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Calcineurin-Dependent Homeostatic Response of IC. elegans/I Muscle Cells upon Prolonged Activation of Acetylcholine Receptors
by
Briseño-Roa, Luis
, Bessereau, Jean-Louis
, Jospin, Maëlle
, Florin, Franklin
, Bonneau, Benjamin
in
Analysis
/ Care and treatment
/ Diagnosis
/ Drug resistance in microorganisms
/ Genetic aspects
/ Genetic screening
/ Health aspects
/ Homeostasis
/ Parasitic diseases
/ Prevention
2023
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Calcineurin-Dependent Homeostatic Response of IC. elegans/I Muscle Cells upon Prolonged Activation of Acetylcholine Receptors
by
Briseño-Roa, Luis
, Bessereau, Jean-Louis
, Jospin, Maëlle
, Florin, Franklin
, Bonneau, Benjamin
in
Analysis
/ Care and treatment
/ Diagnosis
/ Drug resistance in microorganisms
/ Genetic aspects
/ Genetic screening
/ Health aspects
/ Homeostasis
/ Parasitic diseases
/ Prevention
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Calcineurin-Dependent Homeostatic Response of IC. elegans/I Muscle Cells upon Prolonged Activation of Acetylcholine Receptors
by
Briseño-Roa, Luis
, Bessereau, Jean-Louis
, Jospin, Maëlle
, Florin, Franklin
, Bonneau, Benjamin
in
Analysis
/ Care and treatment
/ Diagnosis
/ Drug resistance in microorganisms
/ Genetic aspects
/ Genetic screening
/ Health aspects
/ Homeostasis
/ Parasitic diseases
/ Prevention
2023
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Calcineurin-Dependent Homeostatic Response of IC. elegans/I Muscle Cells upon Prolonged Activation of Acetylcholine Receptors
Journal Article
Calcineurin-Dependent Homeostatic Response of IC. elegans/I Muscle Cells upon Prolonged Activation of Acetylcholine Receptors
2023
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Overview
Pharmacological adaptation is a common phenomenon observed during prolonged drug exposure and often leads to drug resistance. Understanding the cellular events involved in adaptation could provide new strategies to circumvent this resistance issue. We used the nematode Caenorhabditis elegans to analyze the adaptation to levamisole, an ionotropic acetylcholine receptor agonist, used for decades to treat nematode parasitic infections. Genetic screens in C. elegans identified “adapting mutants” that initially paralyze upon exposure to levamisole as the wild type (WT), but recover locomotion after a few hours whereas WT remain paralyzed. Here, we show that levamisole induces a sustained increase in cytosolic calcium concentration in the muscle cells of adapting mutants, lasting several hours and preceding a decrease in levamisole-sensitive acetylcholine receptors (L-AChR) at the muscle plasma membrane. This decrease correlated with a drop in calcium concentration, a relaxation of the animal’s body and a resumption of locomotion. The decrease in calcium and L-AChR content depends on calcineurin activation in muscle cells. We also showed that levamisole adaptation triggers homeostatic mechanisms in muscle cells including mitochondria remodeling, lysosomal tubulation and an increase in autophagic activity. Levamisole adaptation thus provides a new experimental paradigm for studying how cells cope with calcium stress.
Publisher
MDPI AG
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