Title of article :
Phenytoin Alters Transcript Levels of Hormone-Sensitive Lipase in Muscle from Horses with Hyperkalemic Periodic Paralysis
Author/Authors :
Yudkowsky، نويسنده , , Michelle L. and Beech، نويسنده , , Jill and Fletcher، نويسنده , , Jeffrey E.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
7
From page :
264
To page :
270
Abstract :
In equine hyperkalemic periodic paralysis (HyperPP), there is evidence suggesting that the primary defect in the sodium channel is associated with a secondary alteration in triacylglycerol-associated fatty acid metabolism (TAFAM) in skeletal muscle. Furthermore, TAFAM may be involved in the therapeutic action of phenytoin. The effects of phenytoin treatment on the transcript levels of three key proteins in TAFAM, hormone sensitive lipase (HSL), carnitine palmitoyltransferase (CPT), and fatty acid binding protein (FABP), were examined. These transcripts were quantitated by competitive reverse transcription polymerase chain reaction in undifferentiated and differentiated primary cultures of equine skeletal muscle from control, heterozygous HyperPP, and homozygous-affected HyperPP horses. There was a 10-fold lower level of HSL transcript in both undifferentiated and differentiated cultures from homozygous-affected horses than from horses of the other genotypes. Phenytoin selectively increased the HSL transcript in homozygous-affected differentiated cultures to levels similar to those of the other genotypes. The levels of CPT and FABP transcripts were unaffected by genotype, differentiation, and phenytoin treatment. These results suggest that the primary defect in HyperPP may secondarily decrease HSL transcript levels and that the therapeutic action of phenytoin may include regulation of mRNA transcripts in skeletal muscle.
Keywords :
Skeletal muscle , Hormone-sensitive lipase , hyperkalemic periodic paralysis , fatty acid , Phenytoin
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
1998
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1613392
Link To Document :
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