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首页> 外文期刊>Applied biochemistry and microbiology >Signal interference effect of human paraoxonase 1 using as substrates N-hexanoyl-L-homoserine lactone and N-3-oxo-octanoyl-L-homoserine lactone on growth of pathogenic bacteria
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Signal interference effect of human paraoxonase 1 using as substrates N-hexanoyl-L-homoserine lactone and N-3-oxo-octanoyl-L-homoserine lactone on growth of pathogenic bacteria

机译:N-己酰基-L-高丝氨酸内酯和N-3-氧代辛酰基-L-高丝氨酸内酯作为底物的人对氧磷酶1的信号干扰效应

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摘要

Paraoxonase 1 (PON1) is human lactonase orginally described as enzyme that is capable of hydrolyzing organophosphates. The hypothesis suggested that this enzyme may also participate in attenuation of bacterial virulence through interfering with quorum sensing (QS). Recently, PON1 was shown to hydrolyze over 30 lactones. In the present study, human PON1 (hPON1) was purified using ammonium sulphate precipitation and Sepharose-4B-L-tyrosine-1-naphthylamine hydrophobic interaction chromatography. The purified enzyme had a specific activity of 11.89 U/mg protein and catalyzed the hydrolysis of N-hexanoyl-L-homoserine lactone (C10HSL) and N-3-oxo-octanoyl-L-homoserine lactone (3OC8HSL). The hydrolysis reaction was analyzed with HPLC. The K (M) values for hPON1 using 3OC8HSL or C10HSL as subtrate were calculated as 2.71 and 0.80 mM and V (max) values were detected as 1428.57 and 45.24 A mu moles mg(-1) min(-1), respectively. Also, effect of hPON1 on growth of pathogenic bacterial strains using the signal lactone molecules was investigated by microtiter plate assay. Our results demonstrated that hPON1 was responsible for inhibition of QS system by hydrolyzing of signal molecules and effecting bacterial growth.
机译:对氧磷酶1(PON1)是人类的内酯酶,最初被描述为能够水解有机磷酸盐的酶。假设表明,该酶还可能通过干扰群体感应(QS)来参与细菌毒力的减弱。最近,PON1被证明可以水解30多种内酯。在本研究中,使用硫酸铵沉淀和Sepharose-4B-L-酪氨酸-1-萘胺疏水相互作用色谱法纯化人PON1(hPON1)。纯化的酶具有11.89 U / mg蛋白的比活,并催化N-己酰基-L-高丝氨酸内酯(C10HSL)和N-3-氧代辛酰基-L-高丝氨酸内酯(3OC8HSL)的水解。用HPLC分析水解反应。使用3OC8HSL或C10HSL作为底物的hPON1的K(M)值计算为2.71和0.80 mM,检测到的V(max)值为1428.57和45.24 A摩尔摩尔mg(-1)min(-1)。另外,通过微量滴定板分析研究了hPON1对使用信号内酯分子的致病细菌菌株生长的影响。我们的结果表明,hPON1通过水解信号分子和影响细菌生长来抑制QS系统。

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