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条纹狼鲈(Paralabrax sp.)中的氨基酸糖异生作用和葡萄糖周转

Amino acid gluconeogenesis and glucose turnover in kelp bass (Paralabrax sp.).

作者信息

Bever K, Chenoweth M, Dunn A

出版信息

Am J Physiol. 1981 Mar;240(3):R246-52. doi: 10.1152/ajpregu.1981.240.3.R246.

Abstract

The glucose replacement rate, plasma glucose concentration, glucose body mass, and amino acid gluconeogenesis were determined in vivo in fed and fasted kelp bass (Paralabrax clathratus) using [6-3H]glucose administered with [U-14C]glutamate, [U-14C]aspartate, or [U-14C]alanine. Fasting (14 days) and prolonged starvation (72 days) do not produce changes in the replacement rate, body mass, or plasma concentration of glucose. The removal of amino acids from the circulation is rapid in both fed and fasting states with nearly 50% of the administered 14Ctracer disappearing by 5 min. The incorporation of [14C]amino acid carbon into the body glucose mass is also rapid with significant amounts of tracer appearing within 15 min after administration. Gluconeogenesis from alanine and glutamate is increased by fasting whereas that from aspartate is diminished. The gluconeogenic rate is comparable to that previously observed in rats (Dunn, A., M. Chenoweth, and J. G. Hemington. The relationship of adrenal glucocorticoids to transaminase activity and gluconeogenesis in the intact rat. Biochim. Biophys. Acta 237: 192-202, 1971), although the glucose replacement rate is significantly lower. We propose that the paradoxically high rate of gluconeogenesis in fish may serve to provide carbohydrate precursors for mucus synthesis in these carnivorous animals with limited carbohydrate intake.

摘要

使用[6-³H]葡萄糖与[U-¹⁴C]谷氨酸、[U-¹⁴C]天冬氨酸或[U-¹⁴C]丙氨酸一起给药,在喂食和禁食的多斑石鲈(Paralabrax clathratus)体内测定葡萄糖替代率、血浆葡萄糖浓度、葡萄糖体质量和氨基酸糖异生作用。禁食(14天)和长期饥饿(72天)不会使葡萄糖的替代率、体质量或血浆浓度发生变化。在喂食和禁食状态下,循环中氨基酸的清除都很快,给药后5分钟内,近50%的¹⁴C示踪剂消失。[¹⁴C]氨基酸碳掺入体葡萄糖质量的速度也很快,给药后15分钟内就有大量示踪剂出现。禁食会增加丙氨酸和谷氨酸的糖异生作用,而天冬氨酸的糖异生作用则会减弱。尽管葡萄糖替代率明显较低,但糖异生率与先前在大鼠中观察到的相当(邓恩,A.,M. 切诺韦斯,和J. G. 亨明顿。完整大鼠中肾上腺糖皮质激素与转氨酶活性和糖异生作用的关系。生物化学与生物物理学报237: 192 - 202, 1971)。我们提出,鱼类中异常高的糖异生率可能有助于为这些碳水化合物摄入量有限的肉食性动物的黏液合成提供碳水化合物前体。

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