Frangieh Chris J, Wilkinson Max E, Strebinger Daniel, Strecker Jonathan, Walsh Michelle L, Faure Guilhem, Yushenova Irina A, Macrae Rhiannon K, Arkhipova Irina R, Zhang Feng
Howard Hughes Medical Institute, Cambridge, MA, 02139, USA.
Broad Institute of MIT and Harvard, Cambridge, MA, 02142, USA.
Mob DNA. 2024 Jun 11;15(1):12. doi: 10.1186/s13100-024-00322-z.
Eukaryotic retroelements are generally divided into two classes: long terminal repeat (LTR) retrotransposons and non-LTR retrotransposons. A third class of eukaryotic retroelement, the Penelope-like elements (PLEs), has been well-characterized bioinformatically, but relatively little is known about the transposition mechanism of these elements. PLEs share some features with the R2 retrotransposon from Bombyx mori, which uses a target-primed reverse transcription (TPRT) mechanism, but their distinct phylogeny suggests PLEs may utilize a novel mechanism of mobilization. Using protein purified from E. coli, we report unique in vitro properties of a PLE from the green anole (Anolis carolinensis), revealing mechanistic aspects not shared by other retrotransposons. We found that reverse transcription is initiated at two adjacent sites within the transposon RNA that is not homologous to the cleaved DNA, a feature that is reflected in the genomic "tail" signature shared between and unique to PLEs. Our results for the first active PLE in vitro provide a starting point for understanding PLE mobilization and biology.
长末端重复序列(LTR)逆转座子和非LTR逆转座子。真核生物逆转录元件的第三类,即类佩内洛普元件(PLEs),已通过生物信息学得到充分表征,但对这些元件的转座机制了解相对较少。PLEs与家蚕的R2逆转座子有一些共同特征,R2逆转座子采用靶标引发的逆转录(TPRT)机制,但其独特的系统发育表明PLEs可能利用一种新的移动机制。利用从大肠杆菌中纯化的蛋白质,我们报道了来自绿安乐蜥(Anolis carolinensis)的一种PLE的独特体外特性,揭示了其他逆转座子所没有的机制方面。我们发现逆转录在转座子RNA内两个不与切割的DNA同源的相邻位点起始,这一特征反映在PLEs之间共有的且独特的基因组“尾巴”特征中。我们对第一个体外活性PLE的研究结果为理解PLE的移动和生物学提供了一个起点。