Briana E. Price, Hyo Sang Jang, Ryssa K. Parks, Man-Yeon Choi
{"title":"CAPA受体在苏氏果蝇消化道和各生命阶段的功能表达和特征,以及与昆虫PRXamide肽的不同活性。","authors":"Briana E. Price, Hyo Sang Jang, Ryssa K. Parks, Man-Yeon Choi","doi":"10.1002/arch.22080","DOIUrl":null,"url":null,"abstract":"<p>Spotted-wing drosophila, <i>Drosophila suzukii</i> (Matsumura), is an invasive vinegar fly that is a major threat to the small fruits industries globally. Insect <i>capa</i> genes encode multiple neuropeptides, including CAPA-periviscerokinin (CAPA-PVK) peptides, that are specifically known to cause diuresis or anti-diuresis in various organisms. Here we identified and characterized a corresponding G protein-coupled receptor (GPCR) of the <i>D. suzukii</i> CAPA-PVK peptides: CAPA receptor (CAPA-R). To better characterize the behavior of <i>D. suzukii</i> CAPA-R, we used insect cell-based functional expression assays to evaluate responses of CAPA-R against <i>D. suzukii</i> CAPA-PVKs, CAPA-PVKs from five species in Insecta, one species from Mollusca, modified CAPA-PVK peptides, and some PRXamide family peptides: pyrokinin (PK), diapause hormone (DH), and ecdysis-triggering hormone (ETH). Functional studies revealed that the <i>D. suzukii</i> CAPA-R is strongly activated by both of its own natural <i>D. suzukii</i> CAPA-PVKs, and interestingly, it was strongly activated by other CAPA-PVK peptides from <i>Frankliniella occidentallis</i> (Thysanoptera), <i>Solenopsis invicta</i> (Hymenoptera), <i>Helicoverpa zea</i> (Lepidoptera) and <i>Plutella xylostella</i> (Lepidoptera). However, <i>D. suzukii</i> CAPA-R was not activated by Mollusca CAPA-PVK or the other PRXamide peptides. Gene expression analyses showed that the CAPA-R was highly expressed in the Malpighian tubules and moderately in hindgut compared to other digestive organs or the rest of body, supporting diuretic/antidiuretic functionality. When compared across life stages of <i>D. suzukii</i>, expression of CAPA-R was approximately 1.5x greater in the third instar than the other stages and minimally detected in the eggs, 4-day old pupae and 3-day old adults. Our results functionally characterized the <i>D. suzukii</i> CAPA-R and a few short peptides were identified as potential biological targets to exploit the CAPA-R for <i>D. suzukii</i> management.</p>","PeriodicalId":8281,"journal":{"name":"Archives of Insect Biochemistry and Physiology","volume":"116 4","pages":""},"PeriodicalIF":1.5000,"publicationDate":"2024-08-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Functional expression and characterization of CAPA receptor in the digestive tract and life stages of Drosophila suzukii, and differential activities with insect PRXamide peptides\",\"authors\":\"Briana E. Price, Hyo Sang Jang, Ryssa K. Parks, Man-Yeon Choi\",\"doi\":\"10.1002/arch.22080\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Spotted-wing drosophila, <i>Drosophila suzukii</i> (Matsumura), is an invasive vinegar fly that is a major threat to the small fruits industries globally. Insect <i>capa</i> genes encode multiple neuropeptides, including CAPA-periviscerokinin (CAPA-PVK) peptides, that are specifically known to cause diuresis or anti-diuresis in various organisms. Here we identified and characterized a corresponding G protein-coupled receptor (GPCR) of the <i>D. suzukii</i> CAPA-PVK peptides: CAPA receptor (CAPA-R). To better characterize the behavior of <i>D. suzukii</i> CAPA-R, we used insect cell-based functional expression assays to evaluate responses of CAPA-R against <i>D. suzukii</i> CAPA-PVKs, CAPA-PVKs from five species in Insecta, one species from Mollusca, modified CAPA-PVK peptides, and some PRXamide family peptides: pyrokinin (PK), diapause hormone (DH), and ecdysis-triggering hormone (ETH). Functional studies revealed that the <i>D. suzukii</i> CAPA-R is strongly activated by both of its own natural <i>D. suzukii</i> CAPA-PVKs, and interestingly, it was strongly activated by other CAPA-PVK peptides from <i>Frankliniella occidentallis</i> (Thysanoptera), <i>Solenopsis invicta</i> (Hymenoptera), <i>Helicoverpa zea</i> (Lepidoptera) and <i>Plutella xylostella</i> (Lepidoptera). However, <i>D. suzukii</i> CAPA-R was not activated by Mollusca CAPA-PVK or the other PRXamide peptides. Gene expression analyses showed that the CAPA-R was highly expressed in the Malpighian tubules and moderately in hindgut compared to other digestive organs or the rest of body, supporting diuretic/antidiuretic functionality. When compared across life stages of <i>D. suzukii</i>, expression of CAPA-R was approximately 1.5x greater in the third instar than the other stages and minimally detected in the eggs, 4-day old pupae and 3-day old adults. 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Functional expression and characterization of CAPA receptor in the digestive tract and life stages of Drosophila suzukii, and differential activities with insect PRXamide peptides
Spotted-wing drosophila, Drosophila suzukii (Matsumura), is an invasive vinegar fly that is a major threat to the small fruits industries globally. Insect capa genes encode multiple neuropeptides, including CAPA-periviscerokinin (CAPA-PVK) peptides, that are specifically known to cause diuresis or anti-diuresis in various organisms. Here we identified and characterized a corresponding G protein-coupled receptor (GPCR) of the D. suzukii CAPA-PVK peptides: CAPA receptor (CAPA-R). To better characterize the behavior of D. suzukii CAPA-R, we used insect cell-based functional expression assays to evaluate responses of CAPA-R against D. suzukii CAPA-PVKs, CAPA-PVKs from five species in Insecta, one species from Mollusca, modified CAPA-PVK peptides, and some PRXamide family peptides: pyrokinin (PK), diapause hormone (DH), and ecdysis-triggering hormone (ETH). Functional studies revealed that the D. suzukii CAPA-R is strongly activated by both of its own natural D. suzukii CAPA-PVKs, and interestingly, it was strongly activated by other CAPA-PVK peptides from Frankliniella occidentallis (Thysanoptera), Solenopsis invicta (Hymenoptera), Helicoverpa zea (Lepidoptera) and Plutella xylostella (Lepidoptera). However, D. suzukii CAPA-R was not activated by Mollusca CAPA-PVK or the other PRXamide peptides. Gene expression analyses showed that the CAPA-R was highly expressed in the Malpighian tubules and moderately in hindgut compared to other digestive organs or the rest of body, supporting diuretic/antidiuretic functionality. When compared across life stages of D. suzukii, expression of CAPA-R was approximately 1.5x greater in the third instar than the other stages and minimally detected in the eggs, 4-day old pupae and 3-day old adults. Our results functionally characterized the D. suzukii CAPA-R and a few short peptides were identified as potential biological targets to exploit the CAPA-R for D. suzukii management.
期刊介绍:
Archives of Insect Biochemistry and Physiology is an international journal that publishes articles in English that are of interest to insect biochemists and physiologists. Generally these articles will be in, or related to, one of the following subject areas: Behavior, Bioinformatics, Carbohydrates, Cell Line Development, Cell Signalling, Development, Drug Discovery, Endocrinology, Enzymes, Lipids, Molecular Biology, Neurobiology, Nucleic Acids, Nutrition, Peptides, Pharmacology, Pollinators, Proteins, Toxicology. Archives will publish only original articles. Articles that are confirmatory in nature or deal with analytical methods previously described will not be accepted.