Topic: Gut

Seminar
6 seminars
SeminarImmunologyRecording

Identification of dendritic cell-T cell interactions driving immune responses to food

Maria Cecilia Campos Canesso
Rockfeller University
Jun 1, 2023
SeminarImmunologyRecording

Immune regulation by fungal strain diversity in inflammatory bowel disease

Xin Li
UT Southwestern Medical Center
Feb 23, 2023
SeminarMicrobiologyRecording

The person-to-person transmission landscape of the gut and oral microbiomes

Mireia Valles Colomer
U Trento
Feb 16, 2023
SeminarNeuroendocrinology

Gut food cravings? How gut signals control appetite and metabolism

Kim Rewitz
University of Copenhagen
Nov 22, 2022

Gut-derived signals regulate metabolism, appetite, and behaviors important for mental health. We have performed a large-scale multidimensional screen to identify gut hormones and nutrient-sensing mechanisms in the intestine that regulate metabolism and behavior in the fruit fly Drosophila. We identified several gut hormones that affect fecundity, stress responses, metabolism, feeding, and sleep behaviors, many of which seem to act sex-specifically. We show that in response to nutrient intake, the enteroendocrine cells (EECs) of the adult Drosophila midgut release hormones that act via inter-organ relays to coordinate metabolism and feeding decisions. These findings suggest that crosstalk between the gut and other tissues regulates food choice according to metabolic needs, providing insight into how that intestine processes nutritional inputs and into the gut-derived signals that relay information regulating nutrient-specific hungers to maintain metabolic homeostasis.

SeminarEpigenetics

Adapt or Die: Transgenerational Inheritance of Pathogen Avoidance (or, How getting food poisoning might save your species)

Coleen Murphy
Princeton University
Nov 15, 2021

Caenorhabditis elegans must distinguish pathogens from nutritious food sources among the many bacteria to which it is exposed in its environment1. Here we show that a single exposure to purified small RNAs isolated from pathogenic Pseudomonas aeruginosa (PA14) is sufficient to induce pathogen avoidance in the treated worms and in four subsequent generations of progeny. The RNA interference (RNAi) and PIWI-interacting RNA (piRNA) pathways, the germline and the ASI neuron are all required for avoidance behaviour induced by bacterial small RNAs, and for the transgenerational inheritance of this behaviour. A single P. aeruginosa non-coding RNA, P11, is both necessary and sufficient to convey learned avoidance of PA14, and its C. elegans target, maco-1, is required for avoidance. Our results suggest that this non-coding-RNA-dependent mechanism evolved to survey the microbial environment of the worm, use this information to make appropriate behavioural decisions and pass this information on to its progeny.

SeminarChronobiology

Sleep and the gut

Dragana Rogulja
Harvard Medical School, Boston, MA, USA
Apr 5, 2021

Sleep is generally associated with the brain but poor sleep impacts the entire body - many diseases are caused or exacerbated by sleep loss. Our work is uncovering ways in which sleep and the body interact. We found a special, two-way relationship between sleep and the gut: the gut is uniquely impacted by sleep loss, and it actively controls sleep quality. These findings could help us understand the origins of sleep as well as develop strategies to offset the negative consequences of inadequate sleep.

We use essential cookies to run the site. Optional analytics and public-page session replay help us improve World Wide. Learn more.