• 제목/요약/키워드: Metabolic cooperativity

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포유동물 난자-난구 복합체의 Metabolic cooperativity (Studies on the Metabolic Cooperativity between Ooccte and Cumulus Cells in Mammalian Oocyte Cumulus Complexes in vitro)

  • 고선근;나철호;권혁방
    • 한국동물학회지
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    • 제31권2호
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    • pp.81-86
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    • 1988
  • 생쥐혹은 돼지의 난자-난구 복합체를 인공배양하면서 뇌하수체호르몬 혹은 세포내 cAMP의 농도를 높이는 시약을 사용하여 난자의 성숙과 난구세포의 분산을 조절하고 이 때 두 세토들 사이에 상호협력(metabolic cooperativity)관계가 어떻게 변하는지를 조사하여 보았다. 생귀와 돼지의 난구세포들은 뇌하수체호르몬이나 cAMP의 증가에 의해 분산이 유도됨과 동시에 배양액 내에서 있는 uridine의 흡수가 크게 촉진되었다. (대조군의 약 4배). 그러나 난구세포에 흡수된 uridine이 난자로 전달되는 물질이동율(transfer ratio)은 대조군과 같이 시간이 지남에 따라 감소하였으며 cAMP의 영향도 거의 받지 않았다. 또한 물질이동율의 감소는 난구세포의 부산여부나 난자의 성숙(핵붕괴) 여부에 크게 영향을 받지 않았다.단지 생쥐의 경우 호르몬에 의해 물질이동율의 감소가 더욱 두드러지게 나타나는 경우를 볼수 있었다. 따라서 물질이동율의 변화가 난구세포의 분산이나 난자의 성숙과 직접 관련이 없는 것으로 보여지며 두 세포들 사이의 metabolic cooperativity가 난자의 성숙조절에 중요한 요인이 되지 않는다는 것을 알았다.

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Metabolic Interactions of Cannabinoids with Steroid Hormones

  • Watanabe, Kazuhito
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2007년도 Proceedings of The Convention
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    • pp.57-64
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    • 2007
  • Metabolic interactions of the three major cannabinoids, ${\Delta}^9$-tetrahydrocannabinol (THC), cannabidiol (CBD), and cannabinol (CBN) with steroid hormones were investigated. These cannabioids concentration-dependently inhibited $3{\beta}$-hydroxysteroid dehydrogenase and $17{\alpha}$-hydroxylase in rat adrenal and testis microsomes. CBD and CBN were the most potent inhibitors of $3{\beta}$-phydroxysteroid dehydrogenase and progesterone $17{\alpha}$-hydroxylase, respectively, in rat testis microsomes. Three cannabinoids highly attenuated hCG-stimulated testosterone production in rat testicular interstitial cells. These cannabinoids also decreased in levels of mRNA and protein of StAR in the rat testis cells. These results indicate that the cannabinoids could interact with steroid hormones, and exert their modulatory effects on endocrine and testicular functions. Metabolic interaction of a THC metabolite, $7{\beta}$-hydroxy-${\Delta}^8$-THC with steroids is also investigated. Monkey liver microsomes catalyzed the stereoselective oxidation of $7{\beta}$-hydroxy-${\Delta}^8$-THC to 7-oxo-${\Delta}^8$-THC, so-called microsomal alcohol oxygenase (MALCO). The reaction is catalyzed by CYP3A8 in the monkey liver microsomes, and required NADH as well as NADPH as an efficient cofactor, and its activity is stimulated by some steroids such as testosterone and progesterone. Kinetic analyses revealed that MALCO-catalyze reaction showed positive cooperativity. In order to explain the metabolic interaction between the cannabinoid metabolite and testosterone, we propose a novel kinetic model involving at least three binding sites for mechanism of the metabolic interactions.

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