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Nature methods

Showing results (1-10 of 10) with videos related to

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Nature Methods|April 7, 2020
Kethoxal-assisted single-stranded DNA sequencing captures global transcription dynamics and enhancer activity in situTong Wu, Ruitu Lyu, Qiancheng You, et al.
Nature Methods|June 2, 2020
Author Correction: Kethoxal-assisted single-stranded DNA sequencing captures global transcription dynamics and enhancer activity in situTong Wu, Ruitu Lyu, Qiancheng You, et al.
Nature Methods|May 16, 2017
Nm-seq maps 2'-O-methylation sites in human mRNA with base precisionQing Dai, Sharon Moshitch-Moshkovitz, Dali Han, et al.
Nature Methods|December 18, 2007
A proteome chip approach reveals new DNA damage recognition activities in Escherichia coliChien-Sheng Chen, Ekaterina Korobkova, Hao Chen, et al.
Nature Methods|July 28, 2015
Efficient and quantitative high-throughput tRNA sequencingGuanqun Zheng, Yidan Qin, Wesley C Clark, et al.
Nature Methods|September 25, 2019
Evolution of a reverse transcriptase to map N<sup>1</sup>-methyladenosine in human messenger RNAHuiqing Zhou, Simone Rauch, Qing Dai, et al.
Nature Methods|November 22, 2011
Sensitive and specific single-molecule sequencing of 5-hydroxymethylcytosineChun-Xiao Song, Tyson A Clark, Xing-Yu Lu, et al.
Nature Methods|September 8, 2015
Bisulfite-free, base-resolution analysis of 5-formylcytosine at the genome scaleBo Xia, Dali Han, Xingyu Lu, et al.
Nature Methods|June 9, 2026
Spatially resolved m<sup>6</sup>A profiling using m<sup>6</sup>A-ARTR-DBiTYu Xiao, Zhiliang Bai, Zhuoning Zou, et al.
Nature Methods|January 10, 2024
Profiling of RNA-binding protein binding sites by in situ reverse transcription-based sequencingYu Xiao, Yan-Ming Chen, Zhongyu Zou, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Nature Methods|April 7, 2020
Kethoxal-assisted single-stranded DNA sequencing captures global transcription dynamics and enhancer activity in situTong Wu, Ruitu Lyu, Qiancheng You, et al.
Nature Methods|June 2, 2020
Author Correction: Kethoxal-assisted single-stranded DNA sequencing captures global transcription dynamics and enhancer activity in situTong Wu, Ruitu Lyu, Qiancheng You, et al.
Nature Methods|May 16, 2017
Nm-seq maps 2'-O-methylation sites in human mRNA with base precisionQing Dai, Sharon Moshitch-Moshkovitz, Dali Han, et al.
Nature Methods|December 18, 2007
A proteome chip approach reveals new DNA damage recognition activities in Escherichia coliChien-Sheng Chen, Ekaterina Korobkova, Hao Chen, et al.
Nature Methods|July 28, 2015
Efficient and quantitative high-throughput tRNA sequencingGuanqun Zheng, Yidan Qin, Wesley C Clark, et al.
Nature Methods|September 25, 2019
Evolution of a reverse transcriptase to map N<sup>1</sup>-methyladenosine in human messenger RNAHuiqing Zhou, Simone Rauch, Qing Dai, et al.
Nature Methods|November 22, 2011
Sensitive and specific single-molecule sequencing of 5-hydroxymethylcytosineChun-Xiao Song, Tyson A Clark, Xing-Yu Lu, et al.
Nature Methods|September 8, 2015
Bisulfite-free, base-resolution analysis of 5-formylcytosine at the genome scaleBo Xia, Dali Han, Xingyu Lu, et al.
Nature Methods|June 9, 2026
Spatially resolved m<sup>6</sup>A profiling using m<sup>6</sup>A-ARTR-DBiTYu Xiao, Zhiliang Bai, Zhuoning Zou, et al.
Nature Methods|January 10, 2024
Profiling of RNA-binding protein binding sites by in situ reverse transcription-based sequencingYu Xiao, Yan-Ming Chen, Zhongyu Zou, et al.
Pageof 1