<div><p>Insulin-like signalling is a conserved mechanism that coordinates animal growth and metabolism with nutrient status. In <i>Drosophila</i>, insulin-producing median neurosecretory cells (IPCs) regulate larval growth by secreting insulin-like peptides (dILPs) in a diet-dependent manner. Previous studies have shown that nutrition affects dILP secretion through humoral signals derived from the fat body. Here we uncover a novel mechanism that operates cell autonomously in the IPCs to regulate dILP secretion. We observed that impairment of ribosome biogenesis specifically in the IPCs strongly inhibits dILP secretion, which consequently leads to reduced body size and a delay in larval development. This response is dependent on p53, a known...
The insulin/IGF-like signalling (IIS) pathway has diverse functions in all multicellular organisms, ...
Insulin/insulin-like growth factor (IGF) signaling (IIS) controls many aspects of development and ph...
In Drosophila, eight insulin-like peptides (DILP1-8) are produced and secreted in different location...
Insulin-like signalling is a conserved mechanism that coordinates animal growth and metabolism with ...
SummaryThe insulin-like peptide (ILP) family plays key biological roles in the control of body growt...
SummaryInsulin-like peptides (ILPs) couple growth, metabolism, longevity, and fertility with changes...
Secreted ligands of the insulin family promote cell growth and maintain sugar homeostasis. Insulin r...
SummaryIn metazoans, tissue growth relies on the availability of nutrients—stored internally or obta...
International audienceIn metazoans, tissue growth relies on the availability of nutrients--stored in...
In metazoans, tissue growth relies on the availability of nutrients--stored internally or obtained f...
Complexity in multi-cellular life arises from the ability of tissues to communicate with each other;...
AbstractBackground: The insulin/IGF-1 signaling pathway controls cellular and organismal growth in m...
AbstractStudies in Drosophila have characterized insulin receptor/phosphoinositide 3-kinase (Inr/PI3...
<div><p>The conserved TOR kinase signaling network links nutrient availability to cell, tissue and b...
Insulin-like peptides (ILPs) regulate growth, reproduction, metabolic homeostasis, life span and str...
The insulin/IGF-like signalling (IIS) pathway has diverse functions in all multicellular organisms, ...
Insulin/insulin-like growth factor (IGF) signaling (IIS) controls many aspects of development and ph...
In Drosophila, eight insulin-like peptides (DILP1-8) are produced and secreted in different location...
Insulin-like signalling is a conserved mechanism that coordinates animal growth and metabolism with ...
SummaryThe insulin-like peptide (ILP) family plays key biological roles in the control of body growt...
SummaryInsulin-like peptides (ILPs) couple growth, metabolism, longevity, and fertility with changes...
Secreted ligands of the insulin family promote cell growth and maintain sugar homeostasis. Insulin r...
SummaryIn metazoans, tissue growth relies on the availability of nutrients—stored internally or obta...
International audienceIn metazoans, tissue growth relies on the availability of nutrients--stored in...
In metazoans, tissue growth relies on the availability of nutrients--stored internally or obtained f...
Complexity in multi-cellular life arises from the ability of tissues to communicate with each other;...
AbstractBackground: The insulin/IGF-1 signaling pathway controls cellular and organismal growth in m...
AbstractStudies in Drosophila have characterized insulin receptor/phosphoinositide 3-kinase (Inr/PI3...
<div><p>The conserved TOR kinase signaling network links nutrient availability to cell, tissue and b...
Insulin-like peptides (ILPs) regulate growth, reproduction, metabolic homeostasis, life span and str...
The insulin/IGF-like signalling (IIS) pathway has diverse functions in all multicellular organisms, ...
Insulin/insulin-like growth factor (IGF) signaling (IIS) controls many aspects of development and ph...
In Drosophila, eight insulin-like peptides (DILP1-8) are produced and secreted in different location...