COMMENTARY

Progress towards revealing the mechanism of herpesvirus capsid maturation and genome packaging

  • Zhihai Li 1 ,
  • Xuekui Yu , 1,2
Expand
  • 1. Cryo-Electron Microscopy Research Center, the CAS Key Laboratory of Receptor Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China
  • 2. University of Chinese Academy of Sciences, Beijing 100049, China

Published date: 15 May 2020

Copyright

2020 The Author(s)

Cite this article

Zhihai Li , Xuekui Yu . Progress towards revealing the mechanism of herpesvirus capsid maturation and genome packaging[J]. Protein & Cell, 2020 , 11(5) : 316 -317 . DOI: 10.1007/s13238-020-00716-8

1
Aathavan K, Politzer AT, Kaplan A, Moffitt JR, Chemla YR, Grimes S, Jardine PJ, Anderson DL, Bustamante C (2009) Substrate interactions and promiscuity in a viral DNA packaging motor. Nature 461:669–673

DOI

2
Chen W, Xiao H, Wang X, Song S, Han Z, Li X, Yang F, Wang L, Song, Liu H (2020) Structural changes of a bacteriophage upon DNA packaging and maturation. Protein Cell. https://doi.org/10.1007/s13238-020-00715-9

DOI

3
Dai X, Zhou ZH (2018) Structure of the herpes simplex virus 1 capsid with associated tegument protein complexes. Science 360:6384

DOI

4
Dai X, Gong D, Lim H, Jih J, Wu TT, Sun R, Zhou ZH (2018) Structure and mutagenesis reveal essential capsid protein interactions for KSHV replication. Nature 553:521–525

DOI

5
Gong D, Dai X, Jih J, Liu YT, Bi GQ, Sun R, Zhou ZH (2019) DNA- packing portal and capsid-associated tegument complexes in the tumor herpesvirus KSHV. Cell 178(1329–1343):e1312

DOI

6
Guo P, Noji H, Yengo CM, Zhao Z, Grainge I (2016) Biological nanomotors with a revolution, linear, or rotation motion mecha- nism. Microbiol Mol Biol Rev 80:161–186

DOI

7
Heming JD, Conway JF, Homa FL (2017) Herpesvirus capsid assembly and DNA packaging. Adv Anat Embryol Cell Biol 223:119–142

DOI

8
Hilbert BJ, Hayes JA, Stone NP, Duffy CM, Sankaran B, Kelch BA (2015) Structure and mechanism of the ATPase that powers viral genome packaging. Proc Natl Acad Sci U S A 112:E3792–3799

DOI

9
Liu YT, Jih J, Dai X, Bi GQ, Zhou ZH (2019) Cryo-EM structures of herpes simplex virus type 1 portal vertex and packaged genome. Nature 570:257–261

DOI

10
Moffitt JR, Chemla YR, Aathavan K, Grimes S, Jardine PJ, Anderson DL, Bustamante C (2009) Intersubunit coordination in a homomeric ring ATPase. Nature 457:446–450

DOI

11
Nan Wang WC, Zhu Ling, Feng Rui, Wang Jialing, Zhu Dongjie, Zhang Xinzheng, Liu Hongrong, Rao Zihe, Wang Xiangxi (2020) Structures of the portal vertex reveal essential protein-protein interactions for Herpesvirus assembly and maturation. Protein Cell. 16:6. https://doi.org/10.1007/s13238-020-00711-z

DOI

12
Schwartz C, De Donatis GM, Zhang H, Fang H, Guo P (2013) Revolution rather than rotation of AAA+ hexameric phi29 nanomotor for viral dsDNA packaging without coiling. Virology 443:28–39

DOI

13
Wang J, Yuan S, Zhu D, Tang H, Wang N, Chen W, Gao Q, Li Y, Wang J, Liu H (2018) Structure of the herpes simplex virus type 2 C-capsid with capsid-vertex-specific component. Nat Commun 9:3668

DOI

14
Wang N, Zhao D, Wang J, Zhang Y, Wang M, Gao Y, Li F, Bu Z, Rao Z, Wang X (2019) Architecture of African swine fever virus and implications for viral assembly. Science 366:640–644

DOI

15
Yu X, Jih J, Jiang J, Zhou ZH (2017) Atomic structure of the human cytomegalovirus capsid with its securing tegument layer of pp150. Science. https://doi.org/10.1126/science.aam6892

DOI

16
Yuan S, Wang J, Zhu D, Wang N, Gao Q, Chen W, Tang H, Wang J, Zhang X, Liu H (2018) Cryo-EM structure of a herpesvirus capsid at 3.1 A. Science. https://doi.org/10.1126/science.aao7283

DOI

17
Yunxiang Yang PY, Wang N, Zhu L, Zeng Y, Rao Z, Wang X (2020) Architecture of the herpesvirus genome-packaging complex and implications for DNA translocation. Protein Cell. https://doi.org/10.1007/s13238-020-00710-0

DOI

Outlines

/