Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA.
California Institute for Quantitative Biosciences, University of California, Berkeley, CA 94720, USA.
Open Biol. 2020 Dec;10(12):200244. doi: 10.1098/rsob.200244. Epub 2020 Dec 23.
P elements were first discovered in the fruit fly as the causative agents of a syndrome of aberrant genetic traits called hybrid dysgenesis. This occurs when P element-carrying males mate with females that lack P elements and results in progeny displaying sterility, mutations and chromosomal rearrangements. Since then numerous genetic, developmental, biochemical and structural studies have culminated in a deep understanding of P element transposition: from the cellular regulation and repression of transposition to the mechanistic details of the transposase nucleoprotein complex. Recent studies have revealed how piwi-interacting small RNA pathways can act to control splicing of the P element pre-mRNA to modulate transposase production in the germline. A recent cryo-electron microscopy structure of the P element transpososome reveals an unusual DNA architecture at the transposon termini and shows that the bound GTP cofactor functions to position the transposon ends within the transposase active site. Genome sequencing efforts have shown that there are P element transposase-homologous genes (called THAP9) in other animal genomes, including humans. This review highlights recent and previous studies, which together have led to new insights, and surveys our current understanding of the biology, biochemistry, mechanism and regulation of P element transposition.
P 元素最初在果蝇中被发现,是一种称为杂种不育的异常遗传特征综合征的致病因子。当携带 P 元素的雄性与缺乏 P 元素的雌性交配时,就会发生这种情况,导致后代出现不育、突变和染色体重排。从那时起,许多遗传、发育、生化和结构研究使人们对 P 元素转座有了深入的了解:从转座的细胞调控和抑制到转座酶核蛋白复合物的机制细节。最近的研究揭示了 piwi 相互作用的小 RNA 途径如何控制 P 元素前体 mRNA 的剪接,从而调节生殖细胞中转座酶的产生。最近的冷冻电子显微镜结构研究揭示了转座子末端的一种不寻常的 DNA 结构,并表明结合的 GTP 辅助因子的功能是将转座子末端定位在转座酶的活性位点内。基因组测序工作表明,其他动物基因组中也存在 P 元素转座酶同源基因(称为 THAP9),包括人类。这篇综述强调了最近和以前的研究,这些研究共同带来了新的见解,并概述了我们目前对 P 元素转座的生物学、生物化学、机制和调控的理解。