Adeline E. Williams , Apostolos G. Gittis , Karina Botello , Phillip Cruz , Ines Martin-Martin , Paola Carolina Valenzuela Leon , Benjamin Sumner , Brian Bonilla , Eric Calvo
{"title":"埃及伊蚊、冈比亚按蚊和库蚊唾液α-葡糖苷酶的结构和功能比较","authors":"Adeline E. Williams , Apostolos G. Gittis , Karina Botello , Phillip Cruz , Ines Martin-Martin , Paola Carolina Valenzuela Leon , Benjamin Sumner , Brian Bonilla , Eric Calvo","doi":"10.1016/j.ibmb.2024.104097","DOIUrl":null,"url":null,"abstract":"<div><p>Mosquito vectors of medical importance both blood and sugar feed, and their saliva contains bioactive molecules that aid in both processes. Although it has been shown that the salivary glands of several mosquito species exhibit α-glucosidase activities, the specific enzymes responsible for sugar digestion remain understudied. We therefore expressed and purified three recombinant salivary α-glucosidases from the mosquito vectors <em>Aedes aegypti</em>, <em>Anopheles gambiae</em>, and <em>Culex quinquefasciatus</em> and compared their functions and structures. We found that all three enzymes were expressed in the salivary glands of their respective vectors and were secreted into the saliva. The proteins, as well as mosquito salivary gland extracts, exhibited α-glucosidase activity, and the recombinant enzymes displayed preference for sucrose compared to <em>p</em>-nitrophenyl-α-D-glucopyranoside. Finally, we solved the crystal structure of the <em>Ae. aegypti</em> α-glucosidase bound to two calcium ions at a 2.3 Ångstrom resolution. Molecular docking suggested that the <em>Ae. aegypti</em> α-glucosidase preferred di- or polysaccharides compared to monosaccharides, consistent with enzymatic activity assays. Comparing structural models between the three species revealed a high degree of similarity, suggesting similar functional properties. We conclude that the α-glucosidases studied herein are important enzymes for sugar digestion in three mosquito species.</p></div>","PeriodicalId":330,"journal":{"name":"Insect Biochemistry and Molecular Biology","volume":"167 ","pages":"Article 104097"},"PeriodicalIF":3.2000,"publicationDate":"2024-02-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S0965174824000286/pdfft?md5=103b34966f473da96c8e7e414d3ea260&pid=1-s2.0-S0965174824000286-main.pdf","citationCount":"0","resultStr":"{\"title\":\"Structural and functional comparisons of salivary α-glucosidases from the mosquito vectors Aedes aegypti, Anopheles gambiae, and Culex quinquefasciatus\",\"authors\":\"Adeline E. Williams , Apostolos G. Gittis , Karina Botello , Phillip Cruz , Ines Martin-Martin , Paola Carolina Valenzuela Leon , Benjamin Sumner , Brian Bonilla , Eric Calvo\",\"doi\":\"10.1016/j.ibmb.2024.104097\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Mosquito vectors of medical importance both blood and sugar feed, and their saliva contains bioactive molecules that aid in both processes. Although it has been shown that the salivary glands of several mosquito species exhibit α-glucosidase activities, the specific enzymes responsible for sugar digestion remain understudied. We therefore expressed and purified three recombinant salivary α-glucosidases from the mosquito vectors <em>Aedes aegypti</em>, <em>Anopheles gambiae</em>, and <em>Culex quinquefasciatus</em> and compared their functions and structures. We found that all three enzymes were expressed in the salivary glands of their respective vectors and were secreted into the saliva. The proteins, as well as mosquito salivary gland extracts, exhibited α-glucosidase activity, and the recombinant enzymes displayed preference for sucrose compared to <em>p</em>-nitrophenyl-α-D-glucopyranoside. Finally, we solved the crystal structure of the <em>Ae. aegypti</em> α-glucosidase bound to two calcium ions at a 2.3 Ångstrom resolution. Molecular docking suggested that the <em>Ae. aegypti</em> α-glucosidase preferred di- or polysaccharides compared to monosaccharides, consistent with enzymatic activity assays. Comparing structural models between the three species revealed a high degree of similarity, suggesting similar functional properties. 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Structural and functional comparisons of salivary α-glucosidases from the mosquito vectors Aedes aegypti, Anopheles gambiae, and Culex quinquefasciatus
Mosquito vectors of medical importance both blood and sugar feed, and their saliva contains bioactive molecules that aid in both processes. Although it has been shown that the salivary glands of several mosquito species exhibit α-glucosidase activities, the specific enzymes responsible for sugar digestion remain understudied. We therefore expressed and purified three recombinant salivary α-glucosidases from the mosquito vectors Aedes aegypti, Anopheles gambiae, and Culex quinquefasciatus and compared their functions and structures. We found that all three enzymes were expressed in the salivary glands of their respective vectors and were secreted into the saliva. The proteins, as well as mosquito salivary gland extracts, exhibited α-glucosidase activity, and the recombinant enzymes displayed preference for sucrose compared to p-nitrophenyl-α-D-glucopyranoside. Finally, we solved the crystal structure of the Ae. aegypti α-glucosidase bound to two calcium ions at a 2.3 Ångstrom resolution. Molecular docking suggested that the Ae. aegypti α-glucosidase preferred di- or polysaccharides compared to monosaccharides, consistent with enzymatic activity assays. Comparing structural models between the three species revealed a high degree of similarity, suggesting similar functional properties. We conclude that the α-glucosidases studied herein are important enzymes for sugar digestion in three mosquito species.
期刊介绍:
This international journal publishes original contributions and mini-reviews in the fields of insect biochemistry and insect molecular biology. Main areas of interest are neurochemistry, hormone and pheromone biochemistry, enzymes and metabolism, hormone action and gene regulation, gene characterization and structure, pharmacology, immunology and cell and tissue culture. Papers on the biochemistry and molecular biology of other groups of arthropods are published if of general interest to the readership. Technique papers will be considered for publication if they significantly advance the field of insect biochemistry and molecular biology in the opinion of the Editors and Editorial Board.