Literature DB >> 33718276

Functional Mapping of AGO-Associated Zika Virus-Derived Small Interfering RNAs in Neural Stem Cells.

Jianxiong Zeng1,2, Zhifei Luo3, Shupeng Dong4,5, Xiaochun Xie1,2, Xinyan Liang1,2, Youzhen Yan1,2, Qiming Liang4,5, Zhen Zhao1,2.   

Abstract

Viral interfering RNA (viRNA) has been identified from several viral genomes via directly deep RNA sequencing of the virus-infected cells, including zika virus (ZIKV). Once produced by endoribonuclease Dicer, viRNAs are loaded onto the Argonaute (AGO) family proteins of the RNA-induced silencing complexes (RISCs) to pair with their RNA targets and initiate the cleavage of target genes. However, the identities of functional ZIKV viRNAs and their viral RNA targets remain largely unknown. Our recent study has shown that ZIKV capsid protein interacted with Dicer and antagonized its endoribonuclease activity, which requires its histidine residue at the 41st amino acid. Accordingly, the engineered ZIKV-H41R loss-of-function (LOF) mutant virus no longer suppresses Dicer enzymatic activity nor inhibits miRNA biogenesis in NSCs. By combining AGO-associated RNA sequencing, deep sequencing analysis in ZIKV-infected human neural stem cells (NSCs), and miRanda target scanning, we defined 29 ZIKV derived viRNA profiles in NSCs, and established a complex interaction network between the viRNAs and their viral targets. More importantly, we found that viRNA production from the ZIKV mRNA is dependent on Dicer function and is a limiting factor for ZIKV virulence in NSCs. As a result, much higher levels of viRNAs generated from the ZIKV-H41R virus-infected NSCs. Therefore, our mapping of viRNAs to their RNA targets paves a way to further investigate how viRNAs play the role in anti-viral mechanisms, and perhaps other unknown biological functions.
Copyright © 2021 Zeng, Luo, Dong, Xie, Liang, Yan, Liang and Zhao.

Entities:  

Keywords:  Dicer; RNA interference (RNAi); neural stem cells (NSCs); viral interfering RNA (viRNA); zika virus (ZIKV)

Mesh:

Substances:

Year:  2021        PMID: 33718276      PMCID: PMC7946837          DOI: 10.3389/fcimb.2021.628887

Source DB:  PubMed          Journal:  Front Cell Infect Microbiol        ISSN: 2235-2988            Impact factor:   5.293


  48 in total

1.  The Mammalian response to virus infection is independent of small RNA silencing.

Authors:  Simone Backes; Ryan A Langlois; Sonja Schmid; Andrew Varble; Jaehee V Shim; David Sachs; Benjamin R tenOever
Journal:  Cell Rep       Date:  2014-06-19       Impact factor: 9.423

2.  The Capsid Protein of Semliki Forest Virus Antagonizes RNA Interference in Mammalian Cells.

Authors:  Qi Qian; Hui Zhou; Ting Shu; Jingfang Mu; Yuan Fang; Jiuyue Xu; Tao Li; Jing Kong; Yang Qiu; Xi Zhou
Journal:  J Virol       Date:  2020-01-17       Impact factor: 5.103

3.  Induction and suppression of antiviral RNA interference by influenza A virus in mammalian cells.

Authors:  Yang Li; Megha Basavappa; Jinfeng Lu; Shuwei Dong; D Alexander Cronkite; John T Prior; Hans-Christian Reinecker; Paul Hertzog; Yanhong Han; Wan-Xiang Li; Sihem Cheloufi; Fedor V Karginov; Shou-Wei Ding; Kate L Jeffrey
Journal:  Nat Microbiol       Date:  2016-12-05       Impact factor: 17.745

4.  Zika virus impairs growth in human neurospheres and brain organoids.

Authors:  Patricia P Garcez; Erick Correia Loiola; Rodrigo Madeiro da Costa; Luiza M Higa; Pablo Trindade; Rodrigo Delvecchio; Juliana Minardi Nascimento; Rodrigo Brindeiro; Amilcar Tanuri; Stevens K Rehen
Journal:  Science       Date:  2016-04-10       Impact factor: 47.728

5.  The African Zika virus MR-766 is more virulent and causes more severe brain damage than current Asian lineage and dengue virus.

Authors:  Qiang Shao; Stephanie Herrlinger; Ya-Nan Zhu; Mei Yang; Forrest Goodfellow; Steven L Stice; Xiao-Peng Qi; Melinda A Brindley; Jian-Fu Chen
Journal:  Development       Date:  2017-10-09       Impact factor: 6.868

6.  Brain-Region-Specific Organoids Using Mini-bioreactors for Modeling ZIKV Exposure.

Authors:  Xuyu Qian; Ha Nam Nguyen; Mingxi M Song; Christopher Hadiono; Sarah C Ogden; Christy Hammack; Bing Yao; Gregory R Hamersky; Fadi Jacob; Chun Zhong; Ki-Jun Yoon; William Jeang; Li Lin; Yujing Li; Jai Thakor; Daniel A Berg; Ce Zhang; Eunchai Kang; Michael Chickering; David Nauen; Cheng-Ying Ho; Zhexing Wen; Kimberly M Christian; Pei-Yong Shi; Brady J Maher; Hao Wu; Peng Jin; Hengli Tang; Hongjun Song; Guo-Li Ming
Journal:  Cell       Date:  2016-04-22       Impact factor: 41.582

Review 7.  Antiviral RNA interference in mammals.

Authors:  Shou-Wei Ding; Qingxia Han; Jinyan Wang; Wan-Xiang Li
Journal:  Curr Opin Immunol       Date:  2018-07-17       Impact factor: 7.486

8.  Argonaute HITS-CLIP decodes microRNA-mRNA interaction maps.

Authors:  Sung Wook Chi; Julie B Zang; Aldo Mele; Robert B Darnell
Journal:  Nature       Date:  2009-06-17       Impact factor: 49.962

9.  Argonaute CLIP-Seq reveals miRNA targetome diversity across tissue types.

Authors:  Peter M Clark; Phillipe Loher; Kevin Quann; Jonathan Brody; Eric R Londin; Isidore Rigoutsos
Journal:  Sci Rep       Date:  2014-08-08       Impact factor: 4.379

10.  Prevalence and clinical profile of microcephaly in South America pre-Zika, 2005-14: prevalence and case-control study.

Authors:  Iêda M Orioli; Helen Dolk; Jorge S Lopez-Camelo; Daniel Mattos; Fernando A Poletta; Maria G Dutra; Flavia M Carvalho; Eduardo E Castilla
Journal:  BMJ       Date:  2017-11-21
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  2 in total

Review 1.  MicroRNA let-7 and viral infections: focus on mechanisms of action.

Authors:  Arash Letafati; Sajad Najafi; Mehran Mottahedi; Mohammad Karimzadeh; Ali Shahini; Setareh Garousi; Mohammad Abbasi-Kolli; Javid Sadri Nahand; Seyed Saeed Tamehri Zadeh; Michael R Hamblin; Neda Rahimian; Mohammad Taghizadieh; Hamed Mirzaei
Journal:  Cell Mol Biol Lett       Date:  2022-02-14       Impact factor: 5.787

Review 2.  Regulatory Role of Host MicroRNAs in Flaviviruses Infection.

Authors:  Wenjun Cai; Yuhong Pan; Anchun Cheng; Mingshu Wang; Zhongqiong Yin; Renyong Jia
Journal:  Front Microbiol       Date:  2022-04-11       Impact factor: 6.064

  2 in total

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