Guanzhong Mao
Researcher at Department of Cell and Molecular Biology; Molecular Biophysics
- Telephone:
- +46 18 471 50 45
- E-mail:
- guanzhong.mao@icm.uu.se
- Visiting address:
- Husargatan 3
752 37 Uppsala - Postal address:
- Box 596
751 24 Uppsala
Publications
Recent publications
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Multiplexed single-molecule characterization at the library scale
Part of Nature Protocols, p. 749-774, 2026
- DOI for Multiplexed single-molecule characterization at the library scale
- Download full text (pdf) of Multiplexed single-molecule characterization at the library scale
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Part of RNA Biology, p. 1-19, 2025
- DOI for RNase P cleavage of pseudoknot substrates reveals differences in active site architecture that depend on residue N-1 in the 5' leader
- Download full text (pdf) of RNase P cleavage of pseudoknot substrates reveals differences in active site architecture that depend on residue N-1 in the 5' leader
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Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips
Part of Science, p. 892-898, 2024
- DOI for Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips
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Asymmetric nucleosome PARylation at DNA breaks mediates directional nucleosome sliding by ALC1
Part of Nature Communications, 2024
- DOI for Asymmetric nucleosome PARylation at DNA breaks mediates directional nucleosome sliding by ALC1
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Importance of residue 248 in Escherichia coli RNase P RNA mediated cleavage
Part of Scientific Reports, 2023
- DOI for Importance of residue 248 in Escherichia coli RNase P RNA mediated cleavage
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All publications
Articles in journal
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Part of RNA Biology, p. 1-19, 2025
- DOI for RNase P cleavage of pseudoknot substrates reveals differences in active site architecture that depend on residue N-1 in the 5' leader
- Download full text (pdf) of RNase P cleavage of pseudoknot substrates reveals differences in active site architecture that depend on residue N-1 in the 5' leader
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Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips
Part of Science, p. 892-898, 2024
- DOI for Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips
- Download full text (pdf) of Massively parallel analysis of single-molecule dynamics on next-generation sequencing chips
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Asymmetric nucleosome PARylation at DNA breaks mediates directional nucleosome sliding by ALC1
Part of Nature Communications, 2024
- DOI for Asymmetric nucleosome PARylation at DNA breaks mediates directional nucleosome sliding by ALC1
- Download full text (pdf) of Asymmetric nucleosome PARylation at DNA breaks mediates directional nucleosome sliding by ALC1
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Importance of residue 248 in Escherichia coli RNase P RNA mediated cleavage
Part of Scientific Reports, 2023
- DOI for Importance of residue 248 in Escherichia coli RNase P RNA mediated cleavage
- Download full text (pdf) of Importance of residue 248 in Escherichia coli RNase P RNA mediated cleavage
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Sequence specificity in DNA binding is mainly governed by association
Part of Science, p. 442-445, 2022
- DOI for Sequence specificity in DNA binding is mainly governed by association
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Spatiotemporally controlled generation of NTPs for single-molecule studies
Part of Nature Chemical Biology, p. 1144-+, 2022
- DOI for Spatiotemporally controlled generation of NTPs for single-molecule studies
- Download full text (pdf) of Spatiotemporally controlled generation of NTPs for single-molecule studies
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DNA surface exploration and operator bypassing during target search
Part of Nature, p. 858-+, 2020
- DOI for DNA surface exploration and operator bypassing during target search
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Structure-guided approach to site-specific fluorophore labeling of the lac repressor LacI
Part of PLOS ONE, 2018
- DOI for Structure-guided approach to site-specific fluorophore labeling of the lac repressor LacI
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Part of PLOS ONE, 2018
- DOI for Critical domain interactions for type A RNase P RNA catalysis with and without the specificity domain
- Download full text (pdf) of Critical domain interactions for type A RNase P RNA catalysis with and without the specificity domain
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Inhibition of Bacterial RNase P RNA by Phenothiazine Derivatives
Part of Biomolecules, 2016
- DOI for Inhibition of Bacterial RNase P RNA by Phenothiazine Derivatives
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Part of PLOS ONE, 2016
- DOI for Cleavage of Model Substrates by Arabidopsis thaliana PRORP1 Reveals New Insights into Its Substrate Requirements
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Part of Nucleic Acids Research, p. 631-642, 2014
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Cleavage mediated by the P15 domain of bacterial RNase P RNA
Part of Nucleic Acids Research, p. 2224-2233, 2012
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Part of Journal of Molecular Biology, p. 384-396, 2011