New SMS mutation leads to a striking reduction in spermine synthase protein function and a severe form of Snyder-Robinson X-linked recessive mental retardation syndrome

G. de Alencastro, D. E. McCloskey, S. E. Kliemann, C. M.C. Maranduba, A. E. Pegg, X. Wang, D. R. Bertola, C. E. Schwartz, M. R. Passos-Bueno, A. Laurato Sertié

    Research output: Contribution to journalArticlepeer-review

    52 Scopus citations

    Abstract

    We report the identification of a novel mutation at a highly conserved residue within the N-terminal region of spermine synthase (SMS) in a second family with Snyder-Robinson X-linked mental retardation syndrome (OMIM 309583). This missense mutation, p.G56S, greatly reduces SMS activity and leads to severe epilepsy and cognitive impairment. Our findings contribute to a better delineation and expansion of the clinical spectrum of Snyder-Robinson syndrome, support the important role of the N-terminus in the function of the SMS protein, and provide further evidence for the importance of SMS activity in the development of intellectual processing and other aspects of human development.

    Original languageEnglish (US)
    Pages (from-to)539-543
    Number of pages5
    JournalJournal of medical genetics
    Volume45
    Issue number8
    DOIs
    StatePublished - Aug 2008

    All Science Journal Classification (ASJC) codes

    • Genetics
    • Genetics(clinical)

    Fingerprint

    Dive into the research topics of 'New SMS mutation leads to a striking reduction in spermine synthase protein function and a severe form of Snyder-Robinson X-linked recessive mental retardation syndrome'. Together they form a unique fingerprint.

    Cite this