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Nucleic Acids Research|April 18, 2024
m6ACali: machine learning-powered calibration for accurate m6A detection in MeRIP-SeqHaokai Ye, Tenglong Li, Daniel J Rigden, et al.Nucleic Acids Research|December 2, 2025
m6AConquer: a consistently quantified and orthogonally validated database for the N6-methyladenosine (m6A) epitranscriptomeXichen Zhao, Haokai Ye, Dan He, et al.Nucleic Acids Research|August 17, 2023
m6A-Atlas v2.0: updated resources for unraveling the N6-methyladenosine (m6A) epitranscriptome among multiple speciesZhanmin Liang, Haokai Ye, Jiongming Ma, et al.FEBS Letters|February 15, 2003
Unexpected catalytic site variation in phosphoprotein phosphatase homologues of cofactor-dependent phosphoglycerate mutaseDaniel J RigdenFEBS Letters|August 17, 2011
Identification and modelling of a PPM protein phosphatase fold in the Legionella pneumophila deAMPylase SidDDaniel J RigdenFEBS Letters|July 19, 2002
Iterative database searches demonstrate that glycoside hydrolase families 27, 31, 36 and 66 share a common evolutionary origin with family 13Daniel J RigdenOmics : a Journal of Integrative Biology|February 26, 2011
Ab initio modeling led annotation suggests nucleic acid binding function for many DUFsDaniel J RigdenProtein Engineering|March 28, 2002
Use of covariance analysis for the prediction of structural domain boundaries from multiple protein sequence alignmentsDaniel J RigdenMethods in Molecular Biology (Clifton, N.J.)|November 11, 2019
Protein Phosphohistidine Phosphatases of the HP SuperfamilyDaniel J RigdenCurrent Opinion in Biotechnology|August 8, 2006
Understanding the cell in terms of structure and function: insights from structural genomicsDaniel J RigdenPageof 142