Mutations in sphingosine-1-phosphate lyase cause nephrosis with ichthyosis and adrenal insufficiency

Svjetlana Lovric(Boston Children's Hospital), Sara Gonçalves(Délégation Paris 5), Heon Yung Gee, Babak Oskouian(UCSF Benioff Children's Hospital), Honnappa Srinivas(Novartis (Switzerland)), Won‐Il Choi(Boston Children's Hospital), Shirlee Shril(Boston Children's Hospital), Shazia Ashraf(Boston Children's Hospital), Weizhen Tan(Boston Children's Hospital), Jia Rao(Boston Children's Hospital), Merlin Airik(Boston Children's Hospital), David Schapiro(Boston Children's Hospital), Daniela A. Braun(Boston Children's Hospital), Carolin E. Sadowski(Boston Children's Hospital), Eugen Widmeier(Boston Children's Hospital), Tilman Jobst‐Schwan(Boston Children's Hospital), Johanna Magdalena Schmidt(Boston Children's Hospital), Vladimir Girik(NCCR Chemical Biology - Visualisation and Control of Biological Processes Using Chemistry), Guido Capitani(Paul Scherrer Institute), Jung H. Suh(UCSF Benioff Children's Hospital), Noëlle Lachaussée(Délégation Paris 5), Christelle Arrondel(Délégation Paris 5), Julie Patat(Délégation Paris 5), Olivier Gribouval(Délégation Paris 5), Mónica Furlano(Délégation Paris 5), Olivia Boyer(Délégation Paris 5), Alain Schmitt(Centre National pour la Recherche Scientifique et Technique (CNRST)), Vincent Vuiblet(Centre National pour la Recherche Scientifique et Technique (CNRST)), Seema Hashmi(Sindh Institute of Urology and Transplantation), Rainer Wilcken(Novartis (Switzerland)), François P. Bernier, A. Micheil Innes, Jillian S. Parboosingh, Ryan E. Lamont, Julian Midgley(Alberta Health Services), Nicola Wright(Alberta Health Services), Jacek Majewski(McGill University), Martin Zenker(University Hospital Magdeburg), Franz Schaefer(Yonsei University), Navina Kuß, Johann Greil(German Center for Pediatric and Adolescent Rheumatology), Thomas Giese(Heidelberg University), Klaus Schwarz(German Red Cross), Vilain Catheline(Université Libre de Bruxelles), Denny Schanze(University Hospital Magdeburg), Ingolf Franke(University Hospital Magdeburg), Yves Sznajer(Cliniques Universitaires Saint-Luc), Anne S. Truant(Center for Human Genetics), Brigitte Adams(Queen Fabiola Children's University Hospital), Julie Désir(Université Libre de Bruxelles), Ronald Biemann(University Hospital Magdeburg), York Pei(Universitat Autònoma de Barcelona), Elisabet Ars(Boston Children's Hospital), Núria Lloberas(Boston Children's Hospital), A. Madrid(Boston Children's Hospital), Vikas R. Dharnidharka(Boston Children's Hospital), Anne M. Connolly(Boston Children's Hospital), Marcia Willing(Boston Children's Hospital), Megan A. Cooper(Boston Children's Hospital), Richard P. Lifton(Boston Children's Hospital), Matias Simons(Délégation Paris 5), Howard Riezman(NCCR Chemical Biology - Visualisation and Control of Biological Processes Using Chemistry), Corinne Antignac(Délégation Paris 5), Julie D. Saba(UCSF Benioff Children's Hospital), Friedhelm Hildebrandt(Boston Children's Hospital)
Journal of Clinical Investigation
February 5, 2017
Cited by 207Open Access
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Abstract

Steroid-resistant nephrotic syndrome (SRNS) causes 15% of chronic kidney disease cases. A mutation in 1 of over 40 monogenic genes can be detected in approximately 30% of individuals with SRNS whose symptoms manifest before 25 years of age. However, in many patients, the genetic etiology remains unknown. Here, we have performed whole exome sequencing to identify recessive causes of SRNS. In 7 families with SRNS and facultative ichthyosis, adrenal insufficiency, immunodeficiency, and neurological defects, we identified 9 different recessive mutations in SGPL1, which encodes sphingosine-1-phosphate (S1P) lyase. All mutations resulted in reduced or absent SGPL1 protein and/or enzyme activity. Overexpression of cDNA representing SGPL1 mutations resulted in subcellular mislocalization of SGPL1. Furthermore, expression of WT human SGPL1 rescued growth of SGPL1-deficient dpl1Δ yeast strains, whereas expression of disease-associated variants did not. Immunofluorescence revealed SGPL1 expression in mouse podocytes and mesangial cells. Knockdown of Sgpl1 in rat mesangial cells inhibited cell migration, which was partially rescued by VPC23109, an S1P receptor antagonist. In Drosophila, Sply mutants, which lack SGPL1, displayed a phenotype reminiscent of nephrotic syndrome in nephrocytes. WT Sply, but not the disease-associated variants, rescued this phenotype. Together, these results indicate that SGPL1 mutations cause a syndromic form of SRNS.


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