首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Importance of AGO 1 and 4 in Post-Transcriptional Gene Regulatory Function of tRF5-GluCTC an Respiratory Syncytial Virus-Induced tRNA-Derived RNA Fragment
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The Importance of AGO 1 and 4 in Post-Transcriptional Gene Regulatory Function of tRF5-GluCTC an Respiratory Syncytial Virus-Induced tRNA-Derived RNA Fragment

机译:前面的1和4在TRF5-Pluctc后转录后基因调节功能呼吸合胞病毒诱导的TRNA衍生的RNA片段

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摘要

Respiratory syncytial virus (RSV) is the most common cause of lower respiratory tract infection in infants, the elderly, and immune-compromised patients. It is also a significant contributor to upper respiratory tract infection in the pediatric population. However, its disease mechanisms are still largely unknown. We have recently shown that a tRNA-derived RNA fragment (tRF) from the 5′-end of mature tRNA encoding GluCTC (tRF5-GluCTC), a recently discovered non-coding RNA, is functionally important for RSV replication and host gene regulation at the post-transcriptional level. However, how tRF5-GluCTC carries out the gene regulation is not fully known. In this study, we found that tRF5-GluCTC has impaired gene trans-silencing function in cells deficient of AGO1 or 4, while AGO2 and 3 seem not involved in tRF5-GluCTC-mediated gene regulation. By pulling down individual AGO protein, we discovered that tRF5-GluCTC is detectable only in the AGO4 complex, confirming the essential role of AGO4 in gene regulation and also suggesting that AGO1 contributes to the gene trans-silencing activity of tRF5-GluCTC in an atypical way. We also found that the P protein of RSV is associated with both AGO1 and 4 and AGO4 deficiency leads to reduced infectious viral particles. In summary, this study demonstrates the importance of AGO1 and 4 in mediating the gene trans-silencing function of tRF5-GluCTC.
机译:呼吸道合胞病毒(RSV)是婴儿,老年人和免疫受损患者中呼吸道感染的最常见原因。它也是儿科人群上呼吸道感染的重要贡献者。然而,其疾病机制仍然很大程度上是未知的。我们最近表明,来自成熟TRNA的5'-末端的TRNA衍生的RNA片段(TRF)编码沼泽(TRF5-GRUCTC),最近被发现的非编码RNA,对于RSV复制和宿主基因调节在功能上是重要的转录后水平。然而,TRF5-PRONCTC如何进行基因调节尚不完全已知。在这项研究中,我们发现TRF5-Pructc在前面的细胞中受损的基因转沉默功能受损,同时虽然是2,3似乎没有参与TRF5-沼泽介导的基因调控。通过下拉蛋白质,我们发现TRF5-Pructc仅在前4个复合物中可检测到,确认以往4中的基本作用,并且还表明AGO1在非典型中有助于TRF5-Gructc的基因转沉默活性办法。我们还发现RSV的P蛋白与前一个和4岁和前4例缺乏导致减少的传染性病毒颗粒有关。总之,本研究证明了以往的重要性在于介导TRF5-Gructc的基因脱沉功能。

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