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利用二维聚丙烯酰胺凝胶电泳对家蚕的tRNA适应性、tRNA周转、前体tRNA和tRNA基因分布进行的研究。

Studies on tRNA adaptation, tRNA turnover, precursor tRNA and tRNA gene distribution in Bombyx mori by using two-dimensional polyacrylamide gel electrophoresis.

作者信息

Chevallier A, Garel J P

出版信息

Biochimie. 1979;61(2):245-62. doi: 10.1016/s0300-9084(79)80070-x.

Abstract

Eighteen out of twenty amino acids have been used for identifying tRNAs from the silkworm Bombyx mori L. fractionated on two-dimensional polyacrylamide gel electrophoresis. 43 spots out of 53 have been identified. This mapping confirms previous results and brings new answers to some questions on the regulation of tRNA biosynthesis. 1. In addition to quantitative adaptation of tRNAs to the composition of silk proteins (fibroin from the posterior silk gland, sericin from the middle part) and of iso-tRNAs from posterior silk gland to the major codons of fibroin mRNA, we also observe adaptation of tRNA from various tissues to the average amino acid content of proteins from fat body, gut, gonads and carcass of the silkworm. 2. In the silk gland, turnover rates of several tRNA species are similar. The selective accumulation of tRNAs needed for decoding fibroin and sericin mRNAs which takes place during the Vth larval instar, cannot be explained by the occurrence of a preferential degradation of some tRNA species. 3. Under given conditions for incubating silk glands, it is possible to obtain an accumulation of precursor tRNA species, which are enriched in pre-tRNAAla and pre-tRNAGly in the posterior silk gland and pre-tRNASer in the middle part. 4. The distribution of tRNA genes is not random. tRNA genes for glycine, alanine and serine are prominent. Selective transcription of batteries of iso-tRNA genes could explain our data.

摘要

二十种氨基酸中的十八种已被用于从家蚕(Bombyx mori L.)中鉴定经二维聚丙烯酰胺凝胶电泳分离的tRNA。在53个斑点中已鉴定出43个。这种图谱分析证实了先前的结果,并为tRNA生物合成调控的一些问题带来了新的答案。1. 除了tRNA在数量上适应丝蛋白(后部丝腺的丝心蛋白、中部的丝胶蛋白)的组成,以及后部丝腺的同工tRNA适应丝心蛋白mRNA的主要密码子外,我们还观察到来自不同组织的tRNA适应家蚕脂肪体、肠道、性腺和蚕体蛋白质的平均氨基酸含量。2. 在丝腺中,几种tRNA种类的周转率相似。在五龄幼虫期发生的用于解码丝心蛋白和丝胶蛋白mRNA所需的tRNA的选择性积累,不能用某些tRNA种类优先降解来解释。3. 在给定的丝腺培养条件下,有可能获得前体tRNA种类的积累,后部丝腺中前体tRNA Ala和前体tRNA Gly以及中部前体tRNA Ser含量丰富。4. tRNA基因的分布不是随机的。甘氨酸、丙氨酸和丝氨酸的tRNA基因很突出。同工tRNA基因簇的选择性转录可以解释我们的数据。

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