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Characterization of two mutations in the SPTLC1 subunit of serine palmitoyltransferase associated with hereditary sensory and autonomic neuropathy type I

Authors :
Kim van Hoof
Michaela Auer-Grumbach
Thorsten Hornemann
Vincent Timmerman
Heinrich Sticht
Anke Penno
Katrien Janssens
Bernd Rautenstrauss
Georg M. Stettner
Bob Asselbergh
Nicholas Levy
Annelies Rotthier
University of Zurich
Timmerman, V
VIB Molecular Genetics
University of Antwerp (UA)
Laboratory of Neurogenetics
Clinical Chemistry
University hospital of Zurich [Zurich]
Competence Center for Systems Physiology and Metabolic Diseases
Medical Genetics Center
Friedrich-Baur Institute
Ludwig-Maximilians-Universität München (LMU)
Department of Internal Medicine, Devision of Endokrinology and Metabolism
Medical University Graz
Department of Pediatrics and Pediatric Neurology
Georg-August-University = Georg-August-Universität Göttingen
Emil-Fischer-Zentrum, Institute of Biochemistry
Friedrich-Alexander Universität Erlangen-Nürnberg (FAU)
Département de génétique médicale [Hôpital de la Timone - APHM]
Aix Marseille Université (AMU)-Assistance Publique - Hôpitaux de Marseille (APHM)- Hôpital de la Timone [CHU - APHM] (TIMONE)-Institut National de la Santé et de la Recherche Médicale (INSERM)
Université de la Méditerranée - Aix-Marseille 2
University Hopital Zurich
Institute of Physiology and Zurich Center for Integrative Human Physiology (ZIHP)
Universität Zürich [Zürich] = University of Zurich (UZH)
Institute Born-Bunge, University of Antwerp
Georg-August-University [Göttingen]
Source :
Human mutation, Human Mutation, Human Mutation, Wiley, 2011, 32 (6), ⟨10.1002/humu.21481⟩
Publication Year :
2011

Abstract

International audience; Hereditary sensory and autonomic neuropathy type I (HSAN-I) is an axonal peripheral neuropathy leading to progressive distal sensory loss and severe ulcerations. Mutations in SPTLC1 and SPTLC2, encoding the two subunits of serine palmitoyltransferase (SPT), the enzyme catalyzing the first and rate-limiting step in the de novo synthesis of sphingolipids, have been reported to cause HSAN-I. Here, we demonstrate that the SPTLC1 mutations p.S331F and p.A352V result in a reduction of SPT activity in vitro and are associated with increased levels of the deoxysphingoid bases 1-deoxy-sphinganine and 1-deoxymethyl-sphinganine in patients' plasma samples. Stably expressing p.S331F-SPTLC1 HEK293T cell lines likewise show accumulation of deoxysphingoid bases, but this accumulation is not observed in HEK293T cells overexpressing p.A352V-SPTLC1. These results confirm that the increased formation of deoxysphingoid bases is a key feature for HSAN-I as it is associated with all pathogenic SPTLC1 and SPTLC2 mutations reported so far, but also warrant for caution in the interpretation of in vitro data.

Details

Language :
English
ISSN :
10597794 and 10981004
Database :
OpenAIRE
Journal :
Human mutation, Human Mutation, Human Mutation, Wiley, 2011, 32 (6), ⟨10.1002/humu.21481⟩
Accession number :
edsair.doi.dedup.....8a5c7c08b79304ee8d554765ee71d510
Full Text :
https://doi.org/10.5167/uzh-59492