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Structural energetics of barstar studied by differential scanning microcalorimetry.

机译:通过差示扫描量热法研究了barstar的结构能。

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摘要

The energetics of barstar denaturation have been studied by CD and scanning microcalorimetry in an extended range of pH and salt concentration. It was shown that, upon increasing temperature, barstar undergoes a transition to the denatured state that is well approximated by a two-state transition in solutions of high ionic strength. This transition is accompanied by significant heat absorption and an increase in heat capacity. The denaturational heat capacity increment at approximately 75 degrees C was found to be 5.6 +/- 0.3 kJ K-1 mol-1. In all cases, the value of the measured enthalpy of denaturation was notably lower than those observed for other small globular proteins. In order to explain this observation, the relative contributions of hydration and the disruption of internal interactions to the total enthalpy and entropy of unfolding were calculated. The enthalpy and entropy of hydration were found to be in good agreement with those calculated for other proteins, but the enthalpy and entropy of breaking internal interactions were found to be among the lowest for all globular proteins that have been studied. Additionally, the partial specific heat capacity of barstar in the native state was found to be 0.37 +/- 0.03 cal K-1 g-1, which is higher than what is observed for most globular proteins and suggests significant flexibility in the native state. It is known from structural data that barstar undergoes a conformational change upon binding to its natural substrate barnase.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:通过CD和扫描量热法在扩展的pH和盐浓度范围内研究了barstar变性的能量。结果表明,随着温度的升高,barstar在高离子强度的溶液中经历一个转变为变性状态的转变,该转变状态很容易被两态转变所近似。这种转变伴随着大量的热吸收和热容量的增加。发现在约75℃下的变性热容增量为5.6 +/- 0.3kJ K-1 mol-1。在所有情况下,测得的变性焓值均明显低于其他小球状蛋白的值。为了解释该观察结果,计算了水合和内部相互作用破坏对总焓和展开熵的相对贡献。发现水合的焓和熵与针对其他蛋白质计算的焓和熵非常吻合,但是发现破坏内部相互作用的焓和熵在所研究的所有球状蛋白中均最低。另外,发现在自然状态下的巴星的部分比热容为0.37 +/- 0.03 cal K-1 g-1,高于大多数球状蛋白的观察值,并表明在自然状态下具有显着的柔性。根据结构数据可知,barstar与其天然底物barnase结合后会发生构象变化。(摘要截短为250字)

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