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嗜热栖热菌 CYP175A1 热稳定性的热力学基础。

Thermodynamic basis of the thermostability of CYP175A1 from Thermus thermophilus.

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai, India.

出版信息

Int J Biol Macromol. 2010 May 1;46(4):412-8. doi: 10.1016/j.ijbiomac.2010.01.014. Epub 2010 Feb 6.

Abstract

Detailed circular dichroism studies have been carried out to monitor thermal as well as denaturant induced unfolding of CYP175A1 from Thermus thermophilus and its mesophilic homologue, CYP101 from Pseudomonas putida. The unfolding midpoint temperatures for tertiary and secondary structures of the substrate-free CYP175A1 were found to be 83.7 degrees C and 87 degrees C respectively, while the corresponding midpoint temperatures for substrate-free CYP101 were at 47.7 degrees C and 51 degrees C respectively. The apparent C(m) value for GdnHCl induced unfolding of secondary structure of CYP175A1 was found to be 2.6M. The thermodynamic stability curves determined from GdnHCl induced unfolding of the enzymes at different temperatures, showed that CYP175A1 had higher free energy compared to CYP101 at temperature >10 degrees C. The results clearly established that the high thermostability of CYP175A1 arises predominantly due to higher enthalpy of the thermostable enzyme compared to CYP101. The larger number of salt bridges was proposed to be responsible for higher enthalpy of stabilization of CYP175A1.

摘要

已经进行了详细的圆二色性研究,以监测热诱导和变性剂诱导的来自嗜热栖热菌的 CYP175A1 及其嗜温同系物,假单胞菌属的 CYP101 的展开。发现无底物 CYP175A1 的三级和二级结构的展开中点温度分别为 83.7°C 和 87°C,而无底物 CYP101 的相应展开中点温度分别为 47.7°C 和 51°C。发现 GdnHCl 诱导无底物 CYP175A1 二级结构展开的表观 C(m)值为 2.6M。从不同温度下 GdnHCl 诱导酶展开确定的热力学稳定性曲线表明,在温度>10°C 时,CYP175A1 的自由能高于 CYP101。结果清楚地表明,CYP175A1 的高热稳定性主要归因于热稳定酶的焓值高于 CYP101。提出更多的盐桥是稳定 CYP175A1 的焓值更高的原因。

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