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牛蛙骨骼肌肌钙蛋白C钙结合诱导的热容和熵变化

Heat capacity and entropy changes of troponin C from bullfrog skeletal muscle induced by calcium binding.

作者信息

Imaizumi M, Tanokura M

机构信息

Department of Physiology, Medical College of Oita, Japan.

出版信息

Eur J Biochem. 1990 Sep 11;192(2):275-81. doi: 10.1111/j.1432-1033.1990.tb19224.x.

Abstract

In order to elucidate the structural changes of bullfrog skeletal muscle troponin C (TnC) caused by Ca2+ binding, microcalorimetric titrations were performed in both the absence and presence of Mg2+, at pH 7.0, and at 5 degrees, 15 degrees, and 25 degrees C. The results indicate that, in the absence of Mg2+, Ca2+ binding to sites 1 and 2 gives rise to a large hydrophobic effect, a sequestering of nonpolar groups on the surface of molecule to the interior, and a tightening of the molecular structure as a whole. In contrast, hydrophobic groups were exposed from the interior to the surface of molecule and the molecular mobility was increased, upon Ca2+ binding to site 3. Ca2+ binding to site 4 induced much less change in the conformation of TnC molecule than that to the other sites. The presence of 5 mM Mg2+ dramatically reduced the magnitude of the conformational changes in TnC on Ca2+ binding to sites 1 and 2. On the other hand, the conformational changes by Ca2+ binding to sites 3 and 4 were not affected by Mg2+. Ca2+ binding to site 3 of TnC, thus, causes the conformational changes distinctly different from those upon Ca2+ binding to the other sites. The conformational changes upon Ca2+ binding to site 3 of TnC are also clearly distinct from the Ca2(+)-induced conformational changes of parvalbumins, but are similar to those of calmodulin. Site 3 of TnC may, therefore, be the regulatory site in muscle contraction, and the exposure or generation of hydrophobic groups on the surface of molecule as well as the increase in molecular mobility may be the common characteristics of the regulation by Ca2(+)-binding proteins.

摘要

为了阐明牛蛙骨骼肌肌钙蛋白C(TnC)因Ca2+结合而引起的结构变化,在pH 7.0、5℃、15℃和25℃条件下,分别在不存在和存在Mg2+的情况下进行了微量热滴定。结果表明,在不存在Mg2+时,Ca2+与位点1和位点2结合会产生较大的疏水效应,使分子表面的非极性基团向内部聚集,并使整个分子结构收紧。相反,当Ca2+与位点3结合时,疏水基团从分子内部暴露到表面,分子流动性增加。Ca2+与位点4结合引起的TnC分子构象变化比与其他位点结合时小得多。5 mM Mg2+的存在显著降低了Ca2+与位点1和位点2结合时TnC构象变化的幅度。另一方面,Ca2+与位点3和位点4结合引起的构象变化不受Mg2+影响。因此,Ca2+与TnC位点3结合引起的构象变化与Ca2+与其他位点结合时明显不同。Ca2+与TnC位点3结合引起的构象变化也明显不同于Ca2+诱导的小清蛋白构象变化,但与钙调蛋白的相似。因此,TnC的位点3可能是肌肉收缩中的调节位点,分子表面疏水基团的暴露或产生以及分子流动性的增加可能是Ca2+结合蛋白调节的共同特征。

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