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[Mechanisms of spliceosomal introns loss and gain].

机译:[抗乳糖体内含子损失和增益的机制]。

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摘要

Introns are non-coding sequences within the genes. They seemed to be just "junk" DNA, although currently are considered as important genetic elements influencing the genome functions, as they increase the diversity of transcriptome and proteome, perform regulatory activities in the cell, affect gene expression, mRNA processing, degradation and translation. Based on the mechanism of their excision, introns were classified into three main categories: spliceosomal, self-splicing and tRNA introns. Spliceosomal introns are unique for eukaryotic organisms. Sequence analyses of orthologous genes in different groups of eukaryotes revealed many cases of intron gains and losses due to the multiple mechanisms. Some of these events took place in the distant past, while others happened relatively recently. It is believed that these processes can act as one of the forces driving the evolution of eukaryotic genes.
机译:内含子是基因内的非编码序列。 它们似乎只是“垃圾”DNA,尽管目前被认为是影响基因组功能的重要遗传因素,因为它们增加了转录组和蛋白质组的多样性,但在细胞中进行调节活动,影响基因表达,mRNA加工,降解和翻译 。 基于他们的切除机制,内含子被分为三个主要类别:抗乳糖体,自剪定和TRNA内含子。 对真核生物来说是独特的。 不同群体中的正交基因的序列分析显示出许多内含子增益和由于多种机制的损失。 其中一些事件发生在遥远的过去,而其他事件最近发生过。 据信这些过程可以充当驱动真核基因的演变的力之一。

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    《Postepy Biochemii》 |2019年第4期|共10页
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  • 正文语种 eng
  • 中图分类 生物化学;
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