• Skip to primary navigation
  • Skip to main content
  • Skip to footer
  • Biblioteca
  • Museu
  • Pessoal
    • Webmail
    • Área de Docentes
    • Área de Não-Docentes
  • Estudantes
    • Webmail
    • Moodle
    • NetP@
    • Escola Doutoral
    • Serviços Académicos
    • Trabalhar no IHMT
  • O Instituto
    • Missão
    • Mensagem do Diretor
    • Órgãos de governo
    • Docentes e investigadores
    • Portal de Denúncias UNL
  • Ensino
    • Mestrados
    • Doutoramentos
    • Cursos de Especialização
    • Formação transversal
    • Cursos de Curta Duração
    • Ensino à Distância
    • Apoio ao Desenvolvimento
    • Serviços académicos
    • NOVA Open Academy
  • Investigação
    • Centro GHTM
    • Unidades de Ensino e de Investigação (UEI)
      • Unidade de Clínica Tropical
      • Unidade de Microbiologia Médica
      • Unidade de Parasitologia Médica
      • Unidade de Saúde Pública Global
      • Serviço de Apoio à Ciência e Comunidade
    • Biobanco
    • BLOODless
    • Centro Colaborador OMS
    • Publicações
  • Serviços e gestão
    • Biblioteca
    • Sistema de Qualidade
    • Estatutos e regulamentos
    • Plano de Atividades
    • Relatório de Atividades
    • Relatório de Gestão
    • Contratos públicos
    • Recursos humanos
      • Concursos e bolsas
        • Concursos – Docentes e Investigadores
        • Concursos – Não Docentes e Não Investigadores
        • Bolsas de Investigação
      • Contratos
      • Avaliação de Desempenho
        • Ciclo Avaliativo
          • Biénio 2021-2022
          • Biénio 2023-2024
        • Conselho Coordenador de Avaliação
        • Comissão Paritária
      • Mobilidade
      • Listas Nominativas
  • Doenças Tropicais
    • Consulta do Viajante
    • Dossiês Informativos
    • Glossário
    • Museu
    • Vídeos
    • MosquitoWeb
  • Comunidade
    • Cooperação e Desenvolvimento
    • Formação
    • Parcerias
  • Contactos
  • Candidaturas
  • pt
    • pt
    • en

IHMT

Instituto de Higiene e Medicina Tropical

Home / Publicações / Unravelling the Evolution of the Allatostatin-Type A, KISS and Galanin Peptide-Receptor Gene Families in Bilaterians: Insights from Anopheles Mosquitoes

Unravelling the Evolution of the Allatostatin-Type A, KISS and Galanin Peptide-Receptor Gene Families in Bilaterians: Insights from Anopheles Mosquitoes

  • Autores: Cardoso JCR, Felix RC, Fonseca VG, Martins RS, Pires IRP, Power DM, Silveira H, Trindade M
  • Ano de Publicação: 2015
  • Journal: PLoS One
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/26135459

Allatostatin type A receptors (AST-ARs) are a group of G-protein coupled receptors activated by members of the FGL-amide (AST-A) peptide family that inhibit food intake and development in arthropods. Despite their physiological importance the evolution of the AST-A system is poorly described and relatively few receptors have been isolated and functionally characterised in insects. The present study provides a comprehensive analysis of the origin and comparative evolution of the AST-A system. To determine how evolution and feeding modified the function of AST-AR the duplicate receptors in Anopheles mosquitoes, were characterised. Phylogeny and gene synteny suggested that invertebrate AST-A receptors and peptide genes shared a common evolutionary origin with KISS/GAL receptors and ligands. AST-ARs and KISSR emerged from a common gene ancestor after the divergence of GALRs in the bilaterian genome. In arthropods, the AST-A system evolved through lineage-specific events and the maintenance of two receptors in the flies and mosquitoes (Diptera) was the result of a gene duplication event. Speciation of Anopheles mosquitoes affected receptor gene organisation and characterisation of AST-AR duplicates (GPRALS1 and 2) revealed that in common with other insects, the mosquito receptors were activated by insect AST-A peptides and the iCa2+-signalling pathway was stimulated. GPRALS1 and 2 were expressed mainly in mosquito midgut and ovaries and transcript abundance of both receptors was modified by feeding. A blood meal strongly up-regulated expression of both GPRALS in the midgut (p < 0.05) compared to glucose fed females. Based on the results we hypothesise that the AST-A system in insects shared a common origin with the vertebrate KISS system and may also share a common function as an integrator of metabolism and reproduction.

Unravelling the Evolution of the Allatostatin-Type A, KISS and Galanin Peptide-Receptor Gene Families in Bilaterians: Insights from Anopheles Mosquitoes

  • Autores: Cardoso JCR, Felix RC, Fonseca VG, Martins RS, Pires IRP, Power DM, Silveira H, Trindade M
  • Ano de Publicação: 2015
  • Journal: PLoS One
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/26135459

Allatostatin type A receptors (AST-ARs) are a group of G-protein coupled receptors activated by members of the FGL-amide (AST-A) peptide family that inhibit food intake and development in arthropods. Despite their physiological importance the evolution of the AST-A system is poorly described and relatively few receptors have been isolated and functionally characterised in insects. The present study provides a comprehensive analysis of the origin and comparative evolution of the AST-A system. To determine how evolution and feeding modified the function of AST-AR the duplicate receptors in Anopheles mosquitoes, were characterised. Phylogeny and gene synteny suggested that invertebrate AST-A receptors and peptide genes shared a common evolutionary origin with KISS/GAL receptors and ligands. AST-ARs and KISSR emerged from a common gene ancestor after the divergence of GALRs in the bilaterian genome. In arthropods, the AST-A system evolved through lineage-specific events and the maintenance of two receptors in the flies and mosquitoes (Diptera) was the result of a gene duplication event. Speciation of Anopheles mosquitoes affected receptor gene organisation and characterisation of AST-AR duplicates (GPRALS1 and 2) revealed that in common with other insects, the mosquito receptors were activated by insect AST-A peptides and the iCa2+-signalling pathway was stimulated. GPRALS1 and 2 were expressed mainly in mosquito midgut and ovaries and transcript abundance of both receptors was modified by feeding. A blood meal strongly up-regulated expression of both GPRALS in the midgut (p < 0.05) compared to glucose fed females. Based on the results we hypothesise that the AST-A system in insects shared a common origin with the vertebrate KISS system and may also share a common function as an integrator of metabolism and reproduction.

Footer

INSTITUTO DE HIGIENE E
MEDICINA TROPICAL
UNIVERSIDADE NOVA DE LISBOA
Rua da Junqueira, 100 1349-008 Lisboa
T +351 213 652 600
geral@ihmt.unl.pt

Consulta do Viajante e Medicina Tropical
T +351 213 652 630
T +351 213 652 690
T +351 91 182 37 48
T +351 91 182 44 67
medicina.viagens@ihmt.unl.pt

  • Ensino
  • Investigação
  • Medicina Tropical
  • Cooperação
  • Portal de Denúncias UNL

NOVA University of Lisbon Logo

Siga-nos

  • Facebook
  • Instagram
  • LinkedIn
  • Twitter
  • YouTube

Receber a “newsletter”

© Copyright 2025 IHMT-UNL Todos os Direitos Reservados.
  • Universidade Nova de Lisboa
  • Fundação para a Ciência e a Tecnologia

    UIDB/04413/2020
    UIDP/04413/2020

We use cookies to ensure that we give you the best experience on our website. If you continue to use this site we will assume that you are happy with it.Ok

Notificações