Nuclear Magnetic Resonance Studies on Complementary Peptides

Curto Ernest V., Krishna N.Rama
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引用次数: 3

Abstract

From the original observation that the codons for the hydrophobic and hydrophilic amino acids on one strand of the DNA may be complemented by the codons for the hydrophilic and hydrophobic amino acids, respectively, on the complementary strand, arose the molecular recognition theory which forms the basis for much of the work involving complementary peptides. A number of examples have been documented where peptides with inverted hydropathic profiles have been shown to form complexes in high-affinity chromatography and solid matrix binding assays. Nevertheless, our current understanding of the molecular forces leading to the formation of these complexes is rather rudimentary, and it is highly desirable to have a detailed three-dimensional structure of a complex of interacting complementary peptides. In this article, we provide a brief review of the solution NMR work done by different laboratories in an attempt to study these interactions.

互补肽的核磁共振研究
最初的观察发现,一条DNA链上的亲水和疏水氨基酸的密码子可能分别被互补链上的亲水和疏水氨基酸的密码子所补充,由此产生了分子识别理论,该理论为许多涉及互补肽的工作奠定了基础。在高亲和层析和固体基质结合试验中,已证明具有反亲水特征的肽形成络合物。然而,我们目前对导致这些复合物形成的分子力的理解是相当初级的,并且非常希望有一个相互作用的互补肽复合物的详细三维结构。在本文中,我们简要回顾了不同实验室在研究这些相互作用方面所做的溶液核磁共振工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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