Progress towards revealing the mechanism of herpesvirus capsid maturation and genome packaging
Zhihai Li, Xuekui Yu
Progress towards revealing the mechanism of herpesvirus capsid maturation and genome packaging
[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
CrossRef
Google scholar
|
[2] |
Chen W, Xiao H, Wang X, Song S, Han Z, Li X, Yang F, Wang L, Song
CrossRef
Google scholar
|
[3] |
Dai X, Zhou ZH (2018) Structure of the herpes simplex virus 1 capsid with associated tegument protein complexes. Science 360:6384
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[7] |
Heming JD, Conway JF, Homa FL (2017) Herpesvirus capsid assembly and DNA packaging. Adv Anat Embryol Cell Biol 223:119–142
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[13] |
Wang J, Yuan S, Zhu D, Tang H, Wang N, Chen W, Gao Q, Li Y, Wang J, Liu H
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
[16] |
Yuan S, Wang J, Zhu D, Wang N, Gao Q, Chen W, Tang H, Wang J, Zhang X, Liu H
CrossRef
Google scholar
|
[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
CrossRef
Google scholar
|
/
〈 | 〉 |