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Adult-Onset Spinocerebellar Dysfunction Caused by a Mutation in the Gene for the a-Tocopherol-Transfer Protein
NEJM 333:1313-1318, 13511995., Gotoda,T.,et al, 1995
See this aricle in Pubmed

Article Abstract
The patient was homozygous for a point mutation that replaces histidine (CAT)with glutamine(CAG)at position 101 of the gene for the alpha- tocopherol-transfer protein.When expressed in COS-7 cells,the missense mutation produced a functionally defective alpha-tocopherol-transfer protein with approximately 11 percent of the transfer activity of the wild-type protein.Of the 801 island inhabitants examined,21 were heterozygous for hHis01Gln mutation.In all affected subjects,including the patient,this mutation cosegregated with an intron-sequence polymorphism. The heterozygotes were phenotypically normal and had serum vitamin E concentrations that were on average 25 percent lower than those of normal subjects(mean[+/-SD],7.5+/-2.2 vs.10.1+/-2.8 ug per milliliter[17.4+/-5.1 vs.23.4+/-6.5 umol per liter];P=0.002).Alpha-tocopherol-transfer protein is a determinant of serum vitamin E concentrations.An abnormality in this protein is a cause of spinocerebellar dysfunction.
 
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antioxidant
areflexia
ataxia
ataxia,cerebellar
ataxia,hereditary
dysarthria
gene mutation
prevention of neurologic disorders
proprioception,abnormal
spinocerebellar ataxia
spinocerebellar degeneration
treatment of neurologic disorder
vitamin deficiency
vitamin E
vitamin E deficiency
vitamin supplementation

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