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Lactate dehydrogenase and glycerol-3-phosphate dehydrogenase cooperatively regulate growth and carbohydrate metabolism during Drosophila melanogaster larval development.
Li, Hongde; Rai, Madhulika; Buddika, Kasun; Sterrett, Maria C; Luhur, Arthur; Mahmoudzadeh, Nader H; Julick, Cole R; Pletcher, Rose C; Chawla, Geetanjali; Gosney, Chelsea J; Burton, Anna K; Karty, Jonathan A; Montooth, Kristi L; Sokol, Nicholas S; Tennessen, Jason M.
Afiliación
  • Li H; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Rai M; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Buddika K; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Sterrett MC; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Luhur A; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Mahmoudzadeh NH; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Julick CR; RNA Biology Laboratory, School of Biological Sciences, University of Nebraska, Lincoln, NE 68588, USA.
  • Pletcher RC; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Chawla G; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Gosney CJ; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Burton AK; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Karty JA; Department of Chemistry, Indiana University, Bloomington, IN 47405, USA.
  • Montooth KL; RNA Biology Laboratory, School of Biological Sciences, University of Nebraska, Lincoln, NE 68588, USA.
  • Sokol NS; Department of Biology, Indiana University, Bloomington, IN 47405, USA.
  • Tennessen JM; Department of Biology, Indiana University, Bloomington, IN 47405, USA jtenness@indiana.edu.
Development ; 146(17)2019 09 12.
Article en En | MEDLINE | ID: mdl-31399469
ABSTRACT
The dramatic growth that occurs during Drosophila larval development requires rapid conversion of nutrients into biomass. Many larval tissues respond to these biosynthetic demands by increasing carbohydrate metabolism and lactate dehydrogenase (LDH) activity. The resulting metabolic program is ideally suited for synthesis of macromolecules and mimics the manner by which cancer cells rely on aerobic glycolysis. To explore the potential role of Drosophila LDH in promoting biosynthesis, we examined how Ldh mutations influence larval development. Our studies unexpectedly found that Ldh mutants grow at a normal rate, indicating that LDH is dispensable for larval biomass production. However, subsequent metabolomic analyses suggested that Ldh mutants compensate for the inability to produce lactate by generating excess glycerol-3-phosphate (G3P), the production of which also influences larval redox balance. Consistent with this possibility, larvae lacking both LDH and G3P dehydrogenase (GPDH1) exhibit growth defects, synthetic lethality and decreased glycolytic flux. Considering that human cells also generate G3P upon inhibition of lactate dehydrogenase A (LDHA), our findings hint at a conserved mechanism in which the coordinate regulation of lactate and G3P synthesis imparts metabolic robustness to growing animal tissues.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Drosophila melanogaster / Azúcares / Glicerolfosfato Deshidrogenasa / L-Lactato Deshidrogenasa / Larva Límite: Animals Idioma: En Revista: Development Asunto de la revista: BIOLOGIA / EMBRIOLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Drosophila melanogaster / Azúcares / Glicerolfosfato Deshidrogenasa / L-Lactato Deshidrogenasa / Larva Límite: Animals Idioma: En Revista: Development Asunto de la revista: BIOLOGIA / EMBRIOLOGIA Año: 2019 Tipo del documento: Article País de afiliación: Estados Unidos