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Snapshots of Protein Folding Problem: Implications of Folding and Misfolding Studies

机译:蛋白质折叠问题的快照:折叠和错误折叠研究的含义

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摘要

Deciphering the code that determines the three-dimensional structure of proteins and the ability to predict the final folded form of a protein is still elusive to molecular biophysists. In the case of several proteins a similar tertiary structure is not accompanied by any significant sequence similarity. The question now remains whether a code beyond the genetic code that describes the arrangement of the amino acid within a three dimensional protein structure. The available data undoubtedly demonstrates that the redundancy of this code must be tremendous. Several techniques such as nuclear magnetic resonance spectroscopy and laser detection techniques, coupled with fast initiation of the folding reaction, can now probe the folding events in milliseconds or even faster and provide highly relevant information. The thermodynamic analysis of the folding process and of kinetic intermediates opens whole new avenue of understanding. Breaking the protein folding code would enable scientists to look at a gene whose function is unknown and predict the three-dimensional structure of the protein it encodes. This would give them a very good idea of what the gene does. In this review we hope to bring together the information available about protein folding with particular emphasis on folding intermediate(s). Additionally, the practical consequences of the solution of the protein folding problem in medicine and biotechnology are also discussed.
机译:解密确定蛋白质三维结构的代码以及预测蛋白质最终折叠形式的能力对于分子生物物理学家来说仍然遥不可及。在几种蛋白质的情况下,相似的三级结构不伴有任何明显的序列相似性。现在的问题仍然是,是否存在超越遗传密码的密码,该密码描述了三维蛋白质结构中氨基酸的排列方式。可用数据无疑表明该代码的冗余性必须是巨大的。诸如核磁共振波谱学和激光检测技术等多种技术,再加上折叠反应的快速启动,现在可以在几毫秒甚至更快的时间内探测到折叠事件,并提供高度相关的信息。折叠过程和动力学中间体的热力学分析开辟了全新的理解途径。打破蛋白质折叠密码将使科学家能够查看其功能未知的基因,并预测其编码的蛋白质的三维结构。这将使他们对基因的作用非常了解。在这篇综述中,我们希望将有关蛋白质折叠的可用信息集中在一起,特别着重于折叠中间体。另外,还讨论了解决医学和生物技术中蛋白质折叠问题的实际后果。

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