Functional analysis of BMP4 mutations identified in pediatric CAKUT patients |
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Authors: | Mansoureh Tabatabaeifar Karl-Peter Schlingmann Mieczyslaw Litwin Sevinc Emre Aysin Bakkaloglu Otto Mehls Corinne Antignac Franz Schaefer Stefanie Weber ESCAPE Trial Group |
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Affiliation: | 1.Pediatric Nephrology,University of Heidelberg Children’s Hospital,Heidelberg,Germany;2.Pediatric Nephrology,University of Marburg Children’s Hospital,Marburg,Germany;3.Nephrology and Kidney Transplantation Department,Children’s Memorial Health Hospital Warsaw,Warsaw,Poland;4.Department of Pediatrics, Istanbul Medical Faculty,University of Istanbul,Istanbul,Turkey;5.Faculty of Medicine,Hacettepe University,Ankara,Turkey;6.INSERM U574, H?pital Necker-Enfants Malades,Paris,France;7.University of Essen Children’s Hospital,Essen,Germany |
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Abstract: | Human congenital anomalies of the kidney and urinary tract (CAKUT) represent the major causes of chronic renal failure (CRF) in children. This set of disorders comprises renal agenesis, hypoplasia, dysplastic or double kidneys, and/or malformations of the ureter. It has recently been shown that mutations in several genes, among them BMP4, are associated with hereditary renal developmental diseases. In BMP4, we formerly identified three missense mutations (S91C, T116S, N150K) in five pediatric CAKUT patients. These BMP4 mutations were subsequently studied in a cellular expression system, and here we present functional data demonstrating a lower level of messenger RNA (mRNA) abundance in Bmp4 mutants that indicates a possible negative feedback of the mutants on their own mRNA expression and/or stability. Furthermore, we describe the formation of alternative protein complexes induced by the S91C-BMP4 mutation, which results in perinuclear endoplasmic reticulum (ER) accumulation and enhanced lysosomal degradation of Bmp4. This work further supports the role of mutations in BMP4 for abnormalities of human kidney development. |
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