首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >In silico and bio assay of juvenile hormone analogs as an insect growth regulator against Galleria mellonella (wax moth) - Part I
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In silico and bio assay of juvenile hormone analogs as an insect growth regulator against Galleria mellonella (wax moth) - Part I

机译:在计算机上进行的少年激素类似物作为昆虫生长调节剂的研究和研究,该昆虫生长调节剂可对抗梅花蛾(蜡蛾)-第一部分

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摘要

Juvenile hormone (JH) analogs are nowadays in use to control harmful pests. In order to develop new bioactive molecules as potential pesticides, we have incorporated different active structural features like sulfonamide, aromatic rings, amide group, and amino acid moiety to the base structure. We have screened a series of designed novel JH analogs against JH receptor protein (jhbpGm-2RCK) of Galleria mellonella in comparison to commercial insect growth regulators (IGRs) - Pyriproxyfen (T-1) and Fenoxycarb (T-2). All analogs exhibit the binding energy profile comparable to commercial IGRs. Based upon these results, a series of sulfonamide-based JHAs (T-3-T-8) as IGRs have been synthesized and characterized. Further, the efficacy of synthesized analogs (T-3-T-8) and commercial IGRs (Pyriproxyfen and Fenoxycarb) has been assessed against fourth instars larvae of G. mellonella under the laboratory conditions. LC50 values of all the analogs (T-1-T-8) against the fourth instars larvae were 9.99, 10.12, 24.76, 30.73, 38.45, 34.15, 34.14, 19.48 ppm and the LC90 153.27, 131.69, 112.15, 191.46, 427.02, 167.13, 217.10, 172.00 ppm, respectively. Among these analogs, N-(1-isopropyl-2-oxo-3-aza-3-N-ethyl-pentanyl)-p-toluene sulfonamide (T-8) and N-(1-isopropyl-2-oxo-3-aza-3-N-ethyl-pentanyl) benzene sulfonamide (T-7) exhibited the good pest larval mortality at different exposure periods (in hours) and different concentrations (in ppm) in comparison to in use IGRs- T-1 and T-2. Bio assay results are supported by docking at higher concentration. The present investigation clearly exhibits that analog T-8 could serve as a potential IGR in comparison to in use IGRs (T-1 and T-2). The results are promising and provide new array of synthetic chemicals that may be utilized as IGRs.
机译:如今,少年激素(JH)类似物可用于控制有害生物。为了开发新的生物活性分子作为潜在的农药,我们将不同的活性结构特征(如磺酰胺,芳环,酰胺基和氨基酸部分)纳入了基本结构。与商业昆虫生长调节剂(IGR)-吡rip氧基(T-1)和苯氧威(T-2)相比,我们已经筛选了一系列针对新颖的Galleria mellonella JH受体蛋白(jhbpGm-2RCK)设计的JH类似物。所有类似物均表现出与商业IGR相当的结合能谱。基于这些结果,已合成并表征了一系列基于磺酰胺的JHA(T-3-T-8)作为IGR。此外,在实验室条件下,已经评估了合成类似物(T-3-T-8)和商业IGRs(吡oxy氧基芬和苯氧威)的功效,以对抗梅毒线虫的四龄幼虫。所有类似物(T-1-T-8)对第四龄幼虫的LC50值分别为9.99、10.12、24.76、30.73、38.45、34.15、34.14、19.48 ppm和LC90 153.27、131.69、112.15、191.46、427.02,分别为167.13、217.10和172.00 ppm。在这些类似物中,N-(1-异丙基-2-氧代-3-氮杂-3-N-乙基戊戊基)-对甲苯磺酰胺(T-8)和N-(1-异丙基-2-氧代-3与使用中的IGRs-T-1和IGRs-T-1和-Aza-3-N-乙基-戊基)苯磺酰胺(T-7)在不同的暴露时间(小时)和不同的浓度(ppm)下,均具有良好的害虫幼虫死亡率。 T-2。更高浓度的对接可支持生物测定结果。本研究清楚地表明,与使用中的IGR(T-1和T-2)相比,类似物T-8可以作为潜在的IGR。结果令人鼓舞,并提供了可用作IGR的新型合成化学物质。

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