Browsing by Author "Reutter, Heiko M. (55600448500)"
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Publication Mild recessive mutations in six fraser syndrome-related genes cause isolated congenital anomalies of the kidney and urinary tract(2014) ;Kohl, Stefan (55636884800) ;Hwang, Daw-Yang (35200666800) ;Dworschak, Gabriel C. (55077181400) ;Hilger, Alina C. (51863754400) ;Saisawat, Pawaree (36005609100) ;Vivante, Asaf (23669497400) ;Stajic, Natasa (6602606131) ;Bogdanovic, Radovan (7004665744) ;Reutter, Heiko M. (55600448500) ;Kehinde, Elijah O. (7003306413) ;Tasic, Velibor (7003911066)Hildebrandt, Friedhelm (7006208592)Congenital anomalies of the kidney and urinary tract (CAKUT) account for approximately 40% of children with ESRD in the United States. Hitherto, mutations in 23 genes have been described as causing autosomal dominant isolated CAKUT in humans. However, .>90% of cases of isolated CAKUT still remain without a molecular diagnosis. Here, we hypothesized that genes mutated in recessive mouse models with the specific CAKUT phenotype of unilateral renal agenesis may also be mutated in humans with isolated CAKUT. We applied next-generation sequencing technology for targeted exon sequencing of 12 recessive murine candidate genes in574 individuals with isolated CAKUT from 590 families. In 15 of 590 families, we identified recessive mutations in the genes FRAS1, FREM2, GRIP1, FREM1, ITGA8, and GREM1, all of which function in the interaction of the ureteric bud and the metanephric mesenchyme. We show that isolated CAKUT may be caused partially by mutations in recessive genes. Our results also indicate that biallelic missense mutations in the Fraser/MOTA/BNAR spectrum genes cause isolated CAKUT, whereas truncating mutations are found in the multiorgan form of Fraser syndrome. The newly identified recessive biallelic mutations in these six genes represent the molecular cause of isolated CAKUT in 2.5% of the 590 affected families in this study. © 2014 by the American Society of Nephrology. - Some of the metrics are blocked by yourconsent settings
Publication Mutations in 12 known dominant disease-causing genes clarify many congenital anomalies of the kidney and urinary tract(2014) ;Hwang, Daw-Yang (35200666800) ;Dworschak, Gabriel C. (55077181400) ;Kohl, Stefan (55636884800) ;Saisawat, Pawaree (36005609100) ;Vivante, Asaf (23669497400) ;Hilger, Alina C. (51863754400) ;Reutter, Heiko M. (55600448500) ;Soliman, Neveen A. (55212159700) ;Bogdanovic, Radovan (7004665744) ;Kehinde, Elijah O. (7003306413) ;Tasic, Velibor (7003911066)Hildebrandt, Friedhelm (7006208592)Congenital anomalies of the kidney and urinary tract (CAKUT) account for approximately half of children with chronic kidney disease. CAKUT can be caused by monogenic mutations; however, data are lacking on their frequency. Genetic diagnosis has been hampered by genetic heterogeneity and lack of genotype-phenotype correlation. To determine the percentage of cases with CAKUT that can be explained by mutations in known CAKUT genes, we analyzed the coding exons of the 17 known dominant CAKUT-causing genes in a cohort of 749 individuals from 650 families with CAKUT. The most common phenotypes in this CAKUT cohort were vesicoureteral reflux in 288 patients, renal hypodysplasia in 120 patients, and unilateral renal agenesis in 90 patients. We identified 37 different heterozygous mutations (33 novel) in 12 of the 17 known genes in 47 patients from 41 of the 650 families (6.3%). These mutations include (number of families): BMP7 (1), CDC5L (1), CHD1L (5), EYA1 (3), GATA3 (2), HNF1B (6), PAX2 (5), RET (3), ROBO2 (4), SALL1 (9), SIX2 (1), and SIX5 (1). Furthermore, several mutations previously reported to be disease-causing are most likely benign variants. Thus, in a large cohort over 6% of families with isolated CAKUT are caused by a mutation in 12 of 17 dominant CAKUT genes. Our report represents one of the most in-depth diagnostic studies of monogenic causes of isolated CAKUT in children. © 2013 International Society of Nephrology. - Some of the metrics are blocked by yourconsent settings
Publication Whole-exome resequencing reveals recessive mutations in TRAP1 in individuals with CAKUT and VACTERL association(2014) ;Saisawat, Pawaree (36005609100) ;Kohl, Stefan (55636884800) ;Hilger, Alina C. (51863754400) ;Hwang, Daw-Yang (35200666800) ;Yung Gee, Heon (55280029300) ;Dworschak, Gabriel C. (55077181400) ;Tasic, Velibor (7003911066) ;Pennimpede, Tracie (15060186800) ;Natarajan, Sivakumar (55279442500) ;Sperry, Ethan (56252671800) ;Matassa, Danilo S. (25958172700) ;Stajić, Nataša (6602606131) ;Bogdanovic, Radovan (7004665744) ;De Blaauw, Ivo (6701566895) ;Marcelis, Carlo L. M. (57214786120) ;Wijers, Charlotte H. W. (36157385100) ;Bartels, Enrika (36092451600) ;Schmiedeke, Eberhard (25823437700) ;Schmidt, Dominik (16048241200) ;Märzheuser, Stefanie (6507474861) ;Grasshoff-Derr, Sabine (36522086600) ;Holland-Cunz, Stefan (6603552176) ;Ludwig, Michael (55334100000) ;Nöthen, Markus M. (35355123900) ;Draaken, Markus (26030373100) ;Brosens, Erwin (54082709900) ;Heij, Hugo (7006842878) ;Tibboel, Dick (7101632209) ;Herrmann, Bernhard G. (7101642305) ;Solomon, Benjamin D. (22958909800) ;De Klein, Annelies (55913708300) ;Van Rooij, Iris A.L.M. (6701840447) ;Esposito, Franca (56055559300) ;Reutter, Heiko M. (55600448500)Hildebrandt, Friedhelm (7006208592)Congenital abnormalities of the kidney and urinary tract (CAKUT) account for approximately half of children with chronic kidney disease and they are the most frequent cause of end-stage renal disease in children in the US. However, its genetic etiology remains mostly elusive. VACTERL association is a rare disorder that involves congenital abnormalities in multiple organs including the kidney and urinary tract in up to 60% of the cases. By homozygosity mapping and whole-exome resequencing combined with high-throughput mutation analysis by array-based multiplex PCR and next-generation sequencing, we identified recessive mutations in the gene TNF receptor-associated protein 1 (TRAP1) in two families with isolated CAKUT and three families with VACTERL association. TRAP1 is a heat-shock protein 90-related mitochondrial chaperone possibly involved in antiapoptotic and endoplasmic reticulum stress signaling. Trap1 is expressed in renal epithelia of developing mouse kidney E13.5 and in the kidney of adult rats, most prominently in proximal tubules and in thick medullary ascending limbs of Henle's loop. Thus, we identified mutations in TRAP1 as highly likely causing CAKUT or VACTERL association with CAKUT. © 2013 International Society of Nephrology.