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首页> 外文期刊>Biochemistry >Volume and Compressibility Changes Accompanying Thermally-Induced Native-to-Unfolded and Molten Globule-to-Unfolded Transitions of Cytochrome c: A High Pressure Study.
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Volume and Compressibility Changes Accompanying Thermally-Induced Native-to-Unfolded and Molten Globule-to-Unfolded Transitions of Cytochrome c: A High Pressure Study.

机译:伴随热诱导的细胞色素c的自然-未折叠和熔融小球-未折叠转变的体积和可压缩性变化:一项高压研究。

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摘要

We have measured the transition temperatures, T(M), and van't Hoff enthalpies, DeltaH(M), of the thermally induced native-to-unfolded (N-to-U) and molten globule-to-unfolded (MG-to-U) transitions of cytochrome c at pressures between 50 and 2200 bar. We have used the pressure dependence of T(M) to evaluate the changes in volume, Deltav, accompanying each protein transition event as a function of temperature and pressure. From analysis of the temperature and pressure dependences of Deltav, we have additionally calculated the changes in expansibility, Deltae, and isothermal compressibility, Deltak(T), associated with the thermally induced conformational transitions of cytochrome c. Specifically, if extrapolated to 25 degrees C, the native-to-unfolded (N-to-U) transition is accompanied by changes in volume, Deltav, expansibility, Deltae, and isothermal compressibility, Deltak(T), of -(5 +/- 3) x 10(-)(3) cm(3) g(-)(1), (1.8 +/- 0.3) x 10(-)(4) cm(3) g(-)(1) K(-)(1), and approximately 0 cm(3) g(-)(1) bar(-)(1), respectively. The molten globule-to-unfolded (MG-to-U) transition is accompanied by changes in volume, Deltav, and isothermal compressibility, Deltak(T), of -(2.9 +/- 0.3) x 10(-)(3) cm(3) g(-)(1) at 40 degrees C and -(1.9 +/- 0.3) x 10(-)(6) cm(3) g(-)(1) bar(-)(1) at 35 degrees C, respectively. By comparing the volumetric properties of the N-to-U and N-to-MG transitions of cytochrome c, we have estimated the properties of the native-to-molten globule (N-to-MG) transition. For the latter transition, the changes in volume, Deltav, and isothermal compressibility, Deltak(T), are approximately 0 cm(3) g(-)(1) at 40 degrees C and 1.9 cm(3) g(-)(1) bar(-)(1) at 35 degrees C, respectively. Our estimate for the change in expansibility, Deltae, upon the N-to-MG is negative and equal to -(5 +/- 3) x 10(-)(4) cm(3) g(-)(1) K(-)(1). This finding contrasts with the results of previous studies all of which report positive changes in expansibility associated with protein denaturation. In general, our volumetric data permit us to assess the combined effect of temperature and pressure on the stability of various conformational states of cytochrome c.
机译:我们已经测量了热诱导的自然-未折叠(N-U)和熔融小球-未折叠(MG-M)的转变温度T(M)和范霍夫焓DeltaH(M)。到U)在50至2200 bar之间的压力下细胞色素c的转变。我们已经使用T(M)的压力依赖性来评估伴随每个蛋白质转变事件随温度和压力变化的体积Deltav的变化。从对Deltav的温度和压力依赖性的分析中,我们还计算了可膨胀性Deltae和等温压缩性Deltak(T)的变化,这些变化与细胞色素c的热诱导构象转变有关。具体而言,如果外推到25摄氏度,则自然到未折叠(从N到U)的转变会伴随着体积变化(-+ 5 +),Δv,膨胀率,Δe和等温压缩率Deltak(T)。 /-3)x 10(-)(3)cm(3)g(-)(1),(1.8 +/- 0.3)x 10(-)(4)cm(3)g(-)(1) K(-)(1)和大约0 cm(3)g(-)(1)bar(-)(1)。熔融球状至未折叠状(MG至U)的转变伴随着体积变化Deltav和等温压缩率Deltak(T)为-(2.9 +/- 0.3)x 10(-)(3) cm(3)g(-)(1)在40摄氏度和-(1.9 +/- 0.3)x 10(-)(6)cm(3)g(-)(1)bar(-)(1)分别在35摄氏度。通过比较细胞色素c的N到U和N到MG过渡的体积特性,我们估计了自然到熔融小球(N到MG)的过渡特性。对于后一个过渡,在40摄氏度和1.9厘米(3)g(-)()下,体积Deltav和等温压缩性Deltak(T)的变化约为0 cm(3)g(-)(1)。 1)分别在35摄氏度下的bar(-)(1)。我们估计的从N到MG的可膨胀性变化Deltae为负,等于-(5 +/- 3)x 10(-)(4)cm(3)g(-)(1)K (-)(1)。这一发现与先前研究的结果形成鲜明对比,所有先前研究均报告了与蛋白质变性相关的可扩展性的积极变化。通常,我们的体积数据允许我们评估温度和压力对细胞色素c各种构象状态稳定性的综合影响。

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