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用于沉默严重急性呼吸综合征冠状病毒2(SARS-CoV2)膜糖蛋白、核衣壳磷蛋白和表面糖蛋白基因的小干扰RNA(siRNA)分子设计

Design of siRNA molecules for silencing of membrane glycoprotein, nucleocapsid phosphoprotein, and surface glycoprotein genes of SARS-CoV2.

作者信息

Ayyagari Vijaya Sai

机构信息

Department of Biotechnology, Vignan's Foundation for Science, Technology & Research (Deemed to be University), Guntur District, Vadlamudi, Andhra Pradesh, 522 213, India.

出版信息

J Genet Eng Biotechnol. 2022 Apr 28;20(1):65. doi: 10.1186/s43141-022-00346-z.

Abstract

The global COVID-19 pandemic caused by SARS-CoV2 infected millions of people and resulted in more than 4 million deaths worldwide. Apart from vaccines and drugs, RNA silencing is a novel approach for treating COVID-19. In the present study, siRNAs were designed for the conserved regions targeting three structural genes, M, N, and S, from forty whole-genome sequences of SARS-CoV2 using four different software, RNAxs, siDirect, i-Score Designer, and OligoWalk. Only siRNAs which were predicted in common by all the four servers were considered for further shortlisting. A multistep filtering approach has been adopted in the present study for the final selection of siRNAs by the usage of different online tools, viz., siRNA scales, MaxExpect, DuplexFold, and SMEpred. All these web-based tools consider several important parameters for designing functional siRNAs, e.g., target-site accessibility, duplex stability, position-specific nucleotide preference, inhibitory score, thermodynamic parameters, GC content, and efficacy in cleaving the target. In addition, a few parameters like GC content and dG value of the entire siRNA were also considered for shortlisting of the siRNAs. Antisense strands were subjected to check for any off-target similarities using BLAST. Molecular docking was carried out to study the interactions of guide strands with AGO2 protein. A total of six functional siRNAs (two for each gene) have been finally selected for targeting M, N, and S genes of SARS-CoV2. The siRNAs have not shown any off-target effects, interacted with the domain(s) of AGO2 protein, and were efficacious in cleaving the target mRNA. However, the siRNAs designed in the present study need to be tested in vitro and in vivo in the future.

摘要

由严重急性呼吸综合征冠状病毒2(SARS-CoV2)引起的全球新冠疫情感染了数百万人,导致全球超过400万人死亡。除了疫苗和药物外,RNA沉默是一种治疗新冠的新方法。在本研究中,使用四种不同软件RNAxs、siDirect、i-Score Designer和OligoWalk,针对SARS-CoV2的40个全基因组序列中三个结构基因M、N和S的保守区域设计了小干扰RNA(siRNA)。只有所有四个服务器都预测到的siRNA才会被进一步筛选。本研究采用了多步骤筛选方法,通过使用不同的在线工具,即siRNA量表、MaxExpect、DuplexFold和SMEpred,对siRNA进行最终筛选。所有这些基于网络的工具在设计功能性siRNA时都考虑了几个重要参数,例如靶位点可及性、双链稳定性、位置特异性核苷酸偏好、抑制分数、热力学参数、GC含量以及切割靶标的效率。此外,在筛选siRNA时还考虑了整个siRNA的一些参数,如GC含量和dG值。使用BLAST对反义链进行检查,以查找任何脱靶相似性。进行分子对接以研究引导链与AGO2蛋白的相互作用。最终共选择了六种功能性siRNA(每个基因两种)来靶向SARS-CoV2的M、N和S基因。这些siRNA未显示任何脱靶效应,与AGO2蛋白的结构域相互作用,并且在切割靶mRNA方面有效。然而,本研究中设计的siRNA未来需要在体外和体内进行测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9810/9050989/7bd7b652f558/43141_2022_346_Fig1_HTML.jpg

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