Shah Manish B, Jang Hyun-Hee, Wilderman P Ross, Lee David, Li Sheng, Zhang Qinghai, Stout C David, Halpert James R
School of Pharmacy, University of Connecticut, Storrs, CT 06269, United States.
School of Biological Sciences and Technology, Chonnam National University, Gwangju 500-757, Republic of Korea.
Biophys Chem. 2016 Sep;216:1-8. doi: 10.1016/j.bpc.2016.05.007. Epub 2016 Jun 1.
Multiple crystal structures of CYP2B4 have demonstrated the binding of the detergent 5-cyclohexyl-1-pentyl-β-D-maltoside (CYMAL-5) in a peripheral pocket located adjacent to the active site. To explore the consequences of detergent binding, X-ray crystal structures of the peripheral pocket mutant CYP2B4 F202W were solved in the presence of hexaethylene glycol monooctyl ether (C8E6) and CYMAL-5. The structure in the presence of CYMAL-5 illustrated a closed conformation indistinguishable from the previously solved wild-type. In contrast, the F202W structure in the presence of C8E6 revealed a detergent molecule that coordinated the heme-iron and extended to the protein surface through the substrate access channel 2f. Despite the overall structural similarity of these detergent complexes, remarkable differences were observed in the A, A', and H helices, the F-G cassette, the C-D and β4 loop region. Hydrogen-deuterium exchange mass spectrometry (DXMS) was employed to probe these differences and to test the effect of detergents in solution. The presence of either detergent increased the H/D exchange rate across the plastic regions, and the results obtained by DXMS in solution were consistent in general with the relevant structural snapshots. The study provides insight into effect of detergent binding and the interpretation of associated conformational dynamics of CYP2B4.
CYP2B4的多个晶体结构已证明去污剂5-环己基-1-戊基-β-D-麦芽糖苷(CYMAL-5)在位于活性位点附近的外周口袋中的结合。为了探究去污剂结合的后果,在六甘醇单辛醚(C8E6)和CYMAL-5存在的情况下解析了外周口袋突变体CYP2B4 F202W的X射线晶体结构。CYMAL-5存在时的结构呈现出一种与先前解析的野生型无法区分的封闭构象。相比之下,C8E6存在时的F202W结构显示出一个去污剂分子,它与血红素铁配位并通过底物进入通道2f延伸至蛋白质表面。尽管这些去污剂复合物的整体结构相似,但在A、A'和H螺旋、F-G结构域、C-D和β4环区域观察到了显著差异。采用氢-氘交换质谱(DXMS)来探究这些差异并测试溶液中去污剂的作用。任何一种去污剂的存在都会提高整个可塑性区域的氢/氘交换率,并且DXMS在溶液中获得的结果总体上与相关的结构快照一致。该研究深入了解了去污剂结合的作用以及CYP2B4相关构象动力学的解释。