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Phosphorylation Modification Force Field FB18CMAP Improving Conformation Sampling of Phosphoproteins.

, , , , and . J. Chem. Inf. Model., 63 (5): 1602-1614 (March 2023)

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Phanto-IDP: compact model for precise intrinsically disordered protein backbone generation and enhanced sampling., , , , , , and . Briefings Bioinform., (November 2023)Phosphorylation Modification Force Field FB18CMAP Improving Conformation Sampling of Phosphoproteins., , , , and . J. Chem. Inf. Model., 63 (5): 1602-1614 (March 2023)Research and Evaluation of the Allosteric Protein-Specific Force Field Based on a Pre-Training Deep Learning Model., , , , , , , , , and 1 other author(s). J. Chem. Inf. Model., 63 (8): 2456-2468 (April 2023)Exploring the Pyrazinamide Drug Resistance Mechanism of Clinical Mutants T370P and W403G in Ribosomal Protein S1 ofMycobacterium tuberculosis., , , , , and . J. Chem. Inf. Model., 59 (4): 1584-1597 (2019)Personal Precise Force Field for Intrinsically Disordered and Ordered Proteins Based on Deep Learning., , , , and . J. Chem. Inf. Model., 63 (1): 362-374 (2023)Development and Application of Offshore Trade Authenticity Verification Platform Based on Blockchain., , , and . DSIE, volume 383 of Frontiers in Artificial Intelligence and Applications, page 137-147. IOS Press, (2023)RNA-Specific Force Field Optimization with CMAP and Reweighting., , , , and . J. Chem. Inf. Model., 62 (2): 372-385 (2022)Gain-of-Function SHP2 E76Q Mutant Rescuing Autoinhibition Mechanism Associated with Juvenile Myelomonocytic Leukemia., , , , , , , , and . J. Chem. Inf. Model., 59 (7): 3229-3239 (2019)Recent Force Field Strategies for Intrinsically Disordered Proteins., , , , and . J. Chem. Inf. Model., 61 (3): 1037-1047 (2021)Phosphorylation Regulation Mechanism of β2 Integrin for the Binding of Filamin Revealed by Markov State Model., , , , , , and . J. Chem. Inf. Model., 63 (2): 605-618 (January 2023)