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Identification of a Peptidergic Pathway Critical to Satiety Responses in Drosophila.
Min, Soohong; Chae, Hyo-Seok; Jang, Yong-Hoon; Choi, Sekyu; Lee, Sion; Jeong, Yong Taek; Jones, Walton D; Moon, Seok Jun; Kim, Young-Joon; Chung, Jongkyeong.
Afiliação
  • Min S; National Creative Research Initiatives Center for Energy Homeostasis Regulation, Institute of Molecular Biology and Genetics and School of Biological Sciences, Seoul National University, 599 Gwanak-Ro, Gwanak-Gu, Seoul 151-742, Republic of Korea.
  • Chae HS; School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Republic of Korea.
  • Jang YH; School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Republic of Korea.
  • Choi S; National Creative Research Initiatives Center for Energy Homeostasis Regulation, Institute of Molecular Biology and Genetics and School of Biological Sciences, Seoul National University, 599 Gwanak-Ro, Gwanak-Gu, Seoul 151-742, Republic of Korea.
  • Lee S; Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.
  • Jeong YT; Department of Oral Biology, Yonsei University College of Dentistry, Seoul 120-752, Republic of Korea.
  • Jones WD; Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.
  • Moon SJ; Department of Oral Biology, Yonsei University College of Dentistry, Seoul 120-752, Republic of Korea.
  • Kim YJ; School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Republic of Korea. Electronic address: kimyj@gist.ac.kr.
  • Chung J; National Creative Research Initiatives Center for Energy Homeostasis Regulation, Institute of Molecular Biology and Genetics and School of Biological Sciences, Seoul National University, 599 Gwanak-Ro, Gwanak-Gu, Seoul 151-742, Republic of Korea. Electronic address: jkc@snu.ac.kr.
Curr Biol ; 26(6): 814-20, 2016 Mar 21.
Article em En | MEDLINE | ID: mdl-26948873
ABSTRACT
Although several neural pathways have been implicated in feeding behaviors in mammals [1-7], it remains unclear how the brain coordinates feeding motivations to maintain a constant body weight (BW). Here, we identified a neuropeptide pathway important for the satiety and BW control in Drosophila. Silencing of myoinhibitory peptide (MIP) neurons significantly increased BW through augmented food intake and fat storage. Likewise, the loss-of-function mutation of mip also increased feeding and BW. Suppressing the MIP pathway induced satiated flies to behave like starved ones, with elevated sensitivity toward food. Conversely, activating MIP neurons greatly decreased food intake and BW and markedly blunted the sensitivity of starved flies toward food. Upon terminating the activation protocol of MIP neurons, the decreased BW reverts rapidly to the normal level through a strong feeding rebound, indicating the switch-like role of MIP pathway in feeding. Surprisingly, the MIP-mediated BW decrease occurred independently of sex peptide receptor (SPR), the only known receptor for MIP, suggesting the presence of a yet-unknown MIP receptor. Together, our results reveal a novel anorexigenic pathway that controls satiety in Drosophila and provide a new avenue to study how the brain actively maintains a constant BW.
Assuntos

Texto completo: 1 Coleções: 01-internacional Temas: Geral Base de dados: MEDLINE Assunto principal: Resposta de Saciedade / Proteínas de Drosophila / Drosophila Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Revista: Curr Biol Assunto da revista: BIOLOGIA Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Temas: Geral Base de dados: MEDLINE Assunto principal: Resposta de Saciedade / Proteínas de Drosophila / Drosophila Tipo de estudo: Diagnostic_studies Limite: Animals Idioma: En Revista: Curr Biol Assunto da revista: BIOLOGIA Ano de publicação: 2016 Tipo de documento: Article