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首页> 外文期刊>Molecular Biology >Mechanisms Involved in Proteolytic Degradation of Globular Proteins: The Role of Local and Global Fluctuations in the Native Structure
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Mechanisms Involved in Proteolytic Degradation of Globular Proteins: The Role of Local and Global Fluctuations in the Native Structure

机译:球状蛋白蛋白水解降解的机制:本地结构中的局部和全局波动的作用。

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摘要

The mechanisms involved in degradation of the native protein structure was analyzed by comparing the temperature dependences of the hydrogen exchange (HE) and proteolytic cleavage rates of hen egg lysozyme (HEL), human hemoglobin (Hb), and its apoform (apoHb). Acceleration of the burstlike (all or none) proteolytic degradation of HEL in a high temperature range results from the intensification of global fluctuations with overall structure unfolding, indicated by HE. The rates of Hb and apoHb burstlike degradation and HE weakly depend on the temperature in the range where only local fluctuations of the native structure are detectable by HE. These two proteins are cleaved according to a self-accelerated burstlike mechanism with the initial rate-limiting single cleavage due to local fluctuations in the native structure. Such fluctuations play an important role in intracellular burstlike proteolytic degradation of native proteins.
机译:通过比较氢交换(HE)的温度依赖性和鸡蛋溶菌酶(HEL),人血红蛋白(Hb)及其载脂蛋白(apoHb)的蛋白水解裂解率,分析了天然蛋白质结构降解的机理。 HE表明,在高温范围内,HEL的爆炸状(全部或全部)蛋白水解降解的加速是由于整体结构展开的整体波动加剧所致。 Hb和apoHb爆发性降解的速率和HE弱依赖于HE只能检测到天然结构局部波动的范围内的温度。由于天然结构的局部波动,这两种蛋白质根据自我加速的爆发样机制被裂解,并具有最初的限速单裂解。这种波动在天然蛋白的细胞内爆发样蛋白水解降解中起重要作用。

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