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1. Highly Accurate Structure-Based Prediction of HIV-1 Coreceptor Usage Suggests Intermolecular Interactions Driving Tropism.

2. Insights into the structure, correlated motions, and electrostatic properties of two HIV-1 gp120 V3 loops.

3. The two sides of complement C3d: evolution of electrostatics in a link between innate and adaptive immunity.

9. Dynamic Model of Protease State and Inhibitor Trafficking to Predict Protease Activity in Breast Cancer Cells

10. Data-driven prediction of antiviral peptides based on periodicities of amino acid properties

11. A Nonlinear Support Vector Machine-Based Feature Selection Approach for Fault Detection and Diagnosis: Application to the Tennessee Eastman Process

12. Reassessing enzyme kinetics: Considering protease-as-substrate interactions in proteolytic networks

13. Virtual Screening of Chemical Compounds for Discovery of Complement C3 Ligands

14. Optimization of black-box problems using Smolyak grids and polynomial approximations

15. Princeton_TIGRESS 2.0: High refinement consistency and net gains through support vector machines and molecular dynamics in double-blind predictions during the CASP11 experiment

16. Big Data Approach to Batch Process Monitoring: Simultaneous Fault Detection and Diagnosis Using Nonlinear Support Vector Machine-based Feature Selection

17. An analysis and evaluation of the WeFold collaborative for protein structure prediction and its pipelines in CASP11 and CASP12

19. Simultaneous Fault Detection and Identification in Continuous Processes via nonlinear Support Vector Machine based Feature Selection

20. AESOP: A Python Library for Investigating Electrostatics in Protein Interactions

21. Engineering pre-SUMO4 as efficient substrate of SENP2

22. Forcefield_NCAA: Ab Initio Charge Parameters to Aid in the Discovery and Design of Therapeutic Proteins and Peptides with Unnatural Amino Acids and Their Application to Complement Inhibitors of the Compstatin Family

23. Princeton_TIGRESS: Protein geometry refinement using simulations and support vector machines

24. A Predictive Model for HIV Type 1 Coreceptor Selectivity

25. Princeton_TIGRESS 2.0: High refinement consistency and net gains through support vector machines and molecular dynamics in double-blind predictions during the CASP11 experiment

26. conSSert: Consensus SVM Model for Accurate Prediction of Ordered Secondary Structure

27. De Novo Peptide Design with C3a Receptor Agonist and Antagonist Activities: Theoretical Predictions and Experimental Validation

28. Electrostatic exploration of the C3d–FH4 interaction using a computational alanine scan

29. Complement Inhibition by Staphylococcus aureus: Electrostatics of C3d–EfbC and C3d–Ehp Association

30. Electrostatic Similarity Determination Using Multiresolution Analysis

31. The effect of electrostatics on factor H function and related pathologies

32. Is the rigid-body assumption reasonable?

33. Influence of Electrostatics on the Complement Regulatory Functions of Kaposica, the Complement Inhibitor of Kaposi’s Sarcoma-Associated Herpesvirus

34. Forcefield_PTM: Ab Initio Charge and AMBER Forcefield Parameters for Frequently Occurring Post-Translational Modifications

35. Princeton_TIGRESS: protein geometry refinement using simulations and support vector machines

36. Highly Accurate Structure-Based Prediction of HIV-1 Coreceptor Usage Suggests Intermolecular Interactions Driving Tropism

37. Clustering of HIV-1 Subtypes Based on gp120 V3 Loop electrostatic properties

38. Insights into the structure, correlated motions, and electrostatic properties of two HIV-1 gp120 V3 loops

39. The two sides of complement C3d: evolution of electrostatics in a link between innate and adaptive immunity

40. An evaluation of poisson-boltzmann electrostatic free energy calculations through comparison with experimental mutagenesis data

41. A multifaceted study of stigma/style cysteine-rich adhesin (SCA)-like Arabidopsis lipid transfer proteins (LTPs) suggests diversified roles for these LTPs in plant growth and reproduction

42. Electrostatic clustering and free energy calculations provide a foundation for protein design and optimization

43. Automated computational framework for the analysis of electrostatic similarities of proteins

44. Solvation effects in calculated electrostatic association free energies for the C3d-CR2 complex, and comparison to experimental data

45. A Gain-of-Function Mutation of Arabidopsis Lipid Transfer Protein 5 Disturbs Pollen Tube Tip Growth and Fertilization[C][W]

46. Erratum to 'Electrostatic exploration of the C3d–FH4 interaction using a computational alanine scan' [Mol. Immunol. 48 (2011) 1844–1850]

49. The Role of Electrostatics in the Function of Homologous Thioester Containing Proteins: Insights into the Evolution of the Complement C3d:Cr2 Interaction

50. Development of a High-Throughput Computational Protocol, AESOP, and its Application to the Electrostatic Analysis of the SUMO-1:SENP2 Complex

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