Investigation of DNA variants specific to ROBO2 Isoform ‘a’ in Irish vesicoureteric reflux patients reveals marked CpG island variation
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A. Green | D. Barton | P. Puri | John M. Darlow | M. Dobson | M. G. Dobson
[1] D. Belsky,et al. Characterizing genetic and environmental influences on variable DNA methylation using monozygotic and dizygotic twins , 2018, PLoS genetics.
[2] U. Jensen,et al. Targeted gene sequencing and whole‐exome sequencing in autopsied fetuses with prenatally diagnosed kidney anomalies , 2018, Clinical genetics.
[3] A. Adeyemo,et al. Rare variants in tenascin genes in a cohort of children with primary vesicoureteric reflux , 2016, Pediatric Nephrology.
[4] V. Tasic,et al. Mutations in 12 known dominant disease-causing genes clarify many congenital anomalies of the kidney and urinary tract. , 2014, Kidney international.
[5] A. Green,et al. Heterozygous non-synonymous ROBO2 variants are unlikely to be sufficient to cause familial vesicoureteric reflux. , 2013, Kidney international.
[6] Degui Zhi,et al. SNPs located at CpG sites modulate genome-epigenome interaction , 2013, Epigenetics.
[7] Xiangmei Chen,et al. Overexpression of Robo2 causes defects in the recruitment of metanephric mesenchymal cells and ureteric bud branching morphogenesis. , 2012, Biochemical and biophysical research communications.
[8] R. Baldock,et al. The GUDMAP database – an online resource for genitourinary research , 2011, Development.
[9] Amos Tanay,et al. Primate CpG Islands Are Maintained by Heterogeneous Evolutionary Regimes Involving Minimal Selection , 2011, Cell.
[10] R. Shoemaker,et al. Allele-specific methylation is prevalent and is contributed by CpG-SNPs in the human genome. , 2010, Genome research.
[11] G. Daley,et al. Targeted bisulfite sequencing reveals changes in DNA methylation associated with nuclear reprogramming , 2009, Nature Biotechnology.
[12] Susmita Ghosh,et al. Alterations of ROBO1/DUTT1 and ROBO2 loci in early dysplastic lesions of head and neck: clinical and prognostic implications , 2009, Human Genetics.
[13] S. Perrotta,et al. ROBO2 gene variants are associated with familial vesicoureteral reflux. , 2008, Journal of the American Society of Nephrology : JASN.
[14] Jamie A Davies,et al. GUDMAP: the genitourinary developmental molecular anatomy project. , 2008, Journal of the American Society of Nephrology : JASN.
[15] J. Lupski,et al. Disruption of ROBO2 Is Associated with Urinary Tract Anomalies and Confers Risk of Vesicoureteral Reflux , 2007 .
[16] J. Lupski,et al. Disruption of ROBO2 is associated with urinary tract anomalies and confers risk of vesicoureteral reflux. , 2007, American journal of human genetics.
[17] T. Haaf,et al. Isolation and differential expression of two isoforms of the ROBO2/Robo2 axon guidance receptor gene in humans and mice. , 2006, Genomics.
[18] M. Tessier-Lavigne,et al. SLIT2-mediated ROBO2 signaling restricts kidney induction to a single site. , 2004, Developmental cell.
[19] G. Mackie,et al. Duplex kidneys: a correlation of renal dysplasia with position of the ureteral orifice. , 1975, The Journal of urology.