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绵羊体内的胆碱生物合成。肝外合成的证据。

Choline biosynthesis in sheep. Evidence for extrahepatic synthesis.

作者信息

Robinson B S, Snoswell A M, Runciman W B, Kuchel T R

机构信息

Department of Animal Sciences, Waite Agricultural Research Institute, University of Adelaide, South Australia.

出版信息

Biochem J. 1987 Jun 1;244(2):367-73. doi: 10.1042/bj2440367.

Abstract
  1. Choline production by various tissues of the sheep was measured by determining venous and arterial free choline concentrations in blood samples taken from various vessels in conscious multicannulated sheep. 2. Significant production of free choline occurred in the upper and lower body regions, and specifically in the heart, brain and hind-limb muscles of sheep, but there was no significant uptake or output of phosphatidylcholine across these tissues, as determined by arterio-venous differences. 3. In contrast, in the rat there were no significant arterio-venous differences in the concentrations of free choline or phosphatidylcholine across the hind-body. 4. Synthesis of phosphatidylcholine from endogenous phosphatidylethanolamine and S-adenosyl-L-[methyl-14C]methionine was measured in experiments in vitro using microsomal preparations from a variety of sheep and rat tissues. 5. The biosynthetic activity was highest in liver from sheep and rats, although the activity in sheep microsomal preparations was about one-quarter of that in rat microsomal preparations. 6. Microsomal preparations from sheep lung, kidney, gut epithelium, brain, heart and skeletal muscles also showed considerable biosynthetic activity, but in the rat the activity was virtually confined to the liver. 7. Overall, the results show a significant production of choline in extrahepatic tissues of the sheep, with skeletal muscle contributing some 60% of this extrahepatic activity. Thus the extrahepatic production of choline in the sheep, together with the extensive reutilization of bile choline, can explain the maintenance of the large endogenous body pool of choline in this species.
摘要
  1. 通过测定清醒的多插管绵羊不同血管采集的血样中静脉和动脉游离胆碱浓度,来测量绵羊各组织的胆碱生成量。2. 在绵羊的上半身和下半身区域,特别是心脏、大脑和后肢肌肉中,游离胆碱有显著生成,但通过动静脉差异测定,这些组织中磷脂酰胆碱没有明显的摄取或输出。3. 相比之下,大鼠后半身游离胆碱或磷脂酰胆碱浓度没有显著的动静脉差异。4. 使用来自各种绵羊和大鼠组织的微粒体制剂,在体外实验中测量了内源性磷脂酰乙醇胺和S-腺苷-L-[甲基-¹⁴C]甲硫氨酸合成磷脂酰胆碱的情况。5. 绵羊和大鼠肝脏中的生物合成活性最高,不过绵羊微粒体制剂中的活性约为大鼠微粒体制剂的四分之一。6. 绵羊肺、肾、肠上皮、大脑、心脏和骨骼肌的微粒体制剂也显示出相当的生物合成活性,但在大鼠中,该活性实际上仅限于肝脏。7. 总体而言,结果表明绵羊肝外组织中胆碱有显著生成,骨骼肌贡献了约60%的肝外活性。因此,绵羊胆碱的肝外生成以及胆汁胆碱的广泛再利用,可以解释该物种体内大量内源性胆碱池的维持。

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本文引用的文献

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A MICRO-BIURET METHOD FOR ESTIMATING PROTEINS.一种用于蛋白质定量的微量双缩脲法。
Anal Biochem. 1964 Dec;9:401-10. doi: 10.1016/0003-2697(64)90200-3.

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