Docking Studies of Adenosine Analogues with NS5 Methyltransferase of Yellow Fever Virus

scientific article published on 9 August 2011

Docking Studies of Adenosine Analogues with NS5 Methyltransferase of Yellow Fever Virus is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1007/S12088-011-0201-7
P932PMC publication ID3298586
P698PubMed publication ID23449064
P5875ResearchGate publication ID235755912

P2093author name stringM Karthikeyan
Palani Kirubakaran
P Srinivasan
S Nagamani
Kh Dhanachandra Singh
S Manikandaprabhu
P2860cites workYellow fever: the recurring plagueQ34359311
Inhibitors of virus replication: recent developments and prospectsQ34375688
Detection of yellow fever virus: a comparison of quantitative real-time PCR and plaque assayQ40557192
Imported yellow fever in a United States citizenQ40644272
Genetic variability among yellow fever virus 17D substrainsQ42989276
Molecular targets for flavivirus drug discoveryQ21999123
Comparison of the inhibitory effects of interferon alfacon-1 and ribavirin on yellow fever virus infection in a hamster modelQ27478175
Structure and Function of Flavivirus NS5 MethyltransferaseQ27478377
Phosphorylation of yellow fever virus NS5 alters methyltransferase activityQ27487335
Analysis of Flavivirus NS5 Methyltransferase Cap BindingQ27488373
Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settingsQ27861111
Glide: a new approach for rapid, accurate docking and scoring. 1. Method and assessment of docking accuracyQ28251042
Glide: a new approach for rapid, accurate docking and scoring. 2. Enrichment factors in database screeningQ29617343
Treatment of yellow feverQ34008580
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectyellow fever virusQ836749
yellow feverQ154874
P304page(s)28-34
P577publication date2011-08-09
P1433published inIndian Journal of MicrobiologyQ15749843
P1476titleDocking Studies of Adenosine Analogues with NS5 Methyltransferase of Yellow Fever Virus
P478volume52

Reverse relations

Q30383730Structural insights on identification of potential lead compounds targeting WbpP in Vibrio vulnificus through structure-based approaches.cites workP2860

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