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一种嗜冷核糖核酸酶HI的结构、热力学和突变分析

Structural, thermodynamic, and mutational analyses of a psychrotrophic RNase HI.

作者信息

Tadokoro Takashi, You Dong-Ju, Abe Yumi, Chon Hyongi, Matsumura Hiroyoshi, Koga Yuichi, Takano Kazufumi, Kanaya Shigenori

机构信息

Department of Material and Life Science, Graduate School of Engineering, Osaka University, Suita, Japan.

出版信息

Biochemistry. 2007 Jun 26;46(25):7460-8. doi: 10.1021/bi7001423. Epub 2007 May 31.

Abstract

Ribonuclease (RNase) HI from the psychrotrophic bacterium Shewanella oneidensis MR-1 was overproduced in Escherichia coli, purified, and structurally and biochemically characterized. The amino acid sequence of MR-1 RNase HI is 67% identical to that of E. coli RNase HI. The crystal structure of MR-1 RNase HI determined at 2.0 A resolution was highly similar to that of E. coli RNase HI, except that the number of intramolecular ion pairs and the fraction of polar surface area of MR-1 RNase HI were reduced compared to those of E. coli RNase HI. The enzymatic properties of MR-1 RNase HI were similar to those of E. coli RNase HI. However, MR-1 RNase HI was much less stable than E. coli RNase HI. The stability of MR-1 RNase HI against heat inactivation was lower than that of E. coli RNase HI by 19 degrees C. The conformational stability of MR-1 RNase HI was thermodynamically analyzed by monitoring the CD values at 220 nm. MR-1 RNase HI was less stable than E. coli RNase HI by 22.4 degrees C in Tm and 12.5 kJ/mol in DeltaG(H2O). The thermodynamic stability curve of MR-1 RNase HI was characterized by a downward shift and increased curvature, which results in an increased DeltaCp value, compared to that of E. coli RNase HI. Site-directed mutagenesis studies suggest that the difference in the number of intramolecular ion pairs partly accounts for the difference in stability between MR-1 and E. coli RNases HI.

摘要

从嗜冷细菌希瓦氏菌MR-1中提取的核糖核酸酶(RNase)HI在大肠杆菌中过量表达、纯化,并进行了结构和生化特性分析。MR-1 RNase HI的氨基酸序列与大肠杆菌RNase HI的氨基酸序列有67%的同源性。以2.0埃分辨率测定的MR-1 RNase HI的晶体结构与大肠杆菌RNase HI的晶体结构高度相似,只是与大肠杆菌RNase HI相比,MR-1 RNase HI的分子内离子对数和极性表面积分数有所减少。MR-1 RNase HI的酶学性质与大肠杆菌RNase HI相似。然而,MR-1 RNase HI的稳定性远低于大肠杆菌RNase HI。MR-1 RNase HI对热失活的稳定性比大肠杆菌RNase HI低19摄氏度。通过监测220纳米处的圆二色性(CD)值对MR-1 RNase HI的构象稳定性进行了热力学分析。MR-1 RNase HI在熔解温度(Tm)上比大肠杆菌RNase HI低22.4摄氏度,在吉布斯自由能变化(ΔG(H2O))上低12.5千焦/摩尔。与大肠杆菌RNase HI相比,MR-1 RNase HI的热力学稳定性曲线的特征是向下移动和曲率增加,这导致热容变化(ΔCp)值增加。定点诱变研究表明,分子内离子对数的差异部分解释了MR-1和大肠杆菌RNase HI之间稳定性的差异。

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