Systemic corazonin signalling modulates stress responses and metabolism in Drosophila
Stress triggers cellular and systemic reactions in organisms to restore homeostasis. For instance, metabolic stress, experienced during starvation, elicits a hormonal response that reallocates resources to enable food search and readjustment of physiology. Mammalian gonadotropin-releasing hormone (G...
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doaj-56cb8b37639542109590675bd48c15ad2020-11-25T03:57:03ZengThe Royal SocietyOpen Biology2046-24412016-01-0161110.1098/rsob.160152160152Systemic corazonin signalling modulates stress responses and metabolism in DrosophilaOlga I. KubrakOleh V. LushchakMeet ZandawalaDick R. NässelStress triggers cellular and systemic reactions in organisms to restore homeostasis. For instance, metabolic stress, experienced during starvation, elicits a hormonal response that reallocates resources to enable food search and readjustment of physiology. Mammalian gonadotropin-releasing hormone (GnRH) and its insect orthologue, adipokinetic hormone (AKH), are known for their roles in modulating stress-related behaviour. Here we show that corazonin (Crz), a peptide homologous to AKH/GnRH, also alters stress physiology in Drosophila. The Crz receptor (CrzR) is expressed in salivary glands and adipocytes of the liver-like fat body, and CrzR knockdown targeted simultaneously to both these tissues increases the fly's resistance to starvation, desiccation and oxidative stress, reduces feeding, alters expression of transcripts of Drosophila insulin-like peptides (DILPs), and affects gene expression in the fat body. Furthermore, in starved flies, CrzR-knockdown increases circulating and stored carbohydrates. Thus, our findings indicate that elevated systemic Crz signalling during stress coordinates increased food intake and diminished energy stores to regain metabolic homeostasis. Our study suggests that an ancient stress-peptide in Urbilateria evolved to give rise to present-day GnRH, AKH and Crz signalling systems.https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160152corazonin receptorneuropeptidefat bodystress signallinginsulin-like peptides |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Olga I. Kubrak Oleh V. Lushchak Meet Zandawala Dick R. Nässel |
spellingShingle |
Olga I. Kubrak Oleh V. Lushchak Meet Zandawala Dick R. Nässel Systemic corazonin signalling modulates stress responses and metabolism in Drosophila Open Biology corazonin receptor neuropeptide fat body stress signalling insulin-like peptides |
author_facet |
Olga I. Kubrak Oleh V. Lushchak Meet Zandawala Dick R. Nässel |
author_sort |
Olga I. Kubrak |
title |
Systemic corazonin signalling modulates stress responses and metabolism in Drosophila |
title_short |
Systemic corazonin signalling modulates stress responses and metabolism in Drosophila |
title_full |
Systemic corazonin signalling modulates stress responses and metabolism in Drosophila |
title_fullStr |
Systemic corazonin signalling modulates stress responses and metabolism in Drosophila |
title_full_unstemmed |
Systemic corazonin signalling modulates stress responses and metabolism in Drosophila |
title_sort |
systemic corazonin signalling modulates stress responses and metabolism in drosophila |
publisher |
The Royal Society |
series |
Open Biology |
issn |
2046-2441 |
publishDate |
2016-01-01 |
description |
Stress triggers cellular and systemic reactions in organisms to restore homeostasis. For instance, metabolic stress, experienced during starvation, elicits a hormonal response that reallocates resources to enable food search and readjustment of physiology. Mammalian gonadotropin-releasing hormone (GnRH) and its insect orthologue, adipokinetic hormone (AKH), are known for their roles in modulating stress-related behaviour. Here we show that corazonin (Crz), a peptide homologous to AKH/GnRH, also alters stress physiology in Drosophila. The Crz receptor (CrzR) is expressed in salivary glands and adipocytes of the liver-like fat body, and CrzR knockdown targeted simultaneously to both these tissues increases the fly's resistance to starvation, desiccation and oxidative stress, reduces feeding, alters expression of transcripts of Drosophila insulin-like peptides (DILPs), and affects gene expression in the fat body. Furthermore, in starved flies, CrzR-knockdown increases circulating and stored carbohydrates. Thus, our findings indicate that elevated systemic Crz signalling during stress coordinates increased food intake and diminished energy stores to regain metabolic homeostasis. Our study suggests that an ancient stress-peptide in Urbilateria evolved to give rise to present-day GnRH, AKH and Crz signalling systems. |
topic |
corazonin receptor neuropeptide fat body stress signalling insulin-like peptides |
url |
https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160152 |
work_keys_str_mv |
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