Adachi Shin-Ichi, Park Sam-Yong, Tame Jeremy R H, Shiro Yoshitsugu, Shibayama Naoya
RIKEN Harima Institute/SPring-8, 1-1-1 Kouto, Mikazuki, Sayo, Hyogo 679-5148, Japan.
Proc Natl Acad Sci U S A. 2003 Jun 10;100(12):7039-44. doi: 10.1073/pnas.1230629100. Epub 2003 May 28.
Human Hb, an alpha2beta2 tetrameric oxygen transport protein that switches from a T (tense) to an R (relaxed) quaternary structure during oxygenation, has long served as a model for studying protein allostery in general. Time-resolved spectroscopic measurements after photodissociation of CO-liganded Hb have played a central role in exploring both protein dynamical responses and molecular cooperativity, but the direct visualization and the structural consequences of photodeligation have not yet been reported. Here we present an x-ray study of structural changes induced by photodissociation of half-liganded T-state and fully liganded R-state human Hb at cryogenic temperatures (25-35 K). On photodissociation of CO, structural changes involving the heme and the F-helix are more marked in the alpha subunit than in the beta subunit, and more subtle in the R state than in the T state. Photodeligation causes a significant sliding motion of the T-state beta heme. Our results establish that the structural basis of the low affinity of the T state is radically different between the subunits, because of differences in the packing and chemical tension at the hemes.
人血红蛋白(Hb)是一种α2β2四聚体氧运输蛋白,在氧合过程中从T(紧张)态转变为R(松弛)态四级结构,长期以来一直是研究蛋白质别构作用的通用模型。CO配位的Hb光解离后的时间分辨光谱测量在探索蛋白质动力学响应和分子协同性方面发挥了核心作用,但光解离的直接可视化及其结构后果尚未见报道。在此,我们展示了在低温(25 - 35K)下对半配位T态和全配位R态人Hb光解离诱导的结构变化进行的X射线研究。CO光解离时,涉及血红素和F螺旋的结构变化在α亚基中比在β亚基中更显著,在R态中比在T态中更细微。光解离导致T态β血红素发生显著的滑动运动。我们的结果表明,由于血红素处堆积和化学张力的差异,T态低亲和力的结构基础在亚基之间存在根本差异。