Serveur d'exploration MERS - Exploration (Accueil)

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clearing < cleavage < cleavages  Facettes :

List of bibliographic references indexed by cleavage

Number of relevant bibliographic references: 38.
[0-20] [0 - 20][0 - 38][20-37][20-40]
Ident.Authors (with country if any)Title
000382 (2019) Felix Zellmann ; Laura Thomas ; Ute Scheffer ; Roland K. Hartmann ; Michael W. GöbelSite-Specific Cleavage of RNAs Derived from the PIM1 3′-UTR by a Metal-Free Artificial Ribonuclease
000745 (2019) Javier A. Jaimes [États-Unis] ; Jean K. Millet ; Monty E. Goldstein [États-Unis] ; Gary R. Whittaker [États-Unis] ; Marco R. Straus [États-Unis]A Fluorogenic Peptide Cleavage Assay to Screen for Proteolytic Activity: Applications for coronavirus spike protein activation.
000787 (2018) Keisuke Nakagawa [États-Unis] ; Krishna Narayanan [États-Unis] ; Masami Wada [États-Unis] ; Vsevolod L. Popov [États-Unis] ; Maria Cajimat [États-Unis] ; Ralph S. Baric [États-Unis] ; Shinji Makino [États-Unis]The Endonucleolytic RNA Cleavage Function of nsp1 of Middle East Respiratory Syndrome Coronavirus Promotes the Production of Infectious Virus Particles in Specific Human Cell Lines.
000965 (2018) Hannah Kleine-Weber [Allemagne] ; Mahmoud Tarek Elzayat [Allemagne] ; Markus Hoffmann [Allemagne] ; Stefan Pöhlmann [Allemagne]Functional analysis of potential cleavage sites in the MERS-coronavirus spike protein
000C05 (2017) Xiaoyi Gao [République populaire de Chine] ; Mingxi Geng [République populaire de Chine] ; Yunchao Li [République populaire de Chine] ; Xinglin Wang [République populaire de Chine] ; Hua-Zhong Yu [Canada]Revealing and Resolving the Restrained Enzymatic Cleavage of DNA Self-Assembled Monolayers on Gold: Electrochemical Quantitation and ESI-MS Confirmation.
000D87 (2017) Diede Oudshoorn [Pays-Bas] ; Kevin Rijs [Pays-Bas] ; Ronald W. A. L. Limpens [Pays-Bas] ; Kevin Groen [Pays-Bas] ; Abraham J. Koster [Pays-Bas] ; Eric J. Snijder [Pays-Bas] ; Marjolein Kikkert [Pays-Bas] ; Montserrat Bárcena [Pays-Bas]Expression and Cleavage of Middle East Respiratory Syndrome Coronavirus nsp3-4 Polyprotein Induce the Formation of Double-Membrane Vesicles That Mimic Those Associated with Coronaviral RNA Replication
001408 (2016) Jean Kaoru Millet [États-Unis] ; Monty E. Goldstein [États-Unis] ; Rachael N. Labitt [États-Unis] ; Hung-Lun Hsu [États-Unis] ; Susan Daniel [États-Unis] ; Gary R. Whittaker [États-Unis]A camel-derived MERS-CoV with a variant spike protein cleavage site and distinct fusion activation properties
001622 (2015) Andong Wu [République populaire de Chine] ; Yi Wang [République populaire de Chine] ; Cong Zeng [République populaire de Chine] ; Xingyu Huang [République populaire de Chine] ; Shan Xu [République populaire de Chine] ; Ceyang Su [République populaire de Chine] ; Min Wang [République populaire de Chine] ; Yu Chen [République populaire de Chine] ; Deyin Guo [République populaire de Chine]Prediction and biochemical analysis of putative cleavage sites of the 3C-like protease of Middle East respiratory syndrome coronavirus
002B50 (2007) Alexei V. Korennykh [États-Unis] ; Matthew J. Plantinga ; Carl C. Correll ; Joseph A. PiccirilliLinkage between substrate recognition and catalysis during cleavage of sarcin/ricin loop RNA by restrictocin.
002C84 (2006) Kazuki N. Sugahara [Japon] ; Takako Hirata ; Haruko Hayasaka ; Robert Stern ; Toshiyuki Murai ; Masayuki MiyasakaTumor cells enhance their own CD44 cleavage and motility by generating hyaluronan fragments.
002F80 (2005) S. Tenzer [Allemagne] ; B. Peters [Allemagne, États-Unis] ; S. Bulik [Allemagne] ; O. Schoor [Allemagne] ; C. Lemmel [Allemagne] ; M. M. Schatz [Allemagne] ; P.-M. Kloetzel [Allemagne] ; H.-G. Rammensee [Allemagne] ; H. Schild [Allemagne] ; H.-G. Holzhütter [Allemagne]Modeling the MHC class I pathway by combining predictions of proteasomal cleavage,TAP transport and MHC class I binding
002F81 (2005) Zheng Rong YangMining SARS-CoV protease cleavage data using non-orthogonal decision trees: a novel method for decisive template selection
003028 (2005) ZHENG RONG YANG [Royaume-Uni]Mining SARS-CoV protease cleavage data using non-orthogonal decision trees : a novel method for decisive template selection
003120 (2004) Hans-Dieter Arndt [Allemagne] ; Rüdiger Welz [Allemagne] ; Sabine Müller [Allemagne] ; Burkhart Ziemer [Allemagne] ; Ulrich Koert [Allemagne]Stereoselective Synthesis of trans‐threo‐trans‐Oligopyrrolidines: Potential Agents for RNA Cleavage
003213 (2003) Kazuki N. Sugahara [Japon] ; Toshiyuki Murai ; Hitomi Nishinakamura ; Hiroto Kawashima ; Hideyuki Saya ; Masayuki MiyasakaHyaluronan oligosaccharides induce CD44 cleavage and promote cell migration in CD44-expressing tumor cells.
003288 (2003) Ryan A. Cabot [États-Unis] ; Randall S. Prather [États-Unis]Cleavage stage porcine embryos may have differing developmental requirements for karyopherins α2 and α3
003339 (2002) Yoann Roupioz [France] ; Jean Lhomme ; Mitsuharu KoteraChemistry of the 2-deoxyribonolactone lesion in oligonucleotides: cleavage kinetics and products analysis.
003515 (2001) Sequence-specific cleavage of HCV RNA by the modified ribonuclease H conjugated to HCV antisense oligodeoxynucleotides
003524 (2001) Rebecca Ellis Dutch ; Ryan N. Hagglund ; Margaret A. Nagel ; Reay G. Paterson ; Robert A. LambParamyxovirus Fusion (F) Protein: A Conformational Change on Cleavage Activation
003619 (2000) Y. Pommier [États-Unis] ; G S Laco ; G. Kohlhagen ; J M Sayer ; H. Kroth ; D M JerinaPosition-specific trapping of topoisomerase I-DNA cleavage complexes by intercalated benzo[a]- pyrene diol epoxide adducts at the 6-amino group of adenine.
003631 (2000) Y. Pommier [États-Unis] ; G. Kohlhagen ; P. Pourquier ; J M Sayer ; H. Kroth ; D M JerinaBenzo[a]pyrene diol epoxide adducts in DNA are potent suppressors of a normal topoisomerase I cleavage site and powerful inducers of other topoisomerase I cleavages.

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