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发育期间蛋白质缺乏对氨基酸掺入脑蛋白的影响。

The influence of protein deprivation during development on amino acid incorporation into cerebral proteins.

作者信息

Hamberger A, Conradi N G, Sourander P

出版信息

Res Exp Med (Berl). 1982;180(1):41-50. doi: 10.1007/BF01852231.

Abstract

The incorporation of 3H-valine into protein of cerebrum, liver, and muscle was studied in rats fed a low protein diet. Animals, 15-50 days old, were used to cover the period during and after the most rapid phase of cerebral protein synthesis. The precursor was administered in doses resulting in brain concentrations of free valine in the 0.1-0.3 mM range. Two series of experiments were run and the injected dose varied for comparison of protein synthesis at different concentrations of precursor valine. By concomitant amino-acid analysis it was shown that the concentration of other amino-acids in the brain was not changed by the injected valine. The changes in the amino-acid pool with age in control rats were in agreement with previous findings. Only small alterations were seen in the amino acid pool as an effect of protein deprivation, the results being consistent with those of some previous reports. Uptake of valine into the brain appeared to be decreased only in 15-17-day-old protein-deprived rats. Valine incorporation into cerebral protein was decreased in the youngest age group but no effect was seen in older animals. Liver protein incorporation was slightly decreased by low protein diet but a marked reduction was observed for muscle protein. The changes in brain protein synthesis during normal development were in agreement with previous studies and differed qualitatively from those in liver and muscle.

摘要

在喂食低蛋白饮食的大鼠中,研究了3H-缬氨酸掺入大脑、肝脏和肌肉蛋白质的情况。使用15至50日龄的动物,以涵盖大脑蛋白质合成最快阶段期间及之后的时间段。以能使大脑中游离缬氨酸浓度达到0.1 - 0.3 mM范围的剂量给予前体。进行了两个系列的实验,为比较不同浓度前体缬氨酸时的蛋白质合成情况,注射剂量有所变化。通过同步氨基酸分析表明,注射的缬氨酸并未改变大脑中其他氨基酸的浓度。对照大鼠氨基酸库随年龄的变化与先前的研究结果一致。作为蛋白质缺乏的影响,在氨基酸库中仅观察到微小变化,结果与一些先前报告一致。仅在15 - 17日龄蛋白质缺乏的大鼠中,缬氨酸进入大脑的摄取似乎减少。在最年幼的年龄组中,缬氨酸掺入大脑蛋白质减少,但在年长动物中未观察到影响。低蛋白饮食使肝脏蛋白质掺入略有减少,但肌肉蛋白质掺入则显著减少。正常发育过程中大脑蛋白质合成的变化与先前研究一致,且在性质上与肝脏和肌肉中的变化不同。

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