EZH2 specifically regulates ISL1 during embryonic urinary tract formation
Mingrado, E.; Kalanithy, J.; Dworschak, G.; Ishorst, N.; Yilmaz, O.; Lindenberg, T.; Hollstein, R.; Felger, T.; Angrand, P.-O.; Reutter, H.; Odermatt, B.
Show abstract
Isl1 has been described as an embryonic master control gene expressed in the pericloacal mesenchyme. Deletion of Isl1 from the genital mesenchyme in mice leads to an ectopic urethral opening and epispadias-like phenotype. Using genome wide association methods, we identified ISL1 as the key susceptibility gene for classic bladder exstrophy (CBE), comprising epispadias and exstrophy of the urinary bladder. The most significant marker (rs6874700) identified in our recent GWAS meta-analysis achieved a p value of 1.48 x 10-24 within the ISL1 region. In silico analysis of rs6874700 and all other genome-wide significant markers in Linkage Disequilibrium (LD) with rs6874700 (D = 1.0; R2 > 0.90) revealed marker rs2303751 (p value 8.12 x 10-20) as the marker with the highest regulatory effect predicted. Here, we describe a novel 1.2 kb intragenic promoter residing between 6.2 and 7.4 kb downstream of the ISL1 transcription starting site, which is located in the reverse DNA strand and harbors a binding side for EZH2 at the exact region of marker rs2303751. We show, that EZH2 silencing in HEK cells reduces ISL1 expression. We show that ezh2-/- ko zebrafish larvae display tissues specificity of ISL1 regulation with reduced expression of Isl1 in the pronephric region of zebrafish larvae. In addition, a shorter and malformed nephric duct is observed in ezh2-/- ko zebrafish Tg(wt1{beta}:eGFP) reporter lines. Our study shows, that Ezh2 is a key regulator of Isl1 during urinary tract formation and suggests tissue specific ISL1 dysregulation as an underlying mechanism for CBE formation.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Vanishing white matter disease expression of truncated EIF2B5 activates induced stress response 94%
- Npr3 regulates neural crest and cranial placode progenitors formation through its dual function as clearance and signaling receptor 94%
- EPHA4 signaling dysregulation links abnormal locomotion and the development of idiopathic scoliosis 94%
Similar papers in this journal
- Deletion of a conserved genomic region associated with adolescent idiopathic scoliosis leads to vertebral rotation in mice. 94%
- Lis1 mutation prevents basal radial glia-like cell production in the mouse 93%
- Fragile X Premutation rCGG Repeats Impairs Synaptic Growth and Synaptic Transmission at Drosophila larval Neuromuscular Junction 92%
Similar papers in this journal
- Evolutionary Perspective And Expression Analysis Of Intronless Genes Highlight The Conservation On Their Regulatory Role 93%
- Deletion of FUNDC2 and CMC4 on chromosome Xq28 is sufficient to cause hypergonadotropic hypogonadism in men 93%
- 16p12.1 deletion orthologs are expressed in motile neural crest cells and are important for regulating craniofacial development in Xenopus laevis 93%
Similar papers in this journal
- Retinoic acid control of pax8 during renal specification of Xenopus pronephros involves hox and meis3 95%
- Zebrafish her3 knockout impacts developmental and cancer-related gene signatures 95%
- MicroRNA miR-196a controls neural crest patterning by repressing immature neural ectoderm programs in Xenopus embryos. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.