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Time-Resolved Fluorescence Studies of Heterotropic Ligand Binding to Cytochrome P450 3A4

机译:异向配体与细胞色素P450 3A4结合的时间分辨荧光研究

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摘要

Cytochrome P450 3A4 (CYP3A4) is a major enzymatic determinant of drug and xenobiotic metabolism that demonstrates remarkable substrate diversity and complex kinetic properties. The complex kinetics may result, in some cases, from multiple binding of ligands within the large active site or from an effector molecule acting at a distal allosteric site. Here, the fluorescent probe TNS (2-p-toluidinylnaphthalene-6-sulfonic acid) was characterized as an active site fluorescent ligand. UV-vis difference spectroscopy revealed a TNS-induced low-spin heme absorbance spectrum with an apparent K_d of 25.4+-2 mu M. Catalytic turnover using 7-benzyloxyquinoline (7-BQ) as a substrate demonstrated TNS-dependent inhibition with an IC_(50) of 9.9+-0.1 mu M. These results suggest that TNS binds in the CYP3A4 active site. The steady-state fluorescence of TNS increased upon binding to CYP3A4, and fluorescence titrations yielded a K_d of 22.8+-1 mu M. Time-resolved frequency-domain measurement of TNS fluorescence lifetimes indicates a testosterone (TST)-dependent decrease in the excited-state lifetime of TNS, concomitant with a decrease in the steady-state fluorescence intensity. In contrast, the substrate erythromycin (ERY) had no effect on TNS lifetime, while it decreased the steady-state fluorescence intensity. Together, the results suggest that TNS binds in the active site of CYP3A4, while the first equivalent of TST binds at a distant allosteric effector site. Furthermore, the results are the first to indicate that TST bound to the effector site can modulate the environment of the heterotropic ligand.
机译:细胞色素P450 3A4(CYP3A4)是药物和异种生物代谢的主要酶决定因素,其显示出显着的底物多样性和复杂的动力学特性。在某些情况下,复杂的动力学可能是由于大型活性位点内配体的多次结合或作用于远端变构位点的效应分子所致。在此,将荧光探针TNS(2-对甲苯基萘-6-磺酸)表征为活性部位荧光配体。紫外可见差光谱法显示TNS诱导的低自旋血红素吸收光谱,表观K_d为25.4 + -2μM。使用7-苄氧基喹啉(7-BQ)作为底物的催化周转率显示了TNS依赖性的IC_抑制作用。 (50)的9.9 + -0.1μM。这些结果表明TNS结合在CYP3A4活性位点中。与CYP3A4结合后,TNS的稳态荧光增加,并且荧光滴定的K_d为22.8 + -1μM.TNS荧光寿命的时间分辨频域测量表明,兴奋剂中睾丸酮(TST)依赖性下降寿命的TNS,伴随着稳态荧光强度的降低。相反,底物红霉素(ERY)对TNS的寿命没有影响,同时降低了稳态荧光强度。总之,结果表明TNS结合CYP3A4的活性位点,而TST的第一个等价物结合一个遥远的变构效应位点。此外,该结果是第一个表明结合到效应位点的TST可以调节多向异性配体的环境的结果。

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