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抑制参与昆虫蜕皮激素生物合成的谷胱甘肽转移酶 Noppera-bo 的化合物:新型昆虫生长调节剂。

Compounds Inhibiting Noppera-bo, a Glutathione -transferase Involved in Insect Ecdysteroid Biosynthesis: Novel Insect Growth Regulators.

机构信息

Degree Programs in Life and Earth Sciences, Graduate School of Science and Technology, University of Tsukuba, Tennodai 1-1-1, Tsukuba 305-8572, Ibaraki, Japan.

Life Science Center for Survival Dynamics, Tsukuba Advanced Research Alliance (TARA), University of Tsukuba, Tennodai 1-1-1, Tsukuba 305-8577, Ibaraki, Japan.

出版信息

Biomolecules. 2023 Mar 2;13(3):461. doi: 10.3390/biom13030461.

Abstract

Glutathione -transferases (GSTs) are conserved in a wide range of organisms, including insects. In 2014, an epsilon GST, known as Noppera-bo (Nobo), was shown to regulate the biosynthesis of ecdysteroid, the principal steroid hormone in insects. Studies on fruit flies, , and silkworms, , demonstrated that loss-of-function mutants of fail to synthesize ecdysteroid and die during development, consistent with the essential function of ecdysteroids in insect molting and metamorphosis. This genetic evidence suggests that chemical compounds that inhibit activity of Nobo could be insect growth regulators (IGRs) that kill insects by disrupting their molting and metamorphosis. In addition, because is conserved only in Diptera and Lepidoptera, a Nobo inhibitor could be used to target IGRs in a narrow spectrum of insect taxa. Dipterans include mosquitoes, some of which are vectors of diseases such as malaria and dengue fever. Given that mosquito control is essential to reduce mosquito-borne diseases, new IGRs that specifically kill mosquito vectors are always in demand. We have addressed this issue by identifying and characterizing several chemical compounds that inhibit Nobo protein in both and the yellow fever mosquito, . In this review, we summarize our findings from the search for Nobo inhibitors.

摘要

谷胱甘肽转移酶(GSTs)在广泛的生物中都有保守性,包括昆虫。2014 年,一种称为 Noppera-bo(Nobo)的 epsilon GST 被证明可以调节蜕皮甾酮的生物合成,蜕皮甾酮是昆虫中主要的类固醇激素。对果蝇、、和家蚕的研究表明,、的功能丧失突变体不能合成蜕皮甾酮,并且在发育过程中死亡,这与蜕皮甾酮在昆虫蜕皮和变态中的重要功能一致。这种遗传证据表明,抑制 Nobo 活性的化合物可能是昆虫生长调节剂(IGRs),通过破坏昆虫的蜕皮和变态来杀死昆虫。此外,由于 Nobo 仅在双翅目和鳞翅目昆虫中保守,Nobo 抑制剂可以用于针对特定昆虫类群的狭窄谱 IGRs。双翅目昆虫包括蚊子,其中一些是疟疾和登革热等疾病的传播媒介。鉴于蚊子控制对于减少蚊子传播的疾病至关重要,因此总是需要新的专门杀死蚊子传播媒介的 IGRs。我们通过鉴定和表征几种在和黄热病蚊子中都能抑制 Nobo 蛋白的化学化合物来解决了这个问题。在这篇综述中,我们总结了我们在寻找 Nobo 抑制剂方面的发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1069/10046418/6e0e9c64c77e/biomolecules-13-00461-g001.jpg

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