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长链和短链非编码 RNA 与辐射反应:综述。

Long and short non-coding RNA and radiation response: a review.

机构信息

Radiation Oncology Branch, Center for Cancer Research, National Cancer Institute, Bethesda, Maryland.

Radiation Oncology Branch, Center for Cancer Research, National Cancer Institute, Bethesda, Maryland; Radiation Research Program, National Cancer Institute, National Institutes of Health, Rockville, Maryland.

出版信息

Transl Res. 2021 Jul;233:162-179. doi: 10.1016/j.trsl.2021.02.005. Epub 2021 Feb 11.

Abstract

Once thought of as arising from "junk DNA," noncoding RNAs (ncRNAs) have emerged as key molecules in cellular processes and response to stress. From diseases such as cancer, coronary artery disease, and diabetes to the effects of ionizing radiation (IR), ncRNAs play important roles in disease progression and as biomarkers of damage. Noncoding RNAs regulate cellular processes by competitively binding DNA, mRNA, proteins, and other ncRNAs. Through these interactions, specific ncRNAs can modulate the radiosensitivity of cells and serve as diagnostic and prognostic biomarkers of radiation damage, whether from incidental exposure in radiotherapy or in accidental exposure scenarios. Analysis of RNA expression after radiation exposure has shown alterations not only in mRNAs, but also in ncRNAs (primarily miRNA, circRNA, and lncRNA), implying an important role in cellular stress response. Due to their abundance and stability in serum and other biofluids, ncRNAs also have great potential as minimally invasive biomarkers with advantages over current biodosimetry methods. Several studies have examined changes in ncRNA expression profiles in response to IR and other forms of oxidative stress. Furthermore, some studies have reported modulation of radiosensitivity by altering expression levels of these ncRNAs. This review discusses the roles of ncRNAs in the radiation response and evaluates prior research on ncRNAs as biomarkers of radiation damage. Future directions and applications of ncRNAs in radiation research are introduced, including the potential for a clinical ncRNA assay for assessing radiation damage and for the therapeutic use of RNA interference (RNAi).

摘要

曾经被认为是“垃圾 DNA”的非编码 RNA(ncRNA)已成为细胞过程和应激反应中的关键分子。从癌症、冠状动脉疾病和糖尿病等疾病到电离辐射(IR)的影响,ncRNA 在疾病进展和作为损伤的生物标志物方面发挥着重要作用。ncRNA 通过竞争性结合 DNA、mRNA、蛋白质和其他 ncRNA 来调节细胞过程。通过这些相互作用,特定的 ncRNA 可以调节细胞的放射敏感性,并作为放射损伤的诊断和预后生物标志物,无论是放疗中的偶然暴露还是意外暴露情况。对辐射暴露后 RNA 表达的分析表明,不仅在 mRNAs 中,而且在 ncRNAs(主要是 miRNA、circRNA 和 lncRNA)中也发生了改变,这意味着它们在细胞应激反应中具有重要作用。由于它们在血清和其他生物体液中的丰富性和稳定性,ncRNA 作为微创生物标志物具有很大的潜力,其优势超过了当前的生物剂量测定方法。有几项研究探讨了 ncRNA 表达谱在应对 IR 和其他形式的氧化应激时的变化。此外,一些研究报告称,通过改变这些 ncRNA 的表达水平来调节放射敏感性。这篇综述讨论了 ncRNA 在辐射反应中的作用,并评估了 ncRNA 作为辐射损伤生物标志物的先前研究。介绍了 ncRNA 在辐射研究中的未来方向和应用,包括评估辐射损伤的临床 ncRNA 检测以及 RNA 干扰(RNAi)治疗用途的潜力。

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