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Plos One|December 4, 2015
A Chemical and Enzymatic Approach to Study Site-Specific SumoylationClaudio P Albuquerque, Eyan Yeung, Shawn Ma, et al.Methods in Molecular Biology (Clifton, N.J.)|December 12, 2018
Conversion of Fibroblasts to Hepatocyte-Like Cells In VivoGuangqi Song, Qinggong Yuan, Zhen Dai, et al.Pharmaceutical Nanotechnology|March 31, 2023
Recent Trends in Nanocarriers for the Management of Atopic DermatitisPravin Kumar, Mahendra Singh Ashawat, Vinay Pandit, et al.Physical Chemistry Chemical Physics : PCCP|May 28, 2016
Reactive force field development for magnesium chloride hydrates and its application for seasonal heat storageAmar Deep Pathak, Silvia Nedea, Adri C T van Duin, et al.Biochemistry|October 6, 2004
Narrowing substrate specificity in a directly evolved enzyme: the A293D mutant of aspartate aminotransferaseMargaret A Chow, Kathryn E McElroy, Kevin D Corbett, et al.Genes & Development|May 11, 2017
Recruitment of a SUMO isopeptidase to rDNA stabilizes silencing complexes by opposing SUMO targeted ubiquitin ligase activityJason Liang, Namit Singh, Christopher R Carlson, et al.Science Advances|May 27, 2026
Phosphorylation remodels the mitotic centrosome matrix to generate bipartite γ-tubulin complex docking sitesMidori Ohta, Orie Arakawa, Yajie Gu, et al.Biorxiv : the Preprint Server for Biology|July 15, 2025
Bipartite chromatin recognition by Hop1 from two diverged holozoaAlyssa A Rodriguez, Alessandro E Cirulli, Katie Chau, et al.Life Science Alliance|August 19, 2025
Bipartite chromatin recognition by Hop1 from two diverged HolozoaAlyssa A Rodriguez, Alessandro E Cirulli, Katie Chau, et al.Biorxiv : the Preprint Server for Biology|December 3, 2025
Phosphorylation remodels the mitotic centrosome matrix to generate bipartite γ-tubulin complex docking sitesMidori Ohta, Orie Arakawa, Yajie Gu, et al.Pageof 23