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dc.creatorJuárez-Carreño, S. (Sergio)-
dc.creatorVallejo, D.M. (Diana Marcela)-
dc.creatorCarranza-Valencia, J. (Juan)-
dc.creatorPalomino-Schatzlein, M. (Martina)-
dc.creatorRamón-Canellas, P. (Pol)-
dc.creatorSantoro, R. (Roberto)-
dc.creatorHartog, E. (Emily) de-
dc.creatorFerres-Marco, D. (Dolors)-
dc.creatorRomero, A. (Aitana)-
dc.creatorPayette-Peterson, H. (Hannah)-
dc.creatorBallesta-Illán, E. (Esther)-
dc.creatorPineda-Lucena, A. (Antonio)-
dc.creatorDomínguez, M. (María)-
dc.creatorMorante, J. (Javier)-
dc.date.accessioned2021-10-28T07:16:29Z-
dc.date.available2021-10-28T07:16:29Z-
dc.date.issued2021-
dc.identifier.citationJuárez-Carreño, S.; Vallejo, D. M.; Carranza-Valencia, J.; et al. "Body-fat sensor triggers ribosome maturation in the steroidogenic gland to initiate sexual maturation in Drosophila". Cell Reports. 37 (2), 2021, 109830es
dc.identifier.issn2211-1247-
dc.identifier.urihttps://hdl.handle.net/10171/62291-
dc.description.abstractFat stores are critical for reproductive success and may govern maturation initiation. Here, we report that signaling and sensing fat sufficiency for sexual maturation commitment requires the lipid carrier apolipophorin in fat cells and Sema1a in the neuroendocrine prothoracic gland (PG). Larvae lacking apolpp or Sema1a fail to initiate maturation despite accruing sufficient fat stores, and they continue gaining weight until death. Mechanistically, sensing peripheral body-fat levels via the apolipophorin/Sema1a axis regulates endocytosis, endoplasmic reticulum remodeling, and ribosomal maturation for the acquisition of the PG cells' high biosynthetic and secretory capacity. Downstream of apolipophorin/Sema1a, leptin-like upd2 triggers the cessation of feeding and initiates sexual maturation. Human Leptin in the insect PG substitutes for upd2, preventing obesity and triggering maturation downstream of Sema1a. These data show how peripheral fat levels regulate the control of the maturation decision-making process via remodeling of endomembranes and ribosomal biogenesis in gland cells.-
dc.description.sponsorshipThis work was supported by Generalitat Valenciana Grant co-financed with European Regional Development Fund (OP ERDF of Comunitat Valenciana 2014-2020) to M.-P.S. and by Spanish National Grant (PID2020-115875RB-I00) to A.P.-L. The Spanish National Grants (BFU2015-64239-R and PID2019-106002RB-I00) were co-financed by the ERDF, the Fundacioó n Cientıífica Española Contra el Caáncer (AECC) (CICPF16001DOMI ́), and Generalitat Valenciana Grant (PROMETEO/ 2017/146) (to M.D.). J.M. was financed by the Ramon y Cajal Program (RyC- 2010-07155), a Spanish National Grant (BFU2016-76295-R) co-financed by the ERDF, and a CSIC grant (2019AEP181). M.D. and J.M. were also funded by the ‘‘Severo Ochoa’’ Program for Centers of Excellence in R&D (SEV-2017-0723) co-financed by ERDF. P.R.-C., J.C.-V., R.S., and S.J.-C. are Spanish doctoral FPI fellows (BES-2013-062980, BES-2017-081122, BES-2016- 077689, and BES-2013-064947, respectively) from the Spanish Ministerio de Economia y Competitividad.-
dc.language.isoen-
dc.rightsinfo:eu-repo/semantics/openAccess-
dc.subjectCritical weight sensing-
dc.subjectObesity-
dc.subjectPeripheral fat-
dc.subjectSemaphorin-
dc.subjectApolipoprotein-
dc.subjectLeptin-
dc.subjectRpL10Ab-
dc.subjectRab5-
dc.subjectNucleocytoplasmic traffic-
dc.subjectSexual maturation-
dc.titleBody-fat sensor triggers ribosome maturation in the steroidogenic gland to initiate sexual maturation in Drosophila-
dc.typeinfo:eu-repo/semantics/article-
dc.description.noteThis is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).-
dc.identifier.doi10.1016/j.celrep.2021.109830-
dadun.citation.number2-
dadun.citation.publicationNameCell Reports-
dadun.citation.startingPage109830-
dadun.citation.volume37-

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