Serveur d'exploration MERS - Exploration (Accueil)

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List of bibliographic references indexed by target

Number of relevant bibliographic references: 43.
[0-20] [0 - 20][0 - 43][20-40]
Ident.Authors (with country if any)Title
000239 (2020) Tiffany Tang [États-Unis] ; Miya Bidon [États-Unis] ; Javier A. Jaimes [États-Unis] ; Gary R. Whittaker [États-Unis] ; Susan Daniel [États-Unis]Coronavirus membrane fusion mechanism offers as a potential target for antiviral development.
000376 (2019) Hannah Kleine-Weber [Allemagne] ; Stefan Pöhlmann [Allemagne] ; Markus Hoffmann [Allemagne]Spike proteins of novel MERS-coronavirus isolates from North- and West-African dromedary camels mediate robust viral entry into human target cells
000531 (2019) Khalid A. Alburikan [Arabie saoudite] ; Hatem A. Abuelizz [Arabie saoudite]Identifying factors and target preventive therapies for Middle East Respiratory Syndrome sucsibtable patients
000551 (2019) Katarzyna Wreczycka [Allemagne] ; Vedran Franke [Allemagne] ; Bora Uyar [Allemagne] ; Ricardo Wurmus [Allemagne] ; Selman Bulut [Allemagne] ; Baris Tursun [Allemagne] ; Altuna Akalin [Allemagne]HOT or not: examining the basis of high-occupancy target regions
000590 (2019) Muhammad Tahir Ul Qamar [République populaire de Chine] ; Saman Saleem [Pakistan] ; Usman Ali Ashfaq [Pakistan] ; Amna Bari [République populaire de Chine] ; Farooq Anwar [Pakistan] ; Safar Alqahtani [Arabie saoudite]Epitope‐based peptide vaccine design and target site depiction against Middle East Respiratory Syndrome Coronavirus: an immune-informatics study
000809 (2018) Olga V. Matveeva [États-Unis] ; Aleksey Y. Ogurtsov [États-Unis] ; Nafisa N. Nazipova [Russie] ; Svetlana A. Shabalina [États-Unis]Sequence characteristics define trade-offs between on-target and genome-wide off-target hybridization of oligoprobes
000833 (2018) Philippos Aris Papathanos ; Nikolai WindbichlerRedkmer: An Assembly-Free Pipeline for the Identification of Abundant and Specific X-Chromosome Target Sequences for X-Shredding by CRISPR Endonucleases
000896 (2018) Shutoku Matsuyama [Japon] ; Kazuya Shirato [Japon] ; Miyuki Kawase [Japon] ; Yutaka Terada [Japon] ; Kengo Kawachi [Japon] ; Shuetsu Fukushi [Japon] ; Wataru Kamitani [Japon]Middle East Respiratory Syndrome Coronavirus Spike Protein Is Not Activated Directly by Cellular Furin during Viral Entry into Target Cells.
000A62 (2018) Bonhan Koo [Corée du Sud] ; Ki Ho Hong [Corée du Sud] ; Choong Eun Jin [Corée du Sud] ; Ji Yeun Kim [Corée du Sud] ; Sung-Han Kim [Corée du Sud] ; Yong Shin [Corée du Sud]Arch-shaped multiple-target sensing for rapid diagnosis and identification of emerging infectious pathogens
000B34 (2017) Woo-Jin Shin [États-Unis] ; Baik Lin Seong [Corée du Sud]Type II transmembrane serine proteases as potential target for anti-influenza drug discovery.
000C00 (2017) Júlia Vergara-Alert [Espagne] ; Enric Vidal [Espagne] ; Albert Bensaid [Espagne] ; Joaquim Segalés [Espagne]Searching for animal models and potential target species for emerging pathogens: Experience gained from Middle East respiratory syndrome (MERS) coronavirus
000D08 (2017) Lanying Du [États-Unis] ; Yang Yang [États-Unis] ; Yusen Zhou [République populaire de Chine] ; Lu Lu [République populaire de Chine] ; Fang Li [États-Unis] ; Shibo Jiang [États-Unis]MERS-CoV spike protein: a key target for antivirals.
000F32 (2017) Ann Acheson [États-Unis] ; Ronald M. Lindsay [États-Unis] ; S. B. Mcmahon ; L. M. Mendell ; H. S. Phillips ; Patrick David WallNeurotrophins and sensory neurons: role in development, maintenance and injury - Non target-derived roles of the neurotrophins
001410 (2016) Christin Müller [Allemagne] ; Vera Ulyanova [Russie] ; Olga Ilinskaya [Russie] ; Stephan Pleschka [Allemagne] ; Raihan Shah Mahmud [Russie]A Novel Antiviral Strategy against MERS-CoV and HCoV-229E Using Binase to Target Viral Genome Replication
001543 (2015) Diego Forni [Italie] ; Giulia Filippi [Italie] ; Rachele Cagliani [Italie] ; Luca De Gioia [Italie] ; Uberto Pozzoli [Italie] ; Nasser Al-Daghri ; Mario Clerici [Italie] ; Manuela Sironi [Italie]The heptad repeat region is a major selection target in MERS-CoV and related coronaviruses
001805 (2015) Jiandong Shi [République populaire de Chine] ; Jing Zhang [République populaire de Chine] ; Sijin Li [République populaire de Chine] ; Jing Sun [République populaire de Chine] ; Yumei Teng [République populaire de Chine] ; Meini Wu [République populaire de Chine] ; Jianfan Li [République populaire de Chine] ; Yanhan Li [République populaire de Chine] ; Ningzhu Hu [République populaire de Chine] ; Haixuan Wang [République populaire de Chine] ; Yunzhang Hu [République populaire de Chine]Epitope-Based Vaccine Target Screening against Highly Pathogenic MERS-CoV: An In Silico Approach Applied to Emerging Infectious Diseases
001F22 (2013) Xiaojie Zhu [République populaire de Chine] ; Qi Liu ; Lanying Du ; Lu Lu ; Shibo JiangReceptor-binding domain as a target for developing SARS vaccines.
001F77 (2013) Lanying Du [États-Unis] ; Guangyu Zhao ; Zhihua Kou ; Cuiqing Ma ; Shihui Sun ; Vincent K M. Poon ; Lu Lu ; Lili Wang ; Asim K. Debnath ; Bo-Jian Zheng ; Yusen Zhou ; Shibo JiangIdentification of a receptor-binding domain in the S protein of the novel human coronavirus Middle East respiratory syndrome coronavirus as an essential target for vaccine development.
002098 (2013) E. A. Blokhina [Russie] ; V. V. Kupriyanov [Russie] ; N. V. Ravin [Russie] ; K. G. Skryabin [Russie]The method of noncovalent in vitro binding of target proteins to virus-like nanoparticles formed by core antigen of hepatitis B virus
002296 (2012) Xifu Shang [République populaire de Chine] ; Yaofei Wang [République populaire de Chine] ; Qichun Zhao [République populaire de Chine] ; Kerong Wu [République populaire de Chine] ; Xu Li [République populaire de Chine] ; Xiaofeng Ji [République populaire de Chine] ; Rui He [République populaire de Chine] ; Wenzhi Zhang [République populaire de Chine]siRNAs target sites selection of ezrin and the influence of RNA interference on ezrin expression and biological characters of osteosarcoma cells
002567 (2011) Katherine M. Mladinich [États-Unis] ; Shari M. Piaskowski [États-Unis] ; Richard Rudersdorf [États-Unis] ; Christopher M. Eernisse [États-Unis] ; Kim L. Weisgrau [États-Unis] ; Mauricio A. Martins [États-Unis] ; Jessica R. Furlott [États-Unis] ; Charalambos D. Partidos [États-Unis] ; Joseph N. Brewoo [États-Unis] ; Jorge E. Osorio [États-Unis] ; Nancy A. Wilson [États-Unis] ; Eva G. Rakasz [États-Unis] ; David I. Watkins [États-Unis]Dengue virus-specific CD4+ and CD8+ T lymphocytes target NS1, NS3 and NS5 in infected Indian rhesus macaques

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