An Immunologic Mode of Multigenerational Transmission Governs a Gut Treg Setpoint.

Ramanan, Deepshika; Sefik, Esen; Galván-Peña, Silvia; Wu, Meng; Yang, Liang; Yang, Zhen; Kostic, Aleksandar; Golovkina, Tatyana V et al. · Cell · 2020

basic_science · Level V

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Abstract

At the species level, immunity depends on the selection and transmission of protective components of the immune system. A microbe-induced population of RORγ-expressing regulatory T cells (Tregs) is essential in controlling gut inflammation. We uncovered a non-genetic, non-epigenetic, non-microbial mode of transmission of their homeostatic setpoint. RORγ<sup>+</sup> Treg proportions varied between inbred mouse strains, a trait transmitted by the mother during a tight age window after birth but stable for life, resistant to many microbial or cellular perturbations, then further transferred by females for multiple generations. RORγ<sup>+</sup> Treg proportions negatively correlated with IgA production and coating of gut commensals, traits also subject to maternal transmission, in an immunoglobulin- and RORγ<sup>+</sup> Treg-dependent manner. We propose a model based on a double-negative feedback loop, vertically transmitted via the entero-mammary axis. This immunologic mode of multi-generational transmission may provide adaptability and modulate the genetic tuning of gut immune responses and inflammatory disease susceptibility.

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