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钙结合诱导的牛蛙(牛蛙)小清蛋白两种主要同种型的热容量和熵变化。

Heat capacity and entropy changes of the two major isotypes of bullfrog (Rana catesbeiana) parvalbumins induced by calcium binding.

作者信息

Tanokura M, Yamada K

机构信息

Department of Physiology, Medical College of Oita, Japan.

出版信息

Biochemistry. 1987 Dec 1;26(24):7668-74. doi: 10.1021/bi00398a020.

Abstract

The possible structural changes of the two major isotypes (PA1 and PA2) of parvalbumins from bullfrog (Rana catesbeiana) skeletal muscle caused by Ca2+ binding have been analyzed by microcalorimetric titrations. Titrations of the parvalbumins with Ca2+ have been made in both the absence and presence of Mg2+ at pH 7.0 and at 5, 15, and 25 degrees C. The reactions of the parvalbumins with Ca2+ are exothermic in both the presence and absence of Mg2+ and at every temperature. But the contributions of enthalpy and entropy changes are variable; Mg2+-Ca2+ exchange on PA1 at 25 degrees C is driven almost entirely by a favorable enthalpy change, whereas Ca2+ binding to PA2 at 5 degrees C is driven for the most part by a favorable entropy change. The magnitudes of the hydrophobic and internal vibrational contributions to the heat capacity and entropy changes of the parvalbumins on Ca2+ binding and Mg2+-Ca2+ exchange have been estimated by the empirical method of Sturtevant [Sturtevant, J. M. (1977) Proc. Natl. Acad. Sci. U.S.A. 74, 2236-2240]. Although PA1 (beta) and PA2 (alpha) belong to genetically different lineages, the parvalbumins indicate very similar conformational changes to each other on both Ca2+ binding and Mg2+-Ca2+ exchange. On Mg2+-Ca2+ exchange, the vibrational as well as hydrophobic entropy is slightly increased in a parallel manner. In contrast, on Ca2+ binding, the hydrophobic entropy increases but the vibrational entropy decreases. The increase in the hydrophobic entropy indicates the sequestering of nonpolar groups from the surface to the interior of molecules, while the changes in the vibrational entropy suggest that the overall structures are tightened on Ca2+ binding but loosened on Mg2+-Ca2+ exchange.

摘要

通过微量热滴定法分析了牛蛙(Rana catesbeiana)骨骼肌中两种主要亚型(PA1和PA2)的小清蛋白因结合Ca2+而可能发生的结构变化。在pH 7.0以及5℃、15℃和25℃条件下,分别在不存在和存在Mg2+的情况下,用Ca2+对小清蛋白进行滴定。在不存在和存在Mg2+的情况下以及在每个温度下,小清蛋白与Ca2+的反应都是放热的。但是焓变和熵变的贡献是可变的;25℃时PA1上的Mg2+-Ca2+交换几乎完全由有利的焓变驱动,而5℃时Ca2+与PA2的结合在很大程度上由有利的熵变驱动。通过Sturtevant的经验方法[Sturtevant, J. M. (1977) Proc. Natl. Acad. Sci. U.S.A. 74, 2236 - 2240]估算了小清蛋白在结合Ca2+和Mg2+-Ca2+交换时,疏水和内部振动对热容和熵变的贡献大小。尽管PA1(β)和PA2(α)属于基因不同的谱系,但小清蛋白在结合Ca2+和Mg2+-Ca2+交换时,彼此显示出非常相似的构象变化。在Mg2+-Ca2+交换时,振动熵和疏水熵以平行方式略有增加。相反,在结合Ca2+时,疏水熵增加但振动熵减少。疏水熵的增加表明非极性基团从分子表面被隔离到分子内部,而振动熵的变化表明整体结构在结合Ca2+时收紧,但在Mg2+-Ca2+交换时松弛。

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