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Stereospecific hydrolysis of a phosphoramidate used as an OPIDP model by human sera with PON1 192 alloforms

机译:人血清与PON1 192同种异形体用作OPIDP模型的氨基磷酸酯的立体定向水解

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摘要

O-hexyl 2,5-dichlorophenyl phosphoramidate (HDCP) is a racemic organophosphate compound (OP) that induces delayed neuropathy in vivo. The O-hexyl 2,5-dichlorophenyl phosphoramidate R (R-HDCP) isomer inhibits and ages neuropathic target esterase (NTE) in hen brain. Moreover, human serum paraoxonase-1 (PON1) is a Ca2+-dependent enzyme capable of hydrolyzing OPs. The enzymatic activity of PON1 against OPs depends on the genetic polymorphisms present at position 192 (glutamine or arginine). The catalytic efficiency of PON1 is an important factor that determines neurotoxic susceptibility to some OPs. In the present study, we characterized the stereospecific hydrolysis of HDCP by alloforms PON1 Q192R human serum by chiral chromatography. Forty-seven human samples were characterized for the PON1 192 polymorphism. The hydrolysis data demonstrate that the three alloforms of PON1 show an exclusive and significant stereospecific Ca2+-dependent hydrolysis of O-hexyl 2,5-dichlorophenyl phosphoramidate S isomer (S-HDCP) at 19-127 A mu M at the concentrations that remain in all the samples. This stereoselective Ca2+-dependent hydrolysis of S-HDCP is inhibited by EDTA and is independent of the PON1 Q192R alloform. The present research reinforces the hypothesis that R-HDCP (an isomer that inhibits and causes NTE aging) is the enantiomer that induces delayed neuropathy by this chiral phosphoramidate due to the low hydrolysis level of the R-HDCP observed in this study.
机译:2,5-二氯苯基氨基磷酸O-己基酯(HDCP)是一种外消旋有机磷酸酯化合物(OP),可在体内引起延迟性神经病。 O-己基2,5-二氯苯基氨基磷酸酯R(R-HDCP)异构体可抑制母鸡大脑中的神经性目标酯酶(NTE)并使其老化。此外,人血清对氧磷酶-1(PON1)是一种能够水解OP的Ca2 +依赖性酶。 PON1对OP的酶活性取决于在192位(谷氨酰胺或精氨酸)存在的遗传多态性。 PON1的催化效率是决定某些OP对神经毒性敏感性的重要因素。在本研究中,我们通过手性色谱法表征了同种型PON1 Q192R人血清HDCP的立体定向水解。表征了47个人类样品的PON1 192多态性。水解数据表明,PON1的三种同种异形体在19-127 AμM的浓度下仍保留19-127 AμM的O-己基2,5-二氯苯基氨基磷酸酯S异构体(S-HDCP)的排他性和显着的立体定向Ca2 +依赖性水解。所有样本。 EDTA抑制S-HDCP的这种立体选择性的Ca2 +依赖性水解,并且不依赖于PON1 Q192R同种异形。本研究强化了以下假设:R-HDCP(一种抑制并导致NTE衰老的异构体)是对映异构体,由于该研究中观察到的R-HDCP水解水平低,该对映体可通过该手性氨基磷酸酯诱导延迟性神经病。

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