Serveur d'exploration MERS - Curation (PubMed)

Index « MedMesh.i » - entrée « Transcription, Genetic »
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Transcription Initiation Site < Transcription, Genetic < Transcriptional Activation  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 52.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000118 (2020) Xi Zhang [République populaire de Chine] ; Hin Chu [République populaire de Chine] ; Lei Wen [République populaire de Chine] ; Huiping Shuai [République populaire de Chine] ; Dong Yang [République populaire de Chine] ; Yixin Wang [République populaire de Chine] ; Yuxin Hou [République populaire de Chine] ; Zheng Zhu [République populaire de Chine] ; Shuofeng Yuan [République populaire de Chine] ; Feifei Yin [République populaire de Chine] ; Jasper Fuk-Woo Chan [République populaire de Chine] ; Kwok-Yung Yuen [République populaire de Chine]Competing endogenous RNA network profiling reveals novel host dependency factors required for MERS-CoV propagation.
000516 (2019) Jeong Lee [Corée du Sud] ; Sojung Bae [Corée du Sud] ; Jinjong Myoung [Corée du Sud]Generation of Full-Length Infectious cDNA Clones of Middle East Respiratory Syndrome Coronavirus.
000A74 (2018) Eyal Cohen [Israël] ; Zohar Zafrir [Israël] ; Tamir Tuller [Israël]A code for transcription elongation speed.
000C30 (2017) Daria Elkina [Russie] ; Lennart Weber [Allemagne] ; Marcus Lechner [Russie] ; Olga Burenina [Russie] ; Andrea Weisert [Allemagne] ; Elena Kubareva [Russie] ; Roland K. Hartmann [Russie] ; Gabriele Klug [Allemagne]6S RNA in Rhodobacter sphaeroides: 6S RNA and pRNA transcript levels peak in late exponential phase and gene deletion causes a high salt stress phenotype.
000C50 (2017) Cheng-Wei Yang [République populaire de Chine] ; Yue-Zhi Lee [République populaire de Chine] ; Hsing-Yu Hsu [République populaire de Chine] ; Chuan Shih [République populaire de Chine] ; Yu-Sheng Chao [République populaire de Chine] ; Hwan-You Chang [République populaire de Chine] ; Shiow-Ju Lee [République populaire de Chine]Targeting Coronaviral Replication and Cellular JAK2 Mediated Dominant NF-κB Activation for Comprehensive and Ultimate Inhibition of Coronaviral Activity.
000E88 (2016) Rippei Hayashi [Autriche] ; Jakob Schnabl [Autriche] ; Dominik Handler [Autriche] ; Fabio Mohn [Suisse] ; Stefan L. Ameres [Autriche] ; Julius Brennecke [Autriche]Genetic and mechanistic diversity of piRNA 3'-end formation.
001239 (2016) Nerea Irigoyen [Royaume-Uni] ; Andrew E. Firth [Royaume-Uni] ; Joshua D. Jones [Royaume-Uni] ; Betty Y-W Chung [Royaume-Uni] ; Stuart G. Siddell [Royaume-Uni] ; Ian Brierley [Royaume-Uni]High-Resolution Analysis of Coronavirus Gene Expression by RNA Sequencing and Ribosome Profiling.
001559 (2015) Yuri Kusov [Allemagne] ; Jinzhi Tan [Allemagne] ; Enrique Alvarez [Espagne] ; Luis Enjuanes [Espagne] ; Rolf Hilgenfeld [Allemagne]A G-quadruplex-binding macrodomain within the "SARS-unique domain" is essential for the activity of the SARS-coronavirus replication-transcription complex.
001675 (2015) Karen Köhler [Allemagne] ; Elke Duchardt-Ferner [Allemagne] ; Marcus Lechner [Allemagne] ; Katrin Damm [Allemagne] ; Philipp G. Hoch [Allemagne] ; Margarita Salas [Espagne] ; Roland K. Hartmann [Allemagne]Structural and mechanistic characterization of 6S RNA from the hyperthermophilic bacterium Aquifex aeolicus.
001682 (2015) Dong Yang [États-Unis] ; Julian L. Leibowitz [États-Unis]The structure and functions of coronavirus genomic 3' and 5' ends.
001774 (2014) Marion Sevajol [France] ; Lorenzo Subissi [France] ; Etienne Decroly [France] ; Bruno Canard [France] ; Isabelle Imbert [France]Insights into RNA synthesis, capping, and proofreading mechanisms of SARS-coronavirus.
001824 (2014) Jiannan Guo [États-Unis] ; Tiandao Li ; Joshua Schipper ; Kyle A. Nilson ; Francis K. Fordjour ; Jeffrey J. Cooper ; Raluca Gordân ; David H. PriceSequence specificity incompletely defines the genome-wide occupancy of Myc.
001A77 (2014) Olga Y. Burenina ; Philipp G. Hoch ; Katrin Damm ; Margarita Salas ; Timofei S. Zatsepin ; Marcus Lechner ; Tatiana S. Oretskaya ; Elena A. Kubareva ; Roland K. HartmannMechanistic comparison of Bacillus subtilis 6S-1 and 6S-2 RNAs--commonalities and differences.
001E11 (????) Giuseppe M. Campo [Italie] ; Angela Avenoso ; Angela D'Ascola ; Vera Prestipino ; Michele Scuruchi ; Giancarlo Nastasi ; Alberto Calatroni ; Salvatore CampoHyaluronan differently modulates TLR-4 and the inflammatory response in mouse chondrocytes.
001E13 (2012) Tatiana Venkova-Canova [États-Unis] ; Anik Saha ; Dhruba K. ChattorajA 29-mer site regulates transcription of the initiator gene as well as function of the replication origin of Vibrio cholerae chromosome II.
001E33 (2012) Pavel Abart [États-Unis] ; Donal S. LuseInactivated RNA polymerase II open complexes can be reactivated with TFIIE.
001F11 (2011) Justin M. Holub [États-Unis] ; Michael J. Garabedian ; Kent KirshenbaumModulation of human estrogen receptor α activity by multivalent estradiol-peptidomimetic conjugates.
001F68 (2010) Michael R. Schlabach [États-Unis] ; Jimmy K. Hu ; Mamie Li ; Stephen J. ElledgeSynthetic design of strong promoters.
002062 (????) Kihoon Yoon [États-Unis] ; Daijin Ko ; Mark Doderer ; Carolina B. Livi ; Luiz O F. PenalvaOver-represented sequences located on 3' UTRs are potentially involved in regulatory functions.
002074 (2008) Akifumi Yamashita [Japon] ; Naohisa Goto ; Seiji Nishiguchi ; Kazunori Shimada ; Hiromichi Yamanishi ; Teruo YasunagaComputational search for over-represented 8-mers within the 5'-regulatory regions of 634 mouse testis-specific genes.
002182 (2007) Maria V. Barbolina [États-Unis] ; Roman Kristoforov ; Amanda Manfredo ; Yanling Chen ; Paul GollnickThe rate of TRAP binding to RNA is crucial for transcription attenuation control of the B. subtilis trp operon.

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