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Standardization of a Continuous Assay for Glycosidases and Its Use for Screening Insect Gut Samples at Individual and Populational Levels

机译:糖苷酶连续测定的标准化及其在个体和群体水平上筛选昆虫肠道样品的用途

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摘要

Glycoside Hydrolases (GHs) are enzymes able to recognize and cleave glycosidic bonds. Insect GHs play decisive roles in digestion, in plant-herbivore, and host-pathogen interactions. GH activity is normally measured by the detection of a release from the substrate of products as sugars units, colored, or fluorescent groups. In most cases, the conditions for product release and detection differ, resulting in discontinuous assays. The current protocols result in using large amounts of reaction mixtures for the obtainment of time points in each experimental replica. These procedures restrain the analysis of biological materials with limited amounts of protein and, in the case of studies regarding small insects, implies in the pooling of samples from several individuals. In this respect, most studies do not assess the variability of GH activities across the population of individuals from the same species. The aim of this work is to approach this technical problem and have a deeper understanding of the variation of GH activities in insect populations, using as models the disease vectors Rhodnius prolixus (Hemiptera: Triatominae) and Lutzomyia longipalpis (Diptera: Phlebotominae). Here we standardized continuous assays using 4-methylumbelliferyl derived substrates for the detection of α-Glucosidase, β-Glucosidase, α-Mannosidase, N-acetyl-hexosaminidase, β-Galactosidase, and α-Fucosidase in the midgut of R. prolixus and L. longipalpis with results similar to the traditional discontinuous protocol. The continuous assays allowed us to measure GH activities using minimal sample amounts with a higher number of measurements, resulting in data that are more reliable and less time and reagent consumption. The continuous assay also allows the high-throughput screening of GH activities in small insect samples, which would be not applicable to the previous discontinuous protocol. We applied continuous GH measurements to 90 individual samples of R. prolixus anterior midgut homogenates using a high-throughput protocol. α-Glucosidase and α-Mannosidase activities showed the normal distribution in the population. β-Glucosidase, β-Galactosidase, N-acetyl-hexosaminidase, and α-Fucosidase activities showed non-normal distributions. These results indicate that GHs fluorescent-based high-throughput assays apply to insect samples and that the frequency distribution of digestive activities should be considered in data analysis, especially if a small number of samples is used.
机译:糖苷水解酶(GHs)是能够识别和切割糖苷键的酶。昆虫生长激素在消化,植物-草食动物和宿主-病原体的相互作用中起决定性作用。 GH活性通常通过检测从底物释放的糖单位,有色或荧光基团的释放来测量。在大多数情况下,产品释放和检测的条件会有所不同,从而导致分析不连续。当前方案导致使用大量反应混合物以获得每个实验复制品中的时间点。这些程序限制了蛋白质含量有限的生物材料的分析,并且在有关小昆虫的研究中,暗示了要收集来自多个个体的样品。在这方面,大多数研究没有评估来自同一物种的个体群体中GH活动的变异性。这项工作的目的是解决这一技术问题,并以疾病传播媒介罗氏罗得氏菌(Hemiptera:Triatominae)和长鳍金丝藻(Lutzomyia longipalpis)(Diptera:Phlebotominae)为模型,对昆虫种群中GH活性的变化有更深入的了解。在这里,我们标准化了使用4-甲基伞形酰衍生物衍生的底物进行连续检测的标准方法,用于检测螺旋藻和L中肠中的α-葡萄糖苷酶,β-葡萄糖苷酶,α-甘露糖苷酶,N-乙酰基己糖苷酶,β-半乳糖苷酶和α-岩藻糖苷酶。 。longipalpis的结果类似于传统的不连续协议。连续测定使我们能够以最少的样品量和更高的测量次数来测量GH活性,从而获得更可靠的数据,更少的时间和试剂消耗。连续测定还可以对小昆虫样品中的GH活性进行高通量筛选,这不适用于以前的不连续方案。我们使用高通量协议对90个单独的Pro.prolixus中肠匀浆样品进行了连续GH测量。 α-葡萄糖苷酶和α-甘露糖苷酶活性在人群中呈正态分布。 β-葡萄糖苷酶,β-半乳糖苷酶,N-乙酰基己糖胺酶和α-岩藻糖苷酶活性呈非正态分布。这些结果表明,基于GHs荧光的高通量分析适用于昆虫样品,并且在数据分析中应考虑消化活性的频率分布,尤其是在使用少量样品的情况下。

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