Serveur d'exploration SRAS - Checkpoint (PubMed)

Index « MedMesh.i » - entrée « Viral Fusion Proteins »
Attention, ce site est en cours de développement !
Attention, site généré par des moyens informatiques à partir de corpus bruts.
Les informations ne sont donc pas validées.
Viral Envelope Proteins < Viral Fusion Proteins < Viral Hepatitis Vaccines  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 53.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000944 (2018) Stacy R. Webb [États-Unis] ; Stacy E. Smith [États-Unis] ; Michael G. Fried [États-Unis] ; Rebecca Ellis Dutch [États-Unis]Transmembrane Domains of Highly Pathogenic Viral Fusion Proteins Exhibit Trimeric Association In Vitro.
000A95 (2017) Diego Forni [Italie] ; Rachele Cagliani [Italie] ; Mario Clerici [Italie] ; Manuela Sironi [Italie]Molecular Evolution of Human Coronavirus Genomes.
000B94 (2016) Luis G M. Basso [Brésil] ; Eduardo F. Vicente [Brésil] ; Edson Crusca [Brésil] ; Eduardo M. Cilli [Brésil] ; Antonio J. Costa-Filho [Brésil]SARS-CoV fusion peptides induce membrane surface ordering and curvature.
000B99 (2016) Zu T. Shen [États-Unis] ; Alexander B. Sigalov [États-Unis]SARS Coronavirus Fusion Peptide-Derived Sequence Suppresses Collagen-Induced Arthritis in DBA/1J Mice.
000D24 (2015) Ying Liao ; Si Min Zhang ; Tuan Ling Neo ; James P. TamTryptophan-dependent membrane interaction and heteromerization with the internal fusion peptide by the membrane proximal external region of SARS-CoV spike protein.
000D83 (2015) Mukesh Mahajan [Singapour] ; Surajit Bhattacharjya [Singapour]NMR structures and localization of the potential fusion peptides and the pre-transmembrane region of SARS-CoV: Implications in membrane fusion.
000E61 (2015) Farah El Najjar [États-Unis] ; Levi Lampe [États-Unis] ; Michelle L. Baker [Australie] ; Lin-Fa Wang [Singapour] ; Rebecca Ellis Dutch [États-Unis]Analysis of cathepsin and furin proteolytic enzymes involved in viral fusion protein activation in cells of the bat reservoir host.
000F22 (2014) Lu Lu ; Qi Liu ; Yun Zhu ; Kwok-Hung Chan [Hong Kong] ; Lili Qin [République populaire de Chine] ; Yuan Li [République populaire de Chine] ; Qian Wang [République populaire de Chine] ; Jasper Fuk-Woo Chan [Hong Kong] ; Lanying Du [États-Unis] ; Fei Yu [États-Unis] ; Cuiqing Ma [États-Unis] ; Sheng Ye [République populaire de Chine] ; Kwok-Yung Yuen [Hong Kong] ; Rongguang Zhang [République populaire de Chine] ; Shibo Jiang [États-Unis]Structure-based discovery of Middle East respiratory syndrome coronavirus fusion inhibitor.
001326 (2012) Sandrine Belouzard [France] ; Jean K. Millet ; Beth N. Licitra ; Gary R. WhittakerMechanisms of coronavirus cell entry mediated by the viral spike protein.
001605 (2010) Rachel L. Graham [États-Unis] ; Ralph S. BaricRecombination, reservoirs, and the modular spike: mechanisms of coronavirus cross-species transmission.
001878 (2009) Zhe Yan [États-Unis] ; Kathryn V. Holmes ; Robert S. HodgesExpression and characterization of recombinant S2 subunit of SARS-coronavirus S fusion protein.
001991 (2008) Feng Mu [République populaire de Chine] ; Dongsheng Niu ; Jingsong Mu ; Bo He ; Weiguo Han ; Baoxing Fan ; Shengyong Huang ; Yan Qiu ; Bo You ; Weijun ChenThe expression and antigenicity of a truncated spike-nucleocapsid fusion protein of severe acute respiratory syndrome-associated coronavirus.
001A90 (2008) Jaime Guillén [Espagne] ; Paavo K J. Kinnunen ; José VillalaínMembrane insertion of the three main membranotropic sequences from SARS-CoV S2 glycoprotein.
001B29 (2008) Ling-Hon Matthew Chu [République populaire de Chine] ; Siu-Hong Chan ; Sau-Na Tsai ; Yi Wang ; Christopher Hon-Ki Cheng ; Kam-Bo Wong ; Mary Miu-Yee Waye ; Sai-Ming NgaiFusion core structure of the severe acute respiratory syndrome coronavirus (SARS-CoV): in search of potent SARS-CoV entry inhibitors.
001B81 (2008) Berend Jan Bosch [Pays-Bas] ; Willem Bartelink ; Peter J M. RottierCathepsin L functionally cleaves the severe acute respiratory syndrome coronavirus class I fusion protein upstream of rather than adjacent to the fusion peptide.
001F16 (2006) Yazdan Yazdanpanah ; Benoît Guéry[Antiretroviral drugs in severe acute respiratory syndrome].
001F23 (2006) Salomé Veiga [Portugal] ; Yunyun Yuan ; Xuqin Li ; Nuno C. Santos ; Gang Liu ; Miguel A R B. CastanhoWhy are HIV-1 fusion inhibitors not effective against SARS-CoV? Biophysical evaluation of molecular interactions.
001F90 (2006) Susanna Hakansson-Mcreynolds [États-Unis] ; Shaokai Jiang ; Lijun Rong ; Michael CaffreySolution structure of the severe acute respiratory syndrome-coronavirus heptad repeat 2 domain in the prefusion state.
002186 (2006) Woan-Eng Chan [République populaire de Chine] ; Chin-Kai Chuang ; Shiou-Hwei Yeh ; Mau-Sun Chang ; Steve S-L ChenFunctional characterization of heptad repeat 1 and 2 mutants of the spike protein of severe acute respiratory syndrome coronavirus.
002246 (2006) Qi Zheng [États-Unis] ; Yiqun Deng ; Jie Liu ; Lia Van Der Hoek ; Ben Berkhout ; Min LuCore structure of S2 from the human coronavirus NL63 spike glycoprotein.
002271 (2006) Zhe Yan [États-Unis] ; Brian Tripet ; Robert S. HodgesBiophysical characterization of HRC peptide analogs interaction with heptad repeat regions of the SARS-coronavirus Spike fusion protein core.

Pour manipuler ce document sous Unix (Dilib)

EXPLOR_STEP=$WICRI_ROOT/Sante/explor/SrasV1/Data/PubMed/Checkpoint
HfdIndexSelect -h $EXPLOR_AREA/Data/PubMed/Checkpoint/MedMesh.i -k "Viral Fusion Proteins" 
HfdIndexSelect -h $EXPLOR_AREA/Data/PubMed/Checkpoint/MedMesh.i  \
                -Sk "Viral Fusion Proteins" \
         | HfdSelect -Kh $EXPLOR_AREA/Data/PubMed/Checkpoint/biblio.hfd 

Pour mettre un lien sur cette page dans le réseau Wicri

{{Explor lien
   |wiki=    Sante
   |area=    SrasV1
   |flux=    PubMed
   |étape=   Checkpoint
   |type=    indexItem
   |index=    MedMesh.i
   |clé=    Viral Fusion Proteins
}}

Wicri

This area was generated with Dilib version V0.6.33.
Data generation: Tue Apr 28 14:49:16 2020. Site generation: Sat Mar 27 22:06:49 2021