Genetic protection from type 1 diabetes resulting from accelerated insulin mRNA decay.

van Tienhoven, René; O'Meally, Denis; Scott, Tristan A; Morris, Kevin V; Williams, John C; Kaddis, John S; Zaldumbide, Arnaud; Roep, Bart O · Cell · 2025

basic_science · Level V

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Abstract

Insulin gene (INS) variation and beta-cell stress are associated with the risk of development of type 1 diabetes (T1D) and autoimmunity against insulin. The unfolded protein response alleviating endoplasmic reticulum (ER) stress involves activation of inositol-requiring enzyme 1α (IRE1α) that impedes translation by mRNA decay. We discover that the IRE1α digestion motif is present in insulin mRNA carrying SNP rs3842752 (G>A). This SNP in the 3' untranslated region of INS associates with protection from T1D (INS<sup>P</sup>). ER stress in beta cells with INS<sup>P</sup> led to accelerated insulin mRNA decay compared with the susceptible INS variant (INS<sup>S</sup>). Human islets with INS<sup>P</sup> showed improved vitality and function and reversed diabetes more rapidly when transplanted into diabetic mice than islets carrying INS<sup>S</sup> only. Surrogate beta cells with INS<sup>P</sup> expressed less ER stress and INS-DRiP neoantigen. This explanation for genetic protection from T1D may act instead of or in concert with the previously proposed mechanism attributed to INS promoter polymorphism.

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