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Reduced dosage of Kmt2d modifies Tbx1 haploinsufficiency toward phenotypes of 22q11.2DS
Daniella Miller, Kevyn Jackson, Timothy C. Cox, Bernice E. Morrow
Daniella Miller, Kevyn Jackson, Timothy C. Cox, Bernice E. Morrow
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Research Article Cardiology Development Genetics

Reduced dosage of Kmt2d modifies Tbx1 haploinsufficiency toward phenotypes of 22q11.2DS

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Abstract

Haploinsufficiency of TBX1, which occurs in 22q11.2 deletion syndrome (22q11.2DS), leads to a heterogeneous spectrum of clinical manifestations, including craniofacial anomalies, immunodeficiency, and congenital heart defects. The variability in syndromic presentation between patients may be partially explained by variants in chromatin regulatory genes that act to further modify TBX1 function. To investigate this relationship, we selected KMT2D as a candidate gene because of its role in the etiology of Kabuki syndrome, which shares overlapping features with 22q11.2DS. We demonstrate that conditional inactivation of Kmt2d in the Tbx1 lineage in Tbx1-heterozygous mice leads to fully penetrant perinatal lethality and increased incidence of craniofacial dysmorphism, thymus and parathyroid gland hypoplasia, and aortic arch anomalies. At early stages, mutant embryos were found to have defects of the caudal pharyngeal apparatus, including abnormal patterning of the third pouch endoderm, hypoplastic fourth arches, and defective fourth arch arteries. Finally, analysis of single-cell RNA sequencing revealed dysregulation, and largely downregulation, of genes involved in basic cellular functions, suggesting that Tbx1 and Kmt2d developmentally converge upon essential biological processes. Overall, these results indicate that reduced dosage of Kmt2d perturbs the developmental landscape of the Tbx1 heterozygote, eliciting phenotypes that are shared between 22q11.2DS and Kabuki syndrome.

Authors

Daniella Miller, Kevyn Jackson, Timothy C. Cox, Bernice E. Morrow

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Figure 3

Kmt2d-cKO embryos have more severe fourth PAA defects than other genotypes.

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Kmt2d-cKO embryos have more severe fourth PAA defects than other genoty...
(A) E10.5 mouse embryo with graphical overlay of the dorsal aorta and PAAs 3–6 and a representative PECAM1 immunofluorescence staining of the third, fourth, and sixth PAAs of a control (Kmt2dfl/fl) embryo. (B–D) India ink injection of E10.5 right-sided PAAs in control, cHet, and cKO embryos shows that ink could not fill the fourth PAA in the cKO embryos, indicating absence of an artery lumen. (E–G) PECAM1 (red) and DAPI (blue) stain of right and left fourth PAAs in control, cHet, and cKO embryos at E10.5 showing that cKO embryos have an endothelial plexus (asterisks and insets) instead of a mature artery. (H) Summary of the right-sided defects in the cHet compared with the cKO embryos. RERSA occurred at reduced penetrance in both cHet and cKO embryos. (I) Summary of the left-sided defects in cHet compared with the cKO embryos. IAAB only occurred in the cKO mutant embryos and at reduced penetrance. Scale bars: (A) 100 μm, (B–D) 300 μm, (E–G) 100 μm. (G) Insets magnification, ×5.7. IAAB, interrupted aortic arch type B; PAA, pharyngeal arch artery; RERSA, retroesophageal right subclavian artery.

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