Padilla-Vaca Felipe, Vargas-Maya Naurú Idalia, Ramírez-Montiel Fátima Berenice, Delgado-Galván Cindy Jazmín, Rangel-Serrano Ángeles, Paramo-Pérez Itzel, Anaya-Velázquez Fernando, Franco Bernardo
División de Ciencias Naturales y Exactas, Departamento de Biología, Universidad de Guanajuato, Noria Alta s/n, 36050, Guanajuato, Gto, México.
Antonie Van Leeuwenhoek. 2021 Feb;114(2):209-221. doi: 10.1007/s10482-020-01504-4. Epub 2021 Jan 4.
Entamoeba histolytica represents a useful model in parasitic organisms due to its complex genomic organization and survival mechanisms. To counteract pathogenic organisms, it is necessary to characterize their molecular biology to design new strategies to combat them. In this report, we investigated a less-known genetic element, short interspersed nuclear element 2 (SINE2), that is present in this ameba and is highly transcribed and polyadenylated. In this study, we show that in two different nonvirulent strains of E. histolytica, SINE2 is differentially processed into two transcript fragments, that is, a full-length 560-nt fragment and a shorter 393-nt fragment bearing an approximately 18-nt polyadenylation tail. Sequence analysis of the SINE2 transcript showed that a Musashi-like protein may bind to it. Also, two putative Musashi-like sequences were identified on the transcript. Semiquantitative expression analysis of the two Musashi-like proteins identified in the E. histolytica genome (XP_648918 and XP_649094) showed that XP_64094 is overexpressed in the nonvirulent strains tested. The information available in the literature and the results presented in this report indicate that SINE2 may affect other genes, as observed with the epigenetic silencing of the G3 strain, by an antisense mechanism or via RNA-protein interactions that may ultimately be involved in the phenotype of nonvirulent strains of E. histolytica.
由于溶组织内阿米巴具有复杂的基因组组织和生存机制,它成为寄生生物中一个有用的模型。为了对抗病原生物,有必要对其分子生物学进行表征,以设计新的对抗策略。在本报告中,我们研究了一种鲜为人知的遗传元件,即短散在核元件2(SINE2),它存在于这种阿米巴中,并且高度转录和多聚腺苷酸化。在本研究中,我们表明,在两种不同的非致病力溶组织内阿米巴菌株中,SINE2被差异加工成两个转录片段,即一个全长560 nt的片段和一个较短的393 nt片段,后者带有一个约18 nt的多聚腺苷酸尾巴。SINE2转录本的序列分析表明,一种类Musashi蛋白可能与其结合。此外,在转录本上鉴定出两个推定的类Musashi序列。对溶组织内阿米巴基因组中鉴定出的两种类Musashi蛋白(XP_648918和XP_649094)的半定量表达分析表明,XP_64094在测试的非致病力菌株中过表达。文献中的现有信息和本报告中的结果表明,SINE2可能通过反义机制或通过RNA-蛋白质相互作用影响其他基因,这在G3菌株的表观遗传沉默中已观察到,而这最终可能与溶组织内阿米巴非致病力菌株的表型有关。