Anderson N L
J Clin Invest. 1976 Nov;58(5):1107-9. doi: 10.1172/JCI108562.
The three-dimensional structure of fully reduced Hb St. Louis has been determined to 3.5 A resolution. The difference electron density map clearly shows the site of the mutation and the effects it produces. Glutamine B10 and histidine E7 (the distal histidine) swing towards each other and, between them, stabilize a water molecule in the normally hydrophobic heme pocket. This creation of an aqueous microenvironment near the heme accounts for the thermal instability, high rate of methemoglobin formation, and increased oxygen affinity observed in solution studies of the mutant as described in the preceeding paper. Other than a small increase in tilt of the heme, virtually no further stereochemical disturbances result.
已确定完全还原的圣路易斯血红蛋白的三维结构,分辨率为3.5埃。差分电子密度图清楚地显示了突变位点及其产生的影响。谷氨酰胺B10和组氨酸E7(远端组氨酸)相互靠近,它们之间稳定了正常情况下疏水性血红素口袋中的一个水分子。血红素附近水性微环境的形成解释了在前一篇论文中描述的该突变体溶液研究中观察到的热不稳定性、高铁血红蛋白形成率高以及氧亲和力增加的现象。除了血红素倾斜略有增加外,几乎没有进一步的立体化学干扰。