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首页> 外文期刊>Journal of Molecular Biology >FAST AND SLOW TRACKS IN LYSOZYME FOLDING - INSIGHT INTO THE ROLE OF DOMAINS IN THE FOLDING PROCESS
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FAST AND SLOW TRACKS IN LYSOZYME FOLDING - INSIGHT INTO THE ROLE OF DOMAINS IN THE FOLDING PROCESS

机译:溶菌酶折叠中的快速和慢速轨迹-深刻认识折叠过程中DOMAIN的作用。

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The folding of lysozyme involves parallel events in which hydrogen exchange kinetics indicate the development of persistent structure at very different rates. We have monitored directly the kinetics of formation of the native molecule by the binding of a fluorescently labelled inhibitor, MeU-diNAG (4-methylumbelliferyl-N,N'-diacetyl-beta-D-chitobioside). The data show that native character monitored in this way also develops with different timescales. Although the rate determining step on the slow pathway (similar to 75% of molecules at pH 5.5, 20 degrees C) can be attributed to the need to reorganise structure formed early in the folding process, the data indicate that the rate determining step on the fast track (involving similar to 25% of molecules) involves the docking of the two constituent domains of the protein. In the fast folding track the data are consistent with a model in which each domain forms persistent structure prier to their docking in a locally cooperative manner on a timescale comparable to the folding of small single domain proteins. (C) 1997 Academic Press Limited. [References: 38]
机译:溶菌酶的折叠涉及平行事件,其中氢交换动力学表明持久性结构以非常不同的速率发展。我们已经通过荧光标记的抑制剂MeU-diNAG(4-甲基伞形酮-N,N'-二乙酰基-β-D-壳聚糖)的结合直接监测了天然分子形成的动力学。数据表明,以这种方式监视的本地字符也会随着不同的时间尺度而发展。尽管缓慢路径上的速率确定步骤(类似于在pH 5.5、20摄氏度下75%的分子)可归因于需要重组折叠过程早期形成的结构,但数据表明,快速通道(涉及到25%的分子)涉及蛋白质的两个组成域的对接。在快速折叠轨道中,数据与模型相符,在该模型中,每个域以与小单域蛋白折叠相当的时间尺度,以局部协作方式对它们的对接形成持久的结构障碍。 (C)1997 Academic Press Limited。 [参考:38]

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