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A Small RNA-Based Immune System Defends Germ Cells against Mobile Genetic Elements

机译:一个小的基于RNA的免疫系统防御生殖细胞对移动遗传元件的攻击。

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Transposons are mobile genetic elements that threaten the survival of species by destabilizing the germline genomes. Limiting the spread of these selfish elements is imperative. Germ cells employ specialized small regulatory RNA pathways to restrain transposon activity. PIWI proteins and Piwi-interacting RNAs (piRNAs) silence transposons at the transcriptional and posttranscriptional level with loss-of-function mutant animals universally exhibiting sterility often associated with germ cell defects. This short review aims to illustrate basic strategies of piRNA-guided defense against transposons. Mechanisms of piRNA silencing are most readily studied inDrosophila melanogaster, which serves as a model to delineate molecular concepts and as a reference for mammalian piRNA systems. PiRNA pathways utilize two major strategies to handle the challenges of transposon control: (1) the hard-wired molecular memory of prior transpositions enables recognition of mobile genetic elements and discriminates transposons from host genes; (2) a feed-forward adaptation mechanism shapes piRNA populations to selectively combat the immediate threat of transposon transcripts. In flies, maternally contributed PIWI-piRNA complexes bolster both of these lines of defense and ensure transgenerational immunity. While recent studies have provided a conceptual framework of what could be viewed as an ancient immune system, we are just beginning to appreciate its many molecular innovations.
机译:转座子是通过破坏种系基因组稳定性来威胁物种生存的移动遗传元件。必须限制这些自私因素的蔓延。生殖细胞采用专门的小调节RNA途径来抑制转座子活性。 PIWI蛋白和Piwi相互作用RNA(piRNA)在转录和转录后水平沉默转座子,而功能丧失的突变动物普遍表现出不育性,通常与生殖细胞缺陷有关。这篇简短的综述旨在说明piRNA引导的转座子防御的基本策略。在果蝇中最容易研究piRNA沉默的机制,该机制可作为描述分子概念的模型并为哺乳动物piRNA系统提供参考。 PiRNA途径利用两种主要策略来应对转座子控制的挑战:(1)先前转座的硬连线分子记忆能够识别可移动的遗传元件并区分转座子与宿主基因; (2)前馈适应机制使piRNA群体成形,以选择性地对抗转座子转录本的直接威胁。在果蝇中,由母亲提供的PIWI-piRNA复合物可增强这两种防御力,并确保跨代免疫。尽管最近的研究提供了可以被视为古老的免疫系统的概念框架,但我们才刚刚开始欣赏其许多分子创新。

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