The crystal structure of the Epstein-Barr virus protease shows rearrangement of the processed C terminus
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Current and potential treatments for ubiquitous but neglected herpesvirus infectionsSubstrate Modulation of Enzyme Activity in the Herpesvirus Protease FamilyBroad-Spectrum Allosteric Inhibition of Herpesvirus ProteasesDimerization-Induced Allosteric Changes of the Oxyanion-Hole Loop Activate the Pseudorabies Virus Assemblin pUL26N, a Herpesvirus Serine ProteaseExtensive subunit contacts underpin herpesvirus capsid stability and interior-to-exterior allostery.Communication between the active sites and dimer interface of a herpesvirus protease revealed by a transition-state inhibitor.Inhibition of a viral enzyme by a small-molecule dimer disruptor.Cleavage of human cytomegalovirus protease pUL80a at internal and cryptic sites is not essential but enhances infectivity.Enzymatic activities of human cytomegalovirus maturational protease assemblin and its precursor (pPR, pUL80a) are comparable: [corrected] maximal activity of pPR requires self-interaction through its scaffolding domain.Viral proteomics.Distribution and effects of amino acid changes in drug-resistant α and β herpesviruses DNA polymeraseChemical rescue of I-site cleavage in living cells and in vitro discriminates between the cytomegalovirus protease, assemblin, and its precursor, pUL80a.Displacements of prohead protease genes in the late operons of double-stranded-DNA bacteriophagesSequential autoprocessing of Marek's disease herpesvirus protease differs from that of other herpesvirusesCytomegalovirus capsid protease: biological substrates are cleaved more efficiently by full-length enzyme (pUL80a) than by the catalytic domain (assemblin)Kinetics, inhibition and oligomerization of Epstein-Barr virus protease.The art of modeling the mortality impact of winter-seasonal pathogens.The crystal structure of KSHV ORF57 reveals dimeric active sites important for protein stability and function
P2860
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P2860
The crystal structure of the Epstein-Barr virus protease shows rearrangement of the processed C terminus
description
2002 nî lūn-bûn
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2002 թուականի Նոյեմբերին հրատարակուած գիտական յօդուած
@hyw
2002 թվականի նոյեմբերին հրատարակված գիտական հոդված
@hy
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
name
The crystal structure of the E ...... nt of the processed C terminus
@ast
The crystal structure of the E ...... nt of the processed C terminus
@en
The crystal structure of the E ...... nt of the processed C terminus
@nl
type
label
The crystal structure of the E ...... nt of the processed C terminus
@ast
The crystal structure of the E ...... nt of the processed C terminus
@en
The crystal structure of the E ...... nt of the processed C terminus
@nl
prefLabel
The crystal structure of the E ...... nt of the processed C terminus
@ast
The crystal structure of the E ...... nt of the processed C terminus
@en
The crystal structure of the E ...... nt of the processed C terminus
@nl
P2093
P3181
P1476
The crystal structure of the E ...... nt of the processed C terminus
@en
P2093
David Lascoux
Eric Forest
Guy Schoehn
Gérard Arlaud
Jean-François Hernandez
Jean-Marie Seigneurin
Marlyse Buisson
Rob W H Ruigrok
Wim P Burmeister
P304
P3181
P356
10.1016/S0022-2836(02)01040-9
P407
P577
2002-11-15T00:00:00Z