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发育中大脑的蛋白质代谢区室

Compartments of protein metabolism in the developing brain.

作者信息

Lajtha A, Dunlop D, Patlak C, Toth J

出版信息

Biochim Biophys Acta. 1979 Feb 27;561(2):491-501. doi: 10.1016/0005-2787(79)90157-6.

Abstract

We investigated whether the higher rate of amino acid incorporation into immature than into mature brain protein is due to (a) rapid growth, (b) a small rapidly metabolized protein pool, or (c) a higher turnover rate of most of the protein. We measured net growth and the incorporation of [14C]tyrosine or [14C]valine into brain proteins in young rats and mice. The specific activity of the free amino acid pool was kept constant in the tyrosine experiments. Incorporation of tyrosine into protein was continued for up to 30 h by which time the specific activity of protein-bound amino acid reached 1/3 of that of the free (precursor) amino acid. The growth (accretion) of brain proteins was approx. 0.635% per h in mice and rats in the 1-4 day period after birth. In previous studies we found that the turnover rate of the bulk (about 96%) of adult brain proteins is below 0.3% per h. Because of the presence of a small (about 4%) active pool the average turnover rate is 0.6% per h. The present experiments show a degradation rate of 0.7-1.1% per h in the brain proteins of the young. This high metabolic rate is not due to a small rapidly degraded fraction of protein. The very rapid protein fraction previously seen in adult rats is either very small (below 1%) or absent in the young. Thus most of the proteins in the immature brain during the rapid growth phase are formed and broken down at a rate that is approximately three times higher than that of the bulk of proteins in the adult brain. The small active protein pool in the adult on the other hand has a metabolic rate higher than that of the immature brain proteins.

摘要

我们研究了未成熟脑蛋白中氨基酸掺入率高于成熟脑蛋白的原因是

(a) 快速生长;(b) 一个小的快速代谢的蛋白池;还是 (c) 大多数蛋白的更高周转率。我们测量了幼鼠和小鼠脑蛋白的净生长以及[14C]酪氨酸或[14C]缬氨酸的掺入情况。在酪氨酸实验中,游离氨基酸池的比活性保持恒定。酪氨酸掺入蛋白的过程持续长达30小时,此时结合蛋白的氨基酸比活性达到游离(前体)氨基酸比活性的1/3。出生后1 - 4天,小鼠和大鼠脑蛋白的生长(积聚)速度约为每小时0.635%。在先前的研究中我们发现,成人大脑大部分(约96%)蛋白的周转率低于每小时0.3%。由于存在一个小的(约4%)活性池,平均周转率为每小时0.6%。目前的实验表明,幼鼠脑蛋白的降解率为每小时0.7 - 1.1%。这种高代谢率并非由于一小部分快速降解的蛋白。之前在成年大鼠中看到的非常快速周转的蛋白部分在幼鼠中要么非常小(低于1%),要么不存在。因此,在快速生长阶段,未成熟脑的大多数蛋白的形成和分解速度大约是成人大脑大部分蛋白的三倍。另一方面,成人大脑中的小活性蛋白池的代谢率高于未成熟脑蛋白。

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