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ε-N-三甲基赖氨酸的可利用性调节生长中大鼠肉碱生物合成的速率。

epsilon-N-trimethyllysine availability regulates the rate of carnitine biosynthesis in the growing rat.

作者信息

Rebouche C J, Lehman L J, Olson L

出版信息

J Nutr. 1986 May;116(5):751-9. doi: 10.1093/jn/116.5.751.

Abstract

Rates of carnitine biosynthesis in mammals depend on the availability of substrates and the activity of enzymes subserving the pathway. This study was undertaken to test the hypothesis that the availability of epsilon-N-trimethyllysine is rate-limiting for synthesis of carnitine in the growing rat and to evaluate diet as a source of this precursor for carnitine biosynthesis. Rats apparently absorbed greater than 90% of a tracer dose of [methyl-3H]epsilon-N-trimethyllysine, and approximately 30% of that was incorporated into tissues as [3H]carnitine. Rats given oral supplements of epsilon-N-trimethyllysine (0.5-20 mg/d), but no dietary carnitine, excreted more carnitine than control animals receiving no dietary epsilon-N-trimethyllysine or carnitine. Rates of carnitine excretion increased in a dose-dependent manner. Tissue and serum levels of carnitine also increased with dietary epsilon-N-trimethyllysine supplementation. There was no evidence that the capacity for carnitine biosynthesis was saturated even at the highest level of oral epsilon-N-trimethyllysine supplementation. Common dietary proteins (casein, soy protein and wheat gluten) were found to be poor sources of epsilon-N-trimethyllysine for carnitine biosynthesis. The results of this study indicate that the availability of epsilon-N-trimethyllysine limits the rate of carnitine biosynthesis in the growing rat.

摘要

哺乳动物中肉碱的生物合成速率取决于底物的可利用性以及该途径中相关酶的活性。本研究旨在验证以下假设:ε-N-三甲基赖氨酸的可利用性是幼鼠肉碱合成的限速因素,并评估饮食作为肉碱生物合成前体来源的情况。大鼠显然吸收了超过90%的示踪剂量的[甲基-³H]ε-N-三甲基赖氨酸,其中约30%以[³H]肉碱的形式掺入组织中。口服补充ε-N-三甲基赖氨酸(0.5 - 20毫克/天)但不补充膳食肉碱的大鼠,比未接受膳食ε-N-三甲基赖氨酸或肉碱的对照动物排泄出更多的肉碱。肉碱排泄率呈剂量依赖性增加。补充膳食ε-N-三甲基赖氨酸后,组织和血清中的肉碱水平也有所增加。即使在口服ε-N-三甲基赖氨酸补充量最高的情况下,也没有证据表明肉碱生物合成能力已饱和。研究发现,常见的膳食蛋白质(酪蛋白、大豆蛋白和小麦面筋)作为肉碱生物合成中ε-N-三甲基赖氨酸的来源较差。本研究结果表明,ε-N-三甲基赖氨酸的可利用性限制了幼鼠肉碱生物合成的速率。

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