author_facet Wang, Lei
Sarafianos, Stefan G.
Wang, Zhengqiang
Wang, Lei
Sarafianos, Stefan G.
Wang, Zhengqiang
author Wang, Lei
Sarafianos, Stefan G.
Wang, Zhengqiang
spellingShingle Wang, Lei
Sarafianos, Stefan G.
Wang, Zhengqiang
Accounts of Chemical Research
Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
General Medicine
General Chemistry
author_sort wang, lei
spelling Wang, Lei Sarafianos, Stefan G. Wang, Zhengqiang 0001-4842 1520-4898 American Chemical Society (ACS) General Medicine General Chemistry http://dx.doi.org/10.1021/acs.accounts.9b00450 Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H Accounts of Chemical Research
doi_str_mv 10.1021/acs.accounts.9b00450
facet_avail Online
format ElectronicArticle
fullrecord blob:ai-49-aHR0cDovL2R4LmRvaS5vcmcvMTAuMTAyMS9hY3MuYWNjb3VudHMuOWIwMDQ1MA
id ai-49-aHR0cDovL2R4LmRvaS5vcmcvMTAuMTAyMS9hY3MuYWNjb3VudHMuOWIwMDQ1MA
institution DE-Zi4
DE-15
DE-105
DE-14
DE-Ch1
imprint American Chemical Society (ACS), 2020
imprint_str_mv American Chemical Society (ACS), 2020
issn 0001-4842
1520-4898
issn_str_mv 0001-4842
1520-4898
language English
mega_collection American Chemical Society (ACS) (CrossRef)
match_str wang2020cuttingintothesubstratedominancepharmacophoreandstructurebasedapproachestowardinhibitinghumanimmunodeficiencyvirusreversetranscriptaseassociatedribonucleaseh
publishDateSort 2020
publisher American Chemical Society (ACS)
recordtype ai
record_format ai
series Accounts of Chemical Research
source_id 49
title Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_unstemmed Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_full Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_fullStr Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_full_unstemmed Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_short Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_sort cutting into the substrate dominance: pharmacophore and structure-based approaches toward inhibiting human immunodeficiency virus reverse transcriptase-associated ribonuclease h
topic General Medicine
General Chemistry
url http://dx.doi.org/10.1021/acs.accounts.9b00450
publishDate 2020
physical 218-230
description
container_issue 1
container_start_page 218
container_title Accounts of Chemical Research
container_volume 53
format_de105 Article, E-Article
format_de14 Article, E-Article
format_de15 Article, E-Article
format_de520 Article, E-Article
format_de540 Article, E-Article
format_dech1 Article, E-Article
format_ded117 Article, E-Article
format_degla1 E-Article
format_del152 Buch
format_del189 Article, E-Article
format_dezi4 Article
format_dezwi2 Article, E-Article
format_finc Article, E-Article
format_nrw Article, E-Article
_version_ 1792336941421690892
geogr_code not assigned
last_indexed 2024-03-01T15:08:10.754Z
geogr_code_person not assigned
openURL url_ver=Z39.88-2004&ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fvufind.svn.sourceforge.net%3Agenerator&rft.title=Cutting+into+the+Substrate+Dominance%3A+Pharmacophore+and+Structure-Based+Approaches+toward+Inhibiting+Human+Immunodeficiency+Virus+Reverse+Transcriptase-Associated+Ribonuclease+H&rft.date=2020-01-21&genre=article&issn=1520-4898&volume=53&issue=1&spage=218&epage=230&pages=218-230&jtitle=Accounts+of+Chemical+Research&atitle=Cutting+into+the+Substrate+Dominance%3A+Pharmacophore+and+Structure-Based+Approaches+toward+Inhibiting+Human+Immunodeficiency+Virus+Reverse+Transcriptase-Associated+Ribonuclease+H&aulast=Wang&aufirst=Zhengqiang&rft_id=info%3Adoi%2F10.1021%2Facs.accounts.9b00450&rft.language%5B0%5D=eng
SOLR
_version_ 1792336941421690892
author Wang, Lei, Sarafianos, Stefan G., Wang, Zhengqiang
author_facet Wang, Lei, Sarafianos, Stefan G., Wang, Zhengqiang, Wang, Lei, Sarafianos, Stefan G., Wang, Zhengqiang
author_sort wang, lei
container_issue 1
container_start_page 218
container_title Accounts of Chemical Research
container_volume 53
description
doi_str_mv 10.1021/acs.accounts.9b00450
facet_avail Online
format ElectronicArticle
format_de105 Article, E-Article
format_de14 Article, E-Article
format_de15 Article, E-Article
format_de520 Article, E-Article
format_de540 Article, E-Article
format_dech1 Article, E-Article
format_ded117 Article, E-Article
format_degla1 E-Article
format_del152 Buch
format_del189 Article, E-Article
format_dezi4 Article
format_dezwi2 Article, E-Article
format_finc Article, E-Article
format_nrw Article, E-Article
geogr_code not assigned
geogr_code_person not assigned
id ai-49-aHR0cDovL2R4LmRvaS5vcmcvMTAuMTAyMS9hY3MuYWNjb3VudHMuOWIwMDQ1MA
imprint American Chemical Society (ACS), 2020
imprint_str_mv American Chemical Society (ACS), 2020
institution DE-Zi4, DE-15, DE-105, DE-14, DE-Ch1
issn 0001-4842, 1520-4898
issn_str_mv 0001-4842, 1520-4898
language English
last_indexed 2024-03-01T15:08:10.754Z
match_str wang2020cuttingintothesubstratedominancepharmacophoreandstructurebasedapproachestowardinhibitinghumanimmunodeficiencyvirusreversetranscriptaseassociatedribonucleaseh
mega_collection American Chemical Society (ACS) (CrossRef)
physical 218-230
publishDate 2020
publishDateSort 2020
publisher American Chemical Society (ACS)
record_format ai
recordtype ai
series Accounts of Chemical Research
source_id 49
spelling Wang, Lei Sarafianos, Stefan G. Wang, Zhengqiang 0001-4842 1520-4898 American Chemical Society (ACS) General Medicine General Chemistry http://dx.doi.org/10.1021/acs.accounts.9b00450 Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H Accounts of Chemical Research
spellingShingle Wang, Lei, Sarafianos, Stefan G., Wang, Zhengqiang, Accounts of Chemical Research, Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H, General Medicine, General Chemistry
title Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_full Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_fullStr Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_full_unstemmed Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_short Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
title_sort cutting into the substrate dominance: pharmacophore and structure-based approaches toward inhibiting human immunodeficiency virus reverse transcriptase-associated ribonuclease h
title_unstemmed Cutting into the Substrate Dominance: Pharmacophore and Structure-Based Approaches toward Inhibiting Human Immunodeficiency Virus Reverse Transcriptase-Associated Ribonuclease H
topic General Medicine, General Chemistry
url http://dx.doi.org/10.1021/acs.accounts.9b00450