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학술논문

Expression of ATP-sensitive Potassium Channel and Sulfonylurea Receptor in Neonate and Adult Rat Tissues

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영문명
Expression of ATP-sensitive Potassium Channel and Sulfonylurea Receptor in Neonate and Adult Rat Tissues
발행기관
대한생리학회-대한약리학회
저자명
So-Yeong Lee Hang Lee Mun-Han Lee Pan-Dong Ryu
간행물 정보
『The Korean Journal of Physiology & Pharmacology』제5권 제5호, 433~441쪽, 전체 9쪽
주제분류
의약학 > 의학일반
파일형태
PDF
발행일자
2001.01.01
4,000

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The ATP-sensitive potassium (KATP) channel is a member of inward rectifier potassium channel (Kir) that is inhibited by intracellular ATP and functions in close relation to sulfonylurea receptors (SUR). Although the molecular mechanism and physiological function of KATP channels are well understood, the expression pattern during development or treatment with the channel modulators such as glybenclamide is little known. In this work, we determined mRNA levels of a KATP channel (Kir6.2) and a sulfonylurea receptor (SUR2) in rat tissues by RNase protection assay. Levels of Kir6.2 and SUR2 mRNA in the rat brain and skeletal muscle were higher in adult (90∼120 days) than in neonate (2∼8 days), whereas those in the heart were not much different between neonate (2∼8 days) and adult (90∼120 days). In addition, none of KATP channel modulators (opener, pinacidil and nicorandil; blocker, glybenclamide) affected the Kir6.2 mRNA levels in the heart, brain and skeletal muscle. The results indicate that the expression of Kir and SUR genes can vary age-dependently, but the expression of Kir is not dependent on the long-term treatment of channel modulators. The effect of the channel modulators on mRNA level of SUR is remained to be studied further.

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APA

So-Yeong Lee,Hang Lee,Mun-Han Lee,Pan-Dong Ryu. (2001).Expression of ATP-sensitive Potassium Channel and Sulfonylurea Receptor in Neonate and Adult Rat Tissues. The Korean Journal of Physiology & Pharmacology, 5 (5), 433-441

MLA

So-Yeong Lee,Hang Lee,Mun-Han Lee,Pan-Dong Ryu. "Expression of ATP-sensitive Potassium Channel and Sulfonylurea Receptor in Neonate and Adult Rat Tissues." The Korean Journal of Physiology & Pharmacology, 5.5(2001): 433-441

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