Cheng Dongmei, Harris Danni, Reed James R, Backes Wayne L
Department of Pharmacology and Experimental Therapeutics, The Stanley S. Scott Cancer Center, Louisiana State University Health Sciences Center, 533 Bolivar Street, New Orleans, LA 70112, USA.
Arch Biochem Biophys. 2007 Dec 15;468(2):174-82. doi: 10.1016/j.abb.2007.07.032. Epub 2007 Oct 4.
2-ethynylnaphthalene (2EN) is an effective mechanism-based inhibitor of CYP2B4. There are two inhibitory components: (1) irreversible inactivation of CYP2B4 (a typical time-dependent inactivation), and (2) a reversible component. The reversible component was unusual in that the degree of inhibition was not simply a characteristic of the enzyme-inhibitor interaction, but dependent on the size of the substrate molecule used to monitor residual activity. The effect of 2EN on the metabolism of seven CYP2B4 substrates showed that it was not an effective reversible inhibitor of substrates containing a single aromatic ring; substrates with two fused rings were competitively inhibited by 2EN; and larger substrates were non-competitively inhibited. Energy-based docking studies demonstrated that, with increasing substrate size, the energy of 2EN and substrate co-binding in the active site became unfavorable precisely at the point where 2EN became a competitive inhibitor. Hierarchical docking revealed potential allosteric inhibition sites separate from the substrate binding site.
2-乙炔基萘(2EN)是一种基于机制的有效CYP2B4抑制剂。它有两种抑制成分:(1)CYP2B4的不可逆失活(典型的时间依赖性失活),以及(2)可逆成分。可逆成分的不同寻常之处在于,抑制程度并非仅仅是酶-抑制剂相互作用的特征,而是取决于用于监测残余活性的底物分子的大小。2EN对七种CYP2B4底物代谢的影响表明,它对含有单个芳香环的底物不是有效的可逆抑制剂;具有两个稠合环的底物受到2EN的竞争性抑制;而较大的底物受到非竞争性抑制。基于能量的对接研究表明,随着底物尺寸的增加,2EN与底物在活性位点共结合的能量恰好在2EN成为竞争性抑制剂的点变得不利。分层对接揭示了与底物结合位点分开的潜在变构抑制位点。