University "Miguel Hernandez", Institute of Bioengineering, Unit of Toxicology, Elche, Spain.
University "Miguel Hernandez", Institute of Bioengineering, Unit of Toxicology, Elche, Spain.
Toxicology. 2018 Dec 1;410:73-82. doi: 10.1016/j.tox.2018.08.018. Epub 2018 Aug 31.
Some effects of organophosphorus compounds (OPs) esters cannot be explained by action on currently recognized targets acetylcholinesterase or neuropathy target esterase (NTE). In previous studies, in membrane chicken brain fractions, four components (EPα, EPβ, EPγ and EPδ) of phenyl valerate esterase activity (PVase) had been kinetically discriminated combining data of several inhibitors (paraoxon, mipafox, PMSF). EPγ is belonging to NTE. The relationship of PVase components and acetylcholine-hydrolyzing activity (cholinesterase activity) is studied herein. Only EPα PVase activity showed inhibition in the presence of acetylthiocholine, similarly to a non-competitive model. EPα is highly sensitive to mipafox and paraoxon, but is resistant to PMSF, and is spontaneously reactivated when inhibited with paraoxon. In this papers we shows that cholinesterase activities showed inhibition kinetic by PV, which does not fit with a competitive inhibition model when tested for the same experimental conditions used to discriminate the PVase components. Four enzymatic components (CP1, CP2, CP3 and CP4) were discriminated in cholinesterase activity in the membrane fraction according to their sensitivity to irreversible inhibitors mipafox, paraoxon, PMSF and iso-OMPA. Components CP1 and CP2 could be related to EPα as they showed interactions between substrates and similar inhibitory kinetic properties to the tested inhibitors.
某些有机磷化合物 (OPs) 酯的作用无法用目前公认的靶标乙酰胆碱酯酶或神经毒性靶酯酶 (NTE) 来解释。在以前的研究中,在鸡脑膜部分,已经通过几种抑制剂(对氧磷、米帕肟、PMSF)的数据结合,对苯戊酸酯酶活性 (PVase) 的四个组分 (EPα、EPβ、EPγ 和 EPδ) 进行了动力学区分。EPγ 属于 NTE。本文研究了 PVase 组分与乙酰胆碱水解活性(胆碱酯酶活性)的关系。只有 EPα 的 PVase 活性在存在乙酰硫代胆碱时表现出抑制作用,类似于非竞争性模型。EPα 对米帕肟和对氧磷高度敏感,但对 PMSF 有抗性,并用对氧磷抑制时会自发重新激活。在本文中,我们表明 PV 对胆碱酯酶活性表现出抑制动力学,当在用于区分 PVase 组分的相同实验条件下测试时,这种抑制动力学不符合竞争性抑制模型。根据对不可逆抑制剂米帕肟、对氧磷、PMSF 和异-OMPA 的敏感性,在膜部分的胆碱酯酶活性中区分出了四个酶组分 (CP1、CP2、CP3 和 CP4)。CP1 和 CP2 两个组分可能与 EPα 有关,因为它们在底物相互作用和与测试抑制剂相似的抑制动力学特性方面表现出相互作用。