首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Purification and partial characterization of glutathione S-transferase from insecticide-resistant field populations of Liposcelis paeta Pearman (Psocoptera: Liposcelididae)
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Purification and partial characterization of glutathione S-transferase from insecticide-resistant field populations of Liposcelis paeta Pearman (Psocoptera: Liposcelididae)

机译:耐油性Liposcelis paeta Pearman(Psocoptera:Liposcelididae)田间种群中谷胱甘肽S-转移酶的纯化和部分表征

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Enzymes that possess glutathione S-transferase (GST) activity were purified to homogeneity by glutathione-agarose affinity chromatography from three field populations of Liposcelis paeta (Pearman). These populations were collected from Nanyang cityof Henan Province (NY), Wuzhou (WZ) and Hezhou (HZ) cities of Guangxi Province, China, and had different susceptibilities to dichlorvos [LC(50)s of the NY (281.48 mg/m(2)), the WZ (285.07 mg/m(2)), and the HZ (243.52 mg/m(2)), respectively]. The specificactivities of purified enzymes from these three populations increased 32.24-, 99.81-, and 42.52-fold, respectively. Kinetic analyses showed that the catalytic activity of purified GST from NY population towards GSH was much higher than the others, whileWZ population reached the highest in V(max) (CDNB). SDS-polyacrylamide electrophoresis revealed that the purified GST had two subunits with a molecular mass of 23.31 and 20.43 kDa for NY, 53.14 and 20.13 kDa for WZ, and 50.79 and 19.42 kDa for HZ, respectively. The in vitro inhibition studies of GSTs indicated that three kinds of insecticides (chlorpyrifos, carbosulfan, and cypermethrin) and five metallic ions (Zn(2+), Ba(2+), Ca(2+), Hg(2+), Mn(2+), and Mg(2+)) all possessed inhibitory effects on purified GST, and ethacrynic acid (EA, a specific inhibitor of GST) expressed inhibitory effects. In the bioassay, three populations of L. paeta had different susceptibilities to different insecticides, even after they were reared on diets consisting of 25%EA. The GST activities of L. paeta from different areas also showed different temperature and pH stabilities. The differences in GST among the three populations may be attributed partially to the differences in control practices for psocids between Henanand Guangxi Provinces. (c) 2009 Wiley Periodicals, Inc.
机译:通过谷胱甘肽-琼脂糖亲和色谱法从三个脂肪脂皮实蝇(Pearmanis paeta)(Pearman)种群中纯化具有谷胱甘肽S-转移酶(GST)活性的酶至同质。这些人群是从中国广西省河南省南阳市,梧州市和贺州市收集的,对敌敌畏[NY(LC.50)s(281.48 mg / m( 2)),WZ(285.07 mg / m(2))和HZ(243.52 mg / m(2))。来自这三个群体的纯化酶的特异性活性分别增加了32.24-,99.81-和42.52-倍。动力学分析表明,来自纽约种群的纯化GST对GSH的催化活性远高于其他种群,而WZ种群的V(max)(CDNB)达到最高。 SDS-聚丙烯酰胺电泳显示,纯化的GST具有两个亚基,其分子量分别对于NY为23.31和20.43 kDa,对于WZ为53.14和20.13 kDa,对于HZ为50.79和19.42 kDa。 GSTs的体外抑制研究表明,三种杀虫剂(毒死rif,硫丹和氯氰菊酯)和五个金属离子(Zn(2 +),Ba(2 +),Ca(2 +),Hg(2+), Mn(2+)和Mg(2+))对纯化的GST均具有抑制作用,而乙炔酸(EA,GST的特定抑制剂)则表现出抑制作用。在生物测定中,即使在按25%EA的饮食饲养后,三个种群的L.paeta对不同杀虫剂的敏感性也不同。来自不同地区的帕氏乳杆菌的GST活性也表现出不同的温度和pH稳定性。这三个人群之间商品及服务税的差异可能部分归因于河南和广西两省的介游者控制方法的差异。 (c)2009年Wiley Periodicals,Inc.

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