Stayton P S, Freitag S, Klumb L A, Chilkoti A, Chu V, Penzotti J E, To R, Hyre D, Le Trong I, Lybrand T P, Stenkamp R E
Department of Bioengineering, University of Washington, Seattle 98195, USA.
Biomol Eng. 1999 Dec 31;16(1-4):39-44. doi: 10.1016/s1050-3862(99)00042-x.
The high affinity energetics in the streptavidin-biotin system provide an excellent model system for studying how proteins balance enthalpic and entropic components to generate an impressive overall free energy for ligand binding. We review here concerted site-directed mutagenesis, biophysical, and computational studies of aromatic and hydrogen bonding interaction energetics between streptavidin and biotin. These results also have provided insight into how streptavidin builds a large activation barrier to dissociation by managing the enthalpic and entropic activation components. Finally, we review recent studies of the biotin dissociation pathway that address the fundamental question of how ligands exit protein binding pockets.
链霉亲和素-生物素系统中的高亲和力能量学为研究蛋白质如何平衡焓和熵成分以产生令人印象深刻的配体结合总自由能提供了一个出色的模型系统。我们在此回顾关于链霉亲和素与生物素之间芳香族和氢键相互作用能量学的协同定点诱变、生物物理及计算研究。这些结果还为链霉亲和素如何通过管理焓和熵激活成分来构建一个大的解离活化能垒提供了见解。最后,我们回顾了关于生物素解离途径的近期研究,这些研究解决了配体如何从蛋白质结合口袋中释放这一基本问题。