Sine_2003_Ann.N.Y.Acad.Sci_998_128

Reference

Title : Mechanistic diversity underlying fast channel congenital myasthenic syndromes - Sine_2003_Ann.N.Y.Acad.Sci_998_128
Author(s) : Sine SM , Wang HL , Ohno K , Shen XM , Lee WY , Engel AG
Ref : Annals of the New York Academy of Sciences , 998 :128 , 2003
Abstract :

A host of missense mutations in muscle nicotinic receptor subunits have been identified as the cause of congenital myasthenic syndromes (CMS). Two classes of CMS phenotypes have been identified: slow channel myasthenic syndromes (SCCMSs) and fast channel myasthenic syndromes (FCCMSs). Although both have similar phenotypic consequences, they are physiologic opposites. Expression of the FCCMS phenotype requires the missense mutation to be accompanied by a second mutation, either a null or a missense mutation, in the second allele encoding the same receptor subunit. This seemingly rare scenario has arisen with surprisingly high incidence over the past few years, and analyses of the syndromes have revealed a diverse array of mechanisms underlying the pathology. This review focuses on new mechanisms underlying the FCCMS.

PubMedSearch : Sine_2003_Ann.N.Y.Acad.Sci_998_128
PubMedID: 14592870

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Citations formats

Sine SM, Wang HL, Ohno K, Shen XM, Lee WY, Engel AG (2003)
Mechanistic diversity underlying fast channel congenital myasthenic syndromes
Annals of the New York Academy of Sciences 998 :128

Sine SM, Wang HL, Ohno K, Shen XM, Lee WY, Engel AG (2003)
Annals of the New York Academy of Sciences 998 :128