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Evento

Neural modulation of systemic stress response requires the insulin like-peptide INS-3

Veuthey, Tania VanesaIcon ; Giunti, SebastiánIcon ; de Rosa, Maria JoseIcon ; Alkema, Mark; Rayes, Diego HernánIcon
Tipo del evento: Congreso
Nombre del evento: 24th International C. elegans Conference
Fecha del evento: 24/06/2023
Institución Organizadora: Genetics Society of America;
Título del Libro: 24th International C. Elegans Conference
Título de la revista: 24th International C. elegans Conference
Editorial: Genetics Society of America
Idioma: Inglés
Clasificación temática:
Otras Ciencias Naturales y Exactas

Resumen

Throughout the animal kingdom, the perpetuation of the flight response leads to reduced ability to cope with environmental challenges, a drastic lifespan reduction, and an increase in disease susceptibility. We showed that, in C. elegans, the tyramin- ergic neuron RIM supplies a state-dependent neural switch between acute flight and long-term environmental stress respons- es. During the flight-stress response RIM neurons release TA, which stimulates the intestinal adrenergic-like receptor TYRA-3. This leads to DAF-2/Insulin/IGF-1 pathway activation and inhibition of cytoprotective mechanisms in the intestine and oth- er tissues. We hypothesized that TYRA-3 stimulates the release of Insulin-Like Peptides (ILPs) from the intestine that can sys- temically activate the DAF-2 insulin/IGF1 receptors. We focused on strong agonists ILPs that are expressed in the intestine (INS-3, -4, -6, -32, and DAF-28). We found that ins-3 mutants are resistant to both heat and oxidative stress, much like tyra- 3 mutants. Moreover, ins-3 mutants are resistant to the impairment of stress resistance upon exposure to exogenous tyramine. In addition, ins-3;tyra-3 double mutants are as resistant to environmental stress as single mutants, suggesting that both genes act in the same pathway. Since ins-3 is expressed in neurons and the intestine, we performed tissue-specific rescue experiments. We found that expression of ins-3 in the intestine restores stress resistance to wild-type levels. Taken together, our results suggest that intestinal activation of TYRA-3 by the escape neurohormone TA leads to INS-3 release which acts as an endocrine, autocrine, and/or paracrine signal to activate DAF-2 in different tissues
Palabras clave: C. ELEGANS , INSULIN , STRESS RESPONSE , NEURONAL MODULATION
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/250681
URL: https://genetics-gsa.org/celegans2023/program-and-abstract-books/
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Eventos(INIBIBB)
Eventos de INST.DE INVEST.BIOQUIMICAS BAHIA BLANCA (I)
Citación
Neural modulation of systemic stress response requires the insulin like-peptide INS-3; 24th International C. elegans Conference; Glasgow; Reino Unido; 2023; 392-392
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