Center for Advanced Radiation Sources, University of Chicago, 9700 South Cass Avenue, Building 434B, Argonne, IL 60439, USA.
Proc Natl Acad Sci U S A. 2012 Jan 3;109(1):107-12. doi: 10.1073/pnas.1109213108. Epub 2011 Dec 14.
Here we present a meta-analysis of a large collection of static structures of a protein in the Protein Data Bank in order to extract the progression of structural events during protein function. We apply this strategy to the homodimeric hemoglobin HbI from Scapharca inaequivalvis. We derive a simple dynamic model describing how binding of the first ligand in one of the two chemically identical subunits facilitates a second binding event in the other partner subunit. The results of our ultrafast time-resolved crystallographic studies support this model. We demonstrate that HbI functions like a homodimeric mechanical device, such as pliers or scissors. Ligand-induced motion originating in one subunit is transmitted to the other via conserved pivot points, where the E and F' helices from two partner subunits are "bolted" together to form a stable dimer interface permitting slight relative rotation but preventing sliding.
在这里,我们对蛋白质数据库中大量蛋白质静态结构的进行了荟萃分析,以提取蛋白质功能过程中结构事件的进展。我们将此策略应用于来自 Scapharca inaequivalvis 的同源二聚体血红蛋白 HbI。我们得出了一个简单的动态模型,描述了第一个配体在两个化学上相同的亚基之一中的结合如何促进另一个亚基中的第二个结合事件。我们超快时间分辨晶体学研究的结果支持了该模型。我们证明 HbI 的作用类似于双联体机械装置,例如钳子或剪刀。源自一个亚基的配体诱导运动通过保守的枢轴点传递到另一个亚基,两个亚基的 E 和 F' 螺旋在此处“螺栓”在一起形成稳定的二聚体界面,允许轻微的相对旋转,但防止滑动。