Skip to content
Open access

Regulatory mutants of the Tbx1 gene alter transcription programs of lineage determination and patterning in early mesoderm

Aug 2026 · bioRxiv · 0 citations · 52 references
Biology

Abstract

The Tbx1 gene is haploinsufficient in mice and in humans, where it causes a DiGeorge syndrome phenotype characterized by developmental deficits of the pharyngeal apparatus. TBX1 plays a critical role in the differentiation and regionalization of the cardiopharyngeal mesoderm lineage and its derivatives. Nevertheless, its regulation is incompletely understood. Here we used a combination of computational and wet-lab approaches to identify regulatory sequences of the Tbx1 gene, and we use single-cell molecular analysis as a read-out and to establish the consequences of their deletion. Results revealed a cluster of regulatory sequences with at least three distinct elements. Elimination of the entire cluster caused a near shut down of the gene, while individual deletions had milder, quantitative effects. Transcriptomic analyses of the deletion mutants revealed the down regulation of genes related to cardiopharyngeal lineage specification and, more surprisingly, up regulation and anteriorization of genes related to embryonic patterning, thereby providing a rationale for the severe dysmorphogenesis of the posterior pharyngeal apparatus observed in Tbx1 mutant mice.

Read PDF

Similar papers

Open access Sep 2026

Distinct roles for partially redundant transcription factors in Caenorhabditis elegans mesoderm lineage development

Developmental transcription factors often have overlapping functions, making it difficult to define the distinct roles of individual factors during lineage specification. We investigated the partially redundant transcription factors TBX-35 and CEH-51 in the Caenorhabditis elegans embryonic MS mesodermal lineage using 4...

Yun-Tian Gan, Erin L. Marble, E. Preston et al. · 0 citations
Open access Sep 2026

Hierarchical chromatin polyvalency governs robust gene regulation and organogenesis

Ch chromatin polyvalency model is established as a multi-layered, hierarchical repression mechanism that governs temporal control of gene expression during embryogenesis and disrupts temporal control of polyvalent gene activation.

Cheng-Jie Zhou, Meng Wang, Zhi-Yuan Chen et al. · 0 citations
Open access Sep 2026

Hox/Meis-dependent gene-regulatory transition underlies cardiopharyngeal neural crest diversification

Neural crest cells (NCCs) are multipotent migratory cells essential for cardiac development, yet the lineage trajectories and gene regulatory networks underlying their differentiation in the cardiopharyngeal region remain unclear. Here, we integrate single-cell RNA-seq, spatial transcriptomics, and multiomic analyses t...

Akiyasu Iwase, Y. Uchijima, Daiki Seya et al. · 0 citations
Open access Sep 2026

Phosphorylation of BigH1 regulates its expression pattern and promotes embryonic development.

Metazoan genomes typically encode several linker histone variants, often expressed in a tissue- or developmental stage-specific manner. The Drosophila melanogaster genome contains only two linker histone variants: H1 is present in somatic cells, while BigH1 substitutes H1 in the germline and early embryos. In the early...

Ramóna Pék, A. Pettkó-Szandtner, Anikó Szabó et al. · 0 citations
Open access Sep 2026

Ectopic expression of the germline transcription factor LSL-1 contributes to developmental delay following failed maternal epigenetic reprogramming

Proper transmission of cell identity between generations requires maternal epigenetic reprogramming mechanisms that prevent inappropriate inheritance of lineage-specific transcriptional programs. In Caenorhabditis elegans, loss of the H3K4me1/2 demethylase SPR-5 and the H3K9 methyltransferase MET-2 results in ectopic e...

Benjamin Nguyen, Zaynab Massenburg, Josh Labus et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.