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Author Details
Full Name
Chenxi Qiu
Affiliation
Harvard Medical School
ORCID
Career Start Year
2013
Papers
19
H Index
10
Expertise
CM4AI Collaborator
Nevan J Krogan (CM4AI)
PMID
Paper Title
Journal Title
Published Year
36909581
Widespread epistasis shapes RNA Polymerase II active site function and evolution.
bioRxiv
2023
36947548
Characterization of RNA polymerase II trigger loop mutations using molecular dynamics simulations and machine learning.
PLoS Comput Biol
2023
35229648
Biosensor-Coupled <i>In Vivo</i> Mutagenesis and Omics Analysis Reveals Reduced Lysine and Arginine Synthesis To Improve Malonyl-Coenzyme A Flux in <i>Saccharomyces cerevisiae</i>.
mSystems
2022
36636342
Dynamic-tuning yeast storage carbohydrate improves the production of acetyl-CoA-derived chemicals.
iScience
2022
34926267
<i>SEPT6</i>_<i>TRIM33</i> Gene Fusion and Mutated TP53 Pathway Associate With Unfavorable Prognosis in Patients With B-Cell Lymphomas.
Front Oncol
2021
33662401
A genome-wide copper-sensitized screen identifies novel regulators of mitochondrial cytochrome c oxidase activity.
J Biol Chem
2021
32487207
Universal promoter scanning by Pol II during transcription initiation in Saccharomyces cerevisiae.
Genome Biol
2020
32690010
Engineering transcription factor-based biosensors for repressive regulation through transcriptional deactivation design in Saccharomyces cerevisiae.
Microb Cell Fact
2020
32854170
An innovative protein expression system using RNA polymerase I for large-scale screening of high-nucleic-acid content Saccharomyces cerevisiae strains.
Microb Biotechnol
2020
30797033
Functional assays for transcription mechanisms in high-throughput.
Methods
2019
31778177
Biosensors design in yeast and applications in metabolic engineering.
FEMS Yeast Res
2019
29298339
Correction: High-Resolution Phenotypic Landscape of the RNA Polymerase II Trigger Loop.
PLoS Genet
2018
28582494
Engineering of Saccharomyces cerevisiae for the efficient co-utilization of glucose and xylose.
FEMS Yeast Res
2017
28459063
Coutilization of D-Glucose, D-Xylose, and L-Arabinose in <i>Saccharomyces cerevisiae</i> by Coexpressing the Metabolic Pathways and Evolutionary Engineering.
Biomed Res Int
2017
28119420
Wide-ranging and unexpected consequences of altered Pol II catalytic activity in vivo.
Nucleic Acids Res
2017
28785254
Identification of Important Amino Acids in Gal2p for Improving the L-arabinose Transport and Metabolism in <i>Saccharomyces cerevisiae</i>.
Front Microbiol
2017
27898685
High-Resolution Phenotypic Landscape of the RNA Polymerase II Trigger Loop.
PLoS Genet
2016
25793756
Identification and molecular characterization of the homogentisate pathway responsible for pyomelanin production, the major melanin constituents in Aeromonas media WS.
PLoS One
2015
23932120
From structure to systems: high-resolution, quantitative genetic analysis of RNA polymerase II.
Cell
2013
1 - 19 of 19
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row(s) 1 - 30 of 30
Collaborators
Craig D Kaplan
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Texas A&M University, College Station
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4
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Co-authored papers
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Co-authored papers
1
Hannes Braberg
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1
Richard P Metz
Co-authored papers
1
Nevan J Krogan (CM4AI)
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Co-authored papers
1
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1
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Sloan-Kettering Institute
Co-authored papers
1
Erica A Moehle
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Co-authored papers
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Michael Shales
University of California, USA Quantitative Biosciences Institute (QBI) san francisco
Co-authored papers
1
1 - 19