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饥饿对家蚕后部丝腺中tRNA合成、氨基酸库、tRNA负载水平及氨酰-tRNA合成酶活性的影响

Effect of starvation on tRNA synthesis, amino acid pool, tRNA charging levels and aminoacyl-tRNA synthetase activities in the posterior silk gland of Bombyx mori L.

作者信息

Chavancy G, Fournier A

出版信息

Biochimie. 1979;61(2):229-43. doi: 10.1016/s0300-9084(79)80069-3.

Abstract

Changes in the translational machinery components of the Bombyx mori posterior silk gland were analysed during starvation and refeeding and compared to the regularly fed larvae. During starvation, tRNA and ribosomal RNA synthesis are stopped. The amounts of different RNA classes and of the different tRNA species slow down at the same rate. Thus various tRNA show similar half-lifes and the preexisting tRNA adaptation to fibroin mRNA translation persists during starvation. Similarly, the tRNA/rRNA ratio is constant during starvation and refeeding (12 tRNA molecules for one ribosome) as in silk glands of control animals. Aminoacyl-tRNA synthetases and tRNA charging levels are decreased during starvation. The maximal tRNA charging level obtained during maximal protein synthesis in control animals is regained after 24 h refeeding of starved larvae. Changes observed in the free amino acid pool are not similar from one amino acid to another and levels reached after starvation do not differ strongly from the controls. Our results suggest that the production of translation apparatus components is coordinated and adjusted to the protein synthesis activity. Whether this coordination occurs in the silk gland is discussed on the basis of the "metabolic regulation", primarily described in prokaryotes and Yeast. Transfer RNA charging levels seem to play a key role in the process of regulation and could be implicated in the mechanism of tRNA adaptation if this phenomenon results as expected from a transcriptional control.

摘要

在饥饿和重新喂食期间,对家蚕后部丝腺翻译机制成分的变化进行了分析,并与正常喂食的幼虫进行了比较。在饥饿期间,tRNA和核糖体RNA的合成停止。不同RNA种类和不同tRNA物种的数量以相同的速率减缓。因此,各种tRNA显示出相似的半衰期,并且在饥饿期间,先前存在的tRNA对丝心蛋白mRNA翻译的适应性仍然存在。同样,在饥饿和重新喂食期间,tRNA/核糖体RNA的比率保持恒定(一个核糖体对应12个tRNA分子),与对照动物的丝腺情况相同。在饥饿期间,氨酰-tRNA合成酶和tRNA负载水平降低。饥饿幼虫重新喂食24小时后,可恢复到对照动物在最大蛋白质合成期间获得的最大tRNA负载水平。游离氨基酸库中观察到的变化在不同氨基酸之间并不相似,饥饿后达到的水平与对照相比差异不大。我们的结果表明,翻译装置成分的产生是协调的,并根据蛋白质合成活性进行调整。基于主要在原核生物和酵母中描述的“代谢调节”,讨论了这种协调是否发生在丝腺中。如果这种现象如预期的那样是由转录控制导致的,那么tRNA负载水平似乎在调节过程中起关键作用,并且可能与tRNA适应性机制有关。

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