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Biochemical characterization of chitin synthase activity and inhibition in the African malaria mosquito Anopheles gambiae

机译:胰蛋白酶蚊虫菌anopheles冈比亚的生物化学鉴定和抑制作用

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摘要

Chitin synthase (CHS) is an important enzyme catalyzing the formation of chitin polymers in all chitin containing organisms and a potential target site for insect pest control. However, our understanding of biochemical properties of insect chitin synthases has been very limited. We here report enzymatic and inhibitory properties of chitin synthase prepared from the African malaria mosquito, Anopheles gambiae. Our study, which represents the first time to use a nonradioactive method to assay chitin synthase activity in an insect species, determined the optimal conditions for measuring the enzyme activity, including pH, temperature, and concentrations of the substrate UDP–N-acetyl-D-glucosamine (GlcNAc) and Mg++. The optimal pH was about 6.5–7.0, and the highest activity was detected at temperatures between 37 and 44°C. Dithithreitol is required to prevent melanization of the enzyme extract. CHS activity was enhanced at low concentration of GlcNAc, but inhibited at high concentrations. Proteolytic activation of the activity is significant both in the 500×g supernatant and the 40,000×g pellet. Our study revealed only slight in vitro inhibition of An. gambiae CHS activity by diflubenzuron and nikkomycin Z at the highest concentration (2.5 μmol/L) examined. There was no in vitro inhibition by polyoxin D at any concentration examined. Furthermore, we did not observe any in vivo inhibition of chitin synthase activity by any of these chemicals at any concentration examined. Our results suggest that the inhibition of chitin synthesis by these chemicals is not due to direct inhibition of chitin synthase in An. gambiae.
机译:几丁质合酶(CHS)是一种重要的酶,可催化所有含几丁质的生物体中几丁质聚合物的形成,并且是潜在的害虫防治目标。但是,我们对昆虫几丁质合酶生化特性的了解非常有限。我们在这里报告了从非洲疟疾蚊子冈比亚按蚊制备的几丁质合酶的酶促和抑制特性。我们的研究代表了首次使用非放射性方法测定昆虫物种中的几丁质合酶活性,确定了测定酶活性的最佳条件,包括pH,温度和底物UDP-N-乙酰基-D的浓度-葡萄糖胺(GlcNAc)和Mg ++ 。最佳pH值约为6.5-7.0,在37至44°C的温度下检测到最高的活性。需要二苏糖醇来防止酶提取物的黑色素化。 CHS活性在低浓度的GlcNAc时增强,但在高浓度时被抑制。蛋白水解激活的活性在500×g上清液和40,000×g沉淀物中均很明显。我们的研究表明对An的体外抑制作用很小。在最大浓度(2.5μmol/ L)下,双氟苯隆和尼克霉素Z对冈比亚CHS活性的影响。在任何浓度下都没有多氧合酶D的体外抑制作用。此外,我们没有观察到任何浓度的这些化学物质对甲壳素合酶活性的任何体内抑制作用。我们的结果表明,这些化学物质对几丁质合成的抑制不是由于直接抑制An中的几丁质合酶。冈比亚

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