RRC ID 31963
著者 Ghosh A, Rideout EJ, Grewal SS.
タイトル TIF-IA-dependent regulation of ribosome synthesis in drosophila muscle is required to maintain systemic insulin signaling and larval growth.
ジャーナル PLoS Genet
Abstract The conserved TOR kinase signaling network links nutrient availability to cell, tissue and body growth in animals. One important growth-regulatory target of TOR signaling is ribosome biogenesis. Studies in yeast and mammalian cell culture have described how TOR controls rRNA synthesis-a limiting step in ribosome biogenesis-via the RNA Polymerase I transcription factor TIF-IA. However, the contribution of TOR-dependent ribosome synthesis to tissue and body growth in animals is less clear. Here we show in Drosophila larvae that ribosome synthesis in muscle is required non-autonomously to maintain normal body growth and development. We find that amino acid starvation and TOR inhibition lead to reduced levels of TIF-IA, and decreased rRNA synthesis in larval muscle. When we mimic this decrease in muscle ribosome synthesis using RNAi-mediated knockdown of TIF-IA, we observe delayed larval development and reduced body growth. This reduction in growth is caused by lowered systemic insulin signaling via two endocrine responses: reduced expression of Drosophila insulin-like peptides (dILPs) from the brain and increased expression of Imp-L2-a secreted factor that binds and inhibits dILP activity-from muscle. We also observed that maintaining TIF-IA levels in muscle could partially reverse the starvation-mediated suppression of systemic insulin signaling. Finally, we show that activation of TOR specifically in muscle can increase overall body size and this effect requires TIF-IA function. These data suggest that muscle ribosome synthesis functions as a nutrient-dependent checkpoint for overall body growth: in nutrient rich conditions, TOR is required to maintain levels of TIF-IA and ribosome synthesis to promote high levels of systemic insulin, but under conditions of starvation stress, reduced muscle ribosome synthesis triggers an endocrine response that limits systemic insulin signaling to restrict growth and maintain homeostasis.
巻・号 10(10)
ページ e1004750
公開日 2014-10-1
DOI 10.1371/journal.pgen.1004750
PII PGENETICS-D-13-03160
PMID 25356674
PMC PMC4214618
MeSH Animals Drosophila / genetics Drosophila / growth & development Drosophila Proteins / biosynthesis Drosophila Proteins / genetics* Gene Expression Regulation, Developmental Insulin / genetics Insulin / metabolism* Larva / genetics Larva / growth & development Muscles / metabolism RNA Interference RNA, Ribosomal / biosynthesis Receptor Protein-Tyrosine Kinases / biosynthesis Ribosomes / genetics* Signal Transduction Transcription Factors / biosynthesis Transcription Factors / genetics* Transcription, Genetic*
IF 5.175
引用数 11
WOS 分野 GENETICS & HEREDITY
リソース情報
ショウジョウバエ 15009-R3