Serotonin signaling by maternal neurons upon stress ensures progeny survival

Author:

Das Srijit1ORCID,Ooi Felicia K1ORCID,Cruz Corchado Johnny1,Fuller Leah C2,Weiner Joshua A23ORCID,Prahlad Veena123ORCID

Affiliation:

1. Department of Biology, Aging Mind and Brain Initiative, Iowa City, United States

2. Department of Biology, Iowa City, United States

3. Iowa Neuroscience Institute, Iowa City, United States

Abstract

Germ cells are vulnerable to stress. Therefore, how organisms protect their future progeny from damage in a fluctuating environment is a fundamental question in biology. We show that in Caenorhabditis elegans, serotonin released by maternal neurons during stress ensures the viability and stress resilience of future offspring. Serotonin acts through a signal transduction pathway conserved between C. elegans and mammalian cells to enable the transcription factor HSF1 to alter chromatin in soon-to-be fertilized germ cells by recruiting the histone chaperone FACT, displacing histones, and initiating protective gene expression. Without serotonin release by maternal neurons, FACT is not recruited by HSF1 in germ cells, transcription occurs but is delayed, and progeny of stressed C. elegans mothers fail to complete development. These studies uncover a novel mechanism by which stress sensing by neurons is coupled to transcription response times of germ cells to protect future offspring.

Funder

University of Iowa

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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