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Retention of ES cell-derived 129S genome drives NLRP1 hypersensitivity and transcriptional deregulation in Nlrp3tm1Flvmice

Authors :
Weiss, Felix D.
Alvarez, Yubell
Shakeri, Farhad
Sahu, Anshupa
Leka, Petro
Dernst, Alesja
Rollheiser, Jessika
Vasconcelos, Matilde
Geraci, Adriana
Duthie, Fraser
Stahl, Rainer
Lee, Hye Eun
Gellner, Anne-Kathrin
Buness, Andreas
Latz, Eicke
Meissner, Felix
Source :
Cell Death and Differentiation; 20240101, Issue: Preprints p1-13, 13p
Publication Year :
2024

Abstract

Immune response genes are highly polymorphic in humans and mice, with heterogeneity amongst loci driving strain-specific host defence responses. The inadvertent retention of polymorphic loci can introduce confounding phenotypes, leading to erroneous conclusions, and impeding scientific advancement. In this study, we employ a combination of RNAseq and variant calling analyses to identify a substantial region of 129S genome, including the highly polymorphic Nlrp1locus, proximal to Nlrp3, in one of the most commonly used mouse models of NLRP3 deficiency (Nlrp3tm1Flv). We show that the presence of the Nlrp1129Slocus leads to an increase in NLRP1B protein expression, and a sensitising of Nlrp3tm1Flvmacrophages to NLRP1 inflammasome activation, independent of NLRP3 deficiency. Retention of 129S genome further leads to protein sequence differences and altered gene regulation across multiple cell types, including of the key tissue-resident macrophage marker, TIM4. Using alternative models of NLRP3 deficiency, including a previously undescribed conditional Nlrp3allele enabling precise temporal and cell-type specific control over Nlrp3deletion, we further show that NLRP3 contributes to Talabostat-driven IL-1β release. Our study also establishes a generic framework to identify functionally relevant SNPs and assess genomic contamination in transgenic mice using RNAseq data. This allows for unambiguous attribution of phenotypes to the target gene and advances the precision and reliability of research in the field of host defence responses.

Details

Language :
English
ISSN :
13509047 and 14765403
Issue :
Preprints
Database :
Supplemental Index
Journal :
Cell Death and Differentiation
Publication Type :
Periodical
Accession number :
ejs67425004
Full Text :
https://doi.org/10.1038/s41418-024-01379-2