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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Inherited and acquired interactions between ACHE and PON1 polymorphisms modulate plasma acetylcholinesterase and paraoxonase activities.
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Inherited and acquired interactions between ACHE and PON1 polymorphisms modulate plasma acetylcholinesterase and paraoxonase activities.

机译:ACHE和PON1多态性之间的继承和获得的相互作用调节血浆乙酰胆碱酯酶和对氧磷酶的活性。

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摘要

Abstract The 5.5 Mb chromosome 7q21-22 ACHE/PON1 locus harbours the ACHE gene encoding the acetylcholine hydrolyzing, organophosphate (OP)-inhibitable acetylcholinesterase protein and the paraoxonase gene PON1, yielding the OP-hydrolyzing PON1 enzyme which also displays arylesterase activity. In search of inherited and acquired ACHE-PON1 interactions we genotyped seven polymorphic sites and determined the hydrolytic activities of the corresponding plasma enzymes and of the AChE-homologous butyrylcholinesetrase (BChE) in 157 healthy Israelis. AChE, arylesterase, BChE and paraoxonase activities in plasma displayed 5.4-, 6.5-, 7.2- and 15.5-fold variability, respectively, with genotype-specific differences between carriers of distinct compound polymorphisms. AChE, BChE and arylesterase but not paraoxonase activity increased with age, depending on leucine at PON1 position 55. In contrast, carriers of PON1 M55 displayed decreased arylesterase activity independent of the - 108 promoter polymorphism. Predicted structural consequences of the PON1 L55M substitution demonstrated spatial shifts in adjacent residues. Molecular modelling showed substrate interactions with the enzyme variants, explaining the changes in substrate specificity induced by the Q192R substitution. Intriguingly, PON1, but not BChE or arylesterase, activities displayed inverse association with AChE activity. Our findings demonstrate that polymorphism(s) in the adjacent PON1 and ACHE genes affect each other's expression, predicting for carriers of biochemically debilitating ACHE/PON1 polymorphisms adverse genome-environment interactions.
机译:摘要5.5 Mb染色体7q21-22 ACHE / PON1位点包含编码乙酰胆碱水解,可抑制有机磷酸酯(OP)的乙酰胆碱酯酶蛋白和对氧磷酶基因PON1的ACHE基因,产生还具有芳基酯酶活性的OP水解PON1酶。在遗传和获取的ACHE-PON1相互作用中,我们对七个多态性位点进行了基因分型,并确定了157名健康以色列人中相应血浆酶和AChE同源丁酰胆碱SETRase(BChE)的水解活性。血浆中的AChE,芳基酯酶,BChE和对氧磷酶活性分别表现出5.4倍,6.5倍,7.2倍和15.5倍的变异性,不同化合物多态性的载体之间的基因型特异性差异。随着年龄的增长,AChE,BChE和芳基酯酶的活性会随年龄的增长而增加,而对氧磷合酶的活性不会随年龄的增加而增加。相反,PON1 M55的携带者显示出芳基酯酶的活性降低,与-108启动子多态性无关。 PON1 L55M取代的预测结构后果表明相邻残基发生空间移位。分子建模显示了底物与酶变体的相互作用,解释了由Q192R取代引起的底物特异性的变化。有趣的是,PON1的活性与AChE的活性呈负相关,而与BChE或芳基酯酶无关。我们的发现表明,邻近的PON1和ACHE基因中的多态性会影响彼此的表达,预示着生物化学上会破坏ACHE / PON1多态性的载体会不利于基因组与环境的相互作用。

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