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Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation

RNA helicase DDX21 plays vital roles in ribosomal RNA biogenesis, transcription, and the regulation of host innate immunity during virus infection. How DDX21 recognizes and unwinds RNA and how DDX21 interacts with virus remain poorly understood. Here, crystal structures of human DDX21 determined in...

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Autores principales: Chen, Zijun, Li, Zhengyang, Hu, Xiaojian, Xie, Feiyan, Kuang, Siyun, Zhan, Bowen, Gao, Wenqing, Chen, Xiangjun, Gao, Siqi, Li, Yang, Wang, Yongming, Qian, Feng, Ding, Chen, Gan, Jianhua, Ji, Chaoneng, Xu, Xue‐Wei, Zhou, Zheng, Huang, Jinqing, He, Housheng Hansen, Li, Jixi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7375243/
https://www.ncbi.nlm.nih.gov/pubmed/32714761
http://dx.doi.org/10.1002/advs.202000532
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author Chen, Zijun
Li, Zhengyang
Hu, Xiaojian
Xie, Feiyan
Kuang, Siyun
Zhan, Bowen
Gao, Wenqing
Chen, Xiangjun
Gao, Siqi
Li, Yang
Wang, Yongming
Qian, Feng
Ding, Chen
Gan, Jianhua
Ji, Chaoneng
Xu, Xue‐Wei
Zhou, Zheng
Huang, Jinqing
He, Housheng Hansen
Li, Jixi
author_facet Chen, Zijun
Li, Zhengyang
Hu, Xiaojian
Xie, Feiyan
Kuang, Siyun
Zhan, Bowen
Gao, Wenqing
Chen, Xiangjun
Gao, Siqi
Li, Yang
Wang, Yongming
Qian, Feng
Ding, Chen
Gan, Jianhua
Ji, Chaoneng
Xu, Xue‐Wei
Zhou, Zheng
Huang, Jinqing
He, Housheng Hansen
Li, Jixi
author_sort Chen, Zijun
collection PubMed
description RNA helicase DDX21 plays vital roles in ribosomal RNA biogenesis, transcription, and the regulation of host innate immunity during virus infection. How DDX21 recognizes and unwinds RNA and how DDX21 interacts with virus remain poorly understood. Here, crystal structures of human DDX21 determined in three distinct states are reported, including the apo‐state, the AMPPNP plus single‐stranded RNA (ssRNA) bound pre‐hydrolysis state, and the ADP‐bound post‐hydrolysis state, revealing an open to closed conformational change upon RNA binding and unwinding. The core of the RNA unwinding machinery of DDX21 includes one wedge helix, one sensor motif V and the DEVD box, which links the binding pockets of ATP and ssRNA. The mutant D339H/E340G dramatically increases RNA binding activity. Moreover, Hill coefficient analysis reveals that DDX21 unwinds double‐stranded RNA (dsRNA) in a cooperative manner. Besides, the nonstructural (NS1) protein of influenza A inhibits the ATPase and unwinding activity of DDX21 via small RNAs, which cooperatively assemble with DDX21 and NS1. The structures illustrate the dynamic process of ATP hydrolysis and RNA unwinding for RNA helicases, and the RNA modulated interaction between NS1 and DDX21 generates a fresh perspective toward the virus–host interface. It would benefit in developing therapeutics to combat the influenza virus infection.
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spelling pubmed-73752432020-07-23 Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation Chen, Zijun Li, Zhengyang Hu, Xiaojian Xie, Feiyan Kuang, Siyun Zhan, Bowen Gao, Wenqing Chen, Xiangjun Gao, Siqi Li, Yang Wang, Yongming Qian, Feng Ding, Chen Gan, Jianhua Ji, Chaoneng Xu, Xue‐Wei Zhou, Zheng Huang, Jinqing He, Housheng Hansen Li, Jixi Adv Sci (Weinh) Full Papers RNA helicase DDX21 plays vital roles in ribosomal RNA biogenesis, transcription, and the regulation of host innate immunity during virus infection. How DDX21 recognizes and unwinds RNA and how DDX21 interacts with virus remain poorly understood. Here, crystal structures of human DDX21 determined in three distinct states are reported, including the apo‐state, the AMPPNP plus single‐stranded RNA (ssRNA) bound pre‐hydrolysis state, and the ADP‐bound post‐hydrolysis state, revealing an open to closed conformational change upon RNA binding and unwinding. The core of the RNA unwinding machinery of DDX21 includes one wedge helix, one sensor motif V and the DEVD box, which links the binding pockets of ATP and ssRNA. The mutant D339H/E340G dramatically increases RNA binding activity. Moreover, Hill coefficient analysis reveals that DDX21 unwinds double‐stranded RNA (dsRNA) in a cooperative manner. Besides, the nonstructural (NS1) protein of influenza A inhibits the ATPase and unwinding activity of DDX21 via small RNAs, which cooperatively assemble with DDX21 and NS1. The structures illustrate the dynamic process of ATP hydrolysis and RNA unwinding for RNA helicases, and the RNA modulated interaction between NS1 and DDX21 generates a fresh perspective toward the virus–host interface. It would benefit in developing therapeutics to combat the influenza virus infection. John Wiley and Sons Inc. 2020-06-08 /pmc/articles/PMC7375243/ /pubmed/32714761 http://dx.doi.org/10.1002/advs.202000532 Text en © 2020 The Authors. Published by WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Chen, Zijun
Li, Zhengyang
Hu, Xiaojian
Xie, Feiyan
Kuang, Siyun
Zhan, Bowen
Gao, Wenqing
Chen, Xiangjun
Gao, Siqi
Li, Yang
Wang, Yongming
Qian, Feng
Ding, Chen
Gan, Jianhua
Ji, Chaoneng
Xu, Xue‐Wei
Zhou, Zheng
Huang, Jinqing
He, Housheng Hansen
Li, Jixi
Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title_full Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title_fullStr Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title_full_unstemmed Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title_short Structural Basis of Human Helicase DDX21 in RNA Binding, Unwinding, and Antiviral Signal Activation
title_sort structural basis of human helicase ddx21 in rna binding, unwinding, and antiviral signal activation
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7375243/
https://www.ncbi.nlm.nih.gov/pubmed/32714761
http://dx.doi.org/10.1002/advs.202000532
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