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Measurements of Physiological Stress Responses in C. Elegans
Published on: May 21, 2020
Menin is a regulator of the stress response in Drosophila melanogaster
Maria Papaconstantinou1, Ying Wu, Hendrik Nikolaas Pretorius
1Department of Biology, McMaster University, 1280 Main Street West, Hamilton, Ontario, Canada L8S 4K1.
Abstract:
Menin, the product of the multiple endocrine neoplasia type I gene, has been implicated in several biological processes, including the control of gene expression and apoptosis, the modulation of mitogen-activated protein kinase pathways, and DNA damage sensing or repair. In this study, we have investigated the function of menin in the model organism Drosophila melanogaster. We show that Drosophila lines overexpressing menin or an RNA interference for this gene develop normally but are impaired in their response to several stresses, including heat shock, hypoxia, hyperosmolarity and oxidative stress. In the embryo subjected to heat shock, this impairment was characterized by a high degree of developmental arrest and lethality. The overexpression of menin enhanced the expression of HSP70 in embryos and interfered with its down-regulation during recovery at the normal temperature. In contrast, the inhibition of menin with RNA interference reduced the induction of HSP70 and blocked the activation of HSP23 upon heat shock, Menin was recruited to the Hsp70 promoter upon heat shock and menin overexpression stimulated the activity of this promoter in embryos. A 70-kDa inducible form of menin was expressed in response to heat shock, indicating that menin is also regulated in conditions of stress. The induction of HSP70 and HSP23 was markedly reduced or absent in mutant embryos harboring a deletion of the menin gene. These embryos, which did not express the heat shock-inducible form of menin, were also hypersensitive to various conditions of stress. These results suggest a novel role for menin in the control of the stress response and in processes associated with the maintenance of protein integrity.
Insights
Menin protein plays a crucial role in cellular stress response and protein integrity. Studies in Drosophila show menin regulates heat shock protein expression and is vital for survival under various environmental stresses.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Menin, encoded by the multiple endocrine neoplasia type I gene, is involved in gene expression, apoptosis, and DNA repair.
- Its precise function in stress response pathways remains largely uncharacterized.
Purpose of the Study:
- To investigate the role of menin in cellular stress response using Drosophila melanogaster as a model organism.
- To elucidate menin's involvement in the regulation of heat shock proteins (HSPs) and overall stress resilience.
Main Methods:
- Overexpression and RNA interference (RNAi) of menin in Drosophila.
- Analysis of stress response (heat shock, hypoxia, hyperosmolarity, oxidative stress) in genetically modified flies.
- Investigation of HSP70 and HSP23 gene expression and promoter activity.
- Characterization of menin's localization to the Hsp70 promoter.
Main Results:
- Drosophila with altered menin levels exhibited impaired responses to various stresses, including heat shock, leading to developmental arrest and lethality.
- Menin overexpression enhanced HSP70 expression and interfered with its down-regulation, while menin inhibition reduced HSP induction.
- Menin was recruited to the Hsp70 promoter upon heat shock, and menin deletion mutants showed hypersensitivity to stress and reduced HSP induction.
Conclusions:
- Menin plays a novel and critical role in regulating the cellular stress response in Drosophila.
- Menin is involved in the transcriptional regulation of heat shock proteins and maintaining protein integrity under stress conditions.
- Menin itself is regulated by stress, with an inducible form appearing upon heat shock.
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