到的m-葡萄球菌核酸酶的协同突变体的变性剂诱导的转变的值和测得的展开的体积变化(Frye等,1996.Biochemistry.35:10234-10239)。我们的研究结果支持以下假设:与蛋白质表面水合后展开的体积变化可能涉及潜在的正负作用,这些作用都可以有效抵消,并且所测量的蛋白质结构转变的体积变化来自另一个来源,也许是消除了空隙由于结构链中的包装缺陷而导致的体积增加。

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    Vidugiris, G J; Royer, C A;

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  • 年度 1998
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  • 正文语种 en
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