克氏锥虫kDNA微环序列整合到脊椎动物宿主基因组:监测多药治疗恰加斯病疗效的生物标志物

Antonio Raimundo Lima Teixeira, Clever Cardoso Gomes, Adriana Alves Sá, Rubens José Nascimento, Liana Lauria-Pires, Ana Maria Castro, Francisco Ernesto Moreno Bernal, Alessandro Oliveira de Sousa
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引用次数: 0

摘要

原生克氏锥虫将着丝体DNA微环序列插入宿主基因组。特异引物组的敏感PCR显示,在琼脂糖凝胶带中发现原生动物核DNA和着丝体DNA,并用放射性标记特异性序列探测克氏绦虫感染兔和小鼠的组织。禽类对这种感染是不耐受的,但是从接种了克鲁兹锥虫的鸡蛋中孵化出来的小鸡在胚胎生殖系细胞中保留了着丝体DNA,并发展成无寄生虫的恰加斯病样心肌病。利用特异引物、Southern杂交、克隆和扩增产物测序的靶引物TAIL-PCR显示,着丝体微环序列整合位点主要在LINE-1转座元件上,并搭便车到多个位点。该生物标志物用于监测克氏锥虫感染小鼠的多药治疗效果。一种锥虫型硝基杂环化合物与一系列真核细胞分裂抑制剂联合使用,可阻止微环序列转移。12种抑制剂中有9种阻止着丝粒DNA整合到巨噬细胞基因组中。用苯并硝唑、叠氮胸苷和氧氟沙星对感染克氏t细胞的小鼠进行多药治疗,使小鼠基因组中微环序列整合率降低了2.44倍,并降低了靶心脏细胞的排斥反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trypanosoma cruzi kDNA minicircle sequences integration into the vertebrate host genome: A biomarker for monitoring the efficacy of multidrug treatment of Chagas disease
The protist Trypanosoma cruzi inserts kinetoplast DNA minicircle sequences into the host genome. Sensitive PCR with specific primer sets revealed protozoan nuclear DNA and kinetoplast DNA in agarose gels bands probed with radiolabel specific sequences for tissues of T. cruzi-infected rabbits and mice. Avian species are refractory to the infection, but chicks that hatched from T. cruzi-inoculated eggs retained the kinetoplast DNA in the embryonic germ line cells and developed parasite-free Chagas disease-like cardiomyopathy. A Target-primer TAIL-PCR with specific primer sets, Southern hybridization, cloning, and sequencing of the amplification products revealed kinetoplast minicircle sequences integration sites mainly in LINE-1 transposable elements and hitchhiking to several loci. This kinetoplast DNA biomarker was used to monitor the effect of multidrug treatment of T. cruzi-infected mice. A trypanocidal nitro heterocyclic compound in combination with an array of inhibitors of eukaryotic cell division prevented minicircle sequences transfer. Nine out of 12 inhibitors prevented the kinetoplast DNA integration into the macrophage genome. The multidrug treatment of T. cruzi-infected mice with benznidazole, azidothymidine and ofloxacin lowered the rate of minicircle sequences integrations into the mouse genome by 2.44-fold and reduced the rejection of the target heart cells.
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