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首页> 外文期刊>Systems biology in reproductive medicine >A reverse transcriptase-dependent mechanism plays central roles in fundamental biological processes.
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A reverse transcriptase-dependent mechanism plays central roles in fundamental biological processes.

机译:逆转录酶依赖性机制在基本生物学过程中起着核心作用。

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摘要

This review summarizes emerging evidence that LINE-1 (Long Interspersed Nuclear Elements) -encoded reverse transcriptase (RT) regulates fundamental biological processes. Earlier studies showed that sperm cells can be used as vectors of both exogenous DNA and RNA molecules in sperm-mediated gene transfer assays. During these studies, a sperm endogenous RT activity was identified, which can reverse-transcribe exogenous RNA directly, or DNA molecules through sequential transcription and reverse transcription. Resulting cDNA copies generated in sperm cells can be delivered to embryos at fertilization, further propagated in tissues as low-copy extrachromosomal structures and transmitted to the progeny in a non-mendelian fashion. Being transcriptionally competent, they can induce phenotypic variations in positive tissues. An RT activity is also present in preimplantation embryos, and its inhibition causes developmental arrest in early preimplantation stages, paralleled by an extensive reprogramming of gene expression. In analogy with this, drug-mediated inhibition of RT activity, or RNA interference-mediated silencing of human LINE-1, reduce cell proliferation and induce differentiation in a variety of cancer cell lines. Furthermore, RT inhibition in vivo antagonizes the growth of human tumors in animal models. As a whole, these data implicate a RT-dependent machinery in the genesis of new genetic information in spermatozoa and in normal and pathological developmental processes.
机译:这篇综述总结了新出现的证据,即LINE-1(长穿插的核元素)编码的逆转录酶(RT)调节基本的生物学过程。较早的研究表明,在精子介导的基因转移测定中,精子细胞可以用作外源DNA和RNA分子的载体。在这些研究中,鉴定出了精子内源性RT活性,它可以直接逆转录外源RNA,或通过顺序转录和逆转录来逆转录DNA分子。精子细胞中产生的cDNA拷贝可以在受精时传递给胚胎,进一步以低拷贝的染色体外结构在组织中传播,并以非孟德尔方式传递给后代。具有转录能力,它们可以在阳性组织中诱导表型变异。 RT活性也存在于植入前的胚胎中,其抑制作用会在植入前的早期阶段导致发育停滞,与此同时,基因表达也会大量重新编程。与此类似,药物介导的RT活性抑制或人类LINE-1的RNA干扰介导的沉默降低细胞增殖并诱导多种癌细胞系分化。此外,体内RT抑制在动物模型中拮抗人类肿瘤的生长。总体而言,这些数据暗示了在精子中以及正常和病理发育过程中新遗传信息的产生中依赖RT的机制。

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