Wenfei Li

About Wenfei Li

Wenfei Li, With an exceptional h-index of 27 and a recent h-index of 17 (since 2020), a distinguished researcher at Nanjing University, specializes in the field of Computational Biophysics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Machine learning in molecular simulations of biomolecules

Unambiguous discrimination of all 20 proteinogenic amino acids and their modifications by nanopore

Bidirectional allostery mechanism of catch-bond effect in cell adhesion

Fusion dynamics and size-dependent droplet microstructure in ssDNA mediated protein phase separation

Role of repeated conformational transitions in substrate binding of adenylate kinase

Self-Effected Allosteric Coupling and Cooperativity in Hypoxic Response Regulation with Disordered Proteins

Frustration and the Kinetic Repartitioning Mechanism of Substrate Inhibition in Enzyme Catalysis

Coarse-grained description of monounsaturated peroxidized phospholipid bilayers

Wenfei Li Information

University

Position

___

Citations(all)

2335

Citations(since 2020)

998

Cited By

1617

hIndex(all)

27

hIndex(since 2020)

17

i10Index(all)

47

i10Index(since 2020)

25

Email

University Profile Page

Google Scholar

Wenfei Li Skills & Research Interests

Computational Biophysics

Top articles of Wenfei Li

Machine learning in molecular simulations of biomolecules

Acta Phys. Sin.

2023/12/20

Unambiguous discrimination of all 20 proteinogenic amino acids and their modifications by nanopore

Nature Methods

2023/9/25

Bidirectional allostery mechanism of catch-bond effect in cell adhesion

arXiv preprint arXiv:2303.04443

2023/3/8

Fusion dynamics and size-dependent droplet microstructure in ssDNA mediated protein phase separation

bioRxiv

2023

Wenfei Li
Wenfei Li

H-Index: 14

Role of repeated conformational transitions in substrate binding of adenylate kinase

The Journal of Physical Chemistry B

2022/10/12

Self-Effected Allosteric Coupling and Cooperativity in Hypoxic Response Regulation with Disordered Proteins

The Journal of Physical Chemistry Letters

2022/9/28

Frustration and the Kinetic Repartitioning Mechanism of Substrate Inhibition in Enzyme Catalysis

The Journal of Physical Chemistry B

2022/8/31

Coarse-grained description of monounsaturated peroxidized phospholipid bilayers

The Journal of Chemical Physics

2022/8/28

Root Hair Apex is the Key Site for Symplastic Delivery of Graphene into Plants

Environmental Science & Technology

2022/8/10

Role of water-bridged interactions in metal ion coupled protein allostery

PLOS Computational Biology

2022/6/2

Structure and dynamics of Odinarchaeota tubulin and the implications for eukaryotic microtubule evolution

Science Advances

2022/3/25

Enhanced sampling method with coarse graining of conformational space

Physical Review E

2021/3/8

Modeling hydrogen exchange of proteins by a multiscale method

Chinese Physics B

2021/2/5

Allostery and molecular stripping mechanism in profilin regulated actin filament growth

New Journal of Physics

2021

Long-range correlation and critical fluctuations in coevolution networks of protein sequences

Physica A: Statistical Mechanics and its Applications

2021

Jun Wang
Jun Wang

H-Index: 10

Wenfei Li
Wenfei Li

H-Index: 14

Advanced Sampling and Modeling in Molecular Simulations for Slow and Large-Scale Biomolecular Dynamics

2020/10

Activation Pathways and Free Energy Landscapes of the SARS-CoV-2 Spike Protein

ACS omega

2021/9/2

An ester bond underlies the mechanical strength of a pathogen surface protein

Nature Communications

2021/8/23

Accurate Estimation of Solvent Accessible Surface Area for Coarse-Grained Biomolecular Structures with Deep Learning

The Journal of Physical Chemistry B

2021/8/12

Tong Gong
Tong Gong

H-Index: 11

Wenfei Li
Wenfei Li

H-Index: 14

Mapping Potential Engineering Sites of Mycobacterium smegmatis porin A (MspA) to Form a Nanoreactor

ACS sensors

2021/6/9

See List of Professors in Wenfei Li University(Nanjing University)

Co-Authors

academic-engine