Michael Feig

Michael Feig

Michigan State University

H-index: 60

North America-United States

About Michael Feig

Michael Feig, With an exceptional h-index of 60 and a recent h-index of 39 (since 2020), a distinguished researcher at Michigan State University, specializes in the field of Biophysics, Biochemistry.

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

Transferable deep generative modeling of intrinsically disordered protein conformations

Shear effects on the structure and stabilization of biomolecular condensates: Coupling residue-based models with an external fluid field

Unraveling phase behavior of folded proteins and RNA via simulation

A study on the dynamics of proteins in a condensate using Trp-Cys quenching technique

PED in 2024: improving the community deposition of structural ensembles for intrinsically disordered proteins

One bead per residue can describe all-atom protein structures

Structural basis of transcription: RNA Polymerase II substrate binding and metal coordination at 3.0 Å using a free-electron laser

The effect of polymer length in liquid-liquid phase separation

Michael Feig Information

University

Position

___

Citations(all)

33626

Citations(since 2020)

15092

Cited By

24506

hIndex(all)

60

hIndex(since 2020)

39

i10Index(all)

142

i10Index(since 2020)

105

Email

University Profile Page

Michigan State University

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View Google Scholar Profile

Michael Feig Skills & Research Interests

Biophysics

Biochemistry

Top articles of Michael Feig

Title

Journal

Author(s)

Publication Date

Transferable deep generative modeling of intrinsically disordered protein conformations

bioRxiv

Giacomo Janson

Michael Feig

2024

Shear effects on the structure and stabilization of biomolecular condensates: Coupling residue-based models with an external fluid field

Biophysical Journal

Luis E Coronas

Thong Van

Lisa J Lapidus

Michael Feig

Fabio Sterpone

2024/2/8

Unraveling phase behavior of folded proteins and RNA via simulation

Biophysical Journal

Alexander Jussupow

Thong Van

Divya Bartley

Lisa J Lapidus

Michael Feig

2024/2/8

A study on the dynamics of proteins in a condensate using Trp-Cys quenching technique

Biophysical Journal

Kasun Gamage

Thong Van

Lisa J Lapidus

Michael Feig

2024/2/8

PED in 2024: improving the community deposition of structural ensembles for intrinsically disordered proteins

Nucleic acids research

Hamidreza Ghafouri

Tamas Lazar

Alessio Del Conte

Luiggi G Tenorio Ku

Peter Tompa

...

2024/1/5

One bead per residue can describe all-atom protein structures

Structure

Lim Heo

Michael Feig

2024/1/4

Structural basis of transcription: RNA Polymerase II substrate binding and metal coordination at 3.0 Å using a free-electron laser

bioRxiv

Lin Guowu

Christopher O Barnes

Simon Weiss

Bercem Dutagaci

Chenxi Qiu

...

2023

The effect of polymer length in liquid-liquid phase separation

Cell Reports Physical Science

Gilberto Valdes-Garcia

Kasun Gamage

Casey Smith

Karina Martirosova

Michael Feig

...

2023/5/17

Modeling concentration-dependent phase separation processes involving peptides and RNA via residue-based coarse-graining

Journal of Chemical Theory and Computation

Gilberto Valdes-Garcia

Lim Heo

Lisa J Lapidus

Michael Feig

2023

Varying molecular interactions explain aspects of crowder-dependent enzyme function of a viral protease

PLOS Computational Biology

Natalia Ostrowska

Michael Feig

Joanna Trylska

2023/4/25

Characterization of RNA polymerase II trigger loop mutations using molecular dynamics simulations and machine learning

PLOS Computational Biology

Bercem Dutagaci

Bingbing Duan

Chenxi Qiu

Craig D Kaplan

Michael Feig

2023/3/22

Direct generation of protein conformational ensembles via machine learning

Nature Communications

Giacomo Janson

Gilberto Valdes-Garcia

Lim Heo

Michael Feig

2023/2/11

Inhibitory proteins block substrate access by occupying the active site cleft of Bacillus subtilis intramembrane protease SpoIVFB

Elife

Sandra Olenic

Lim Heo

Michael Feig

Lee Kroos

2022/4/26

Protein assembly and crowding simulations

Lim Heo

Yuji Sugita

Michael Feig

2022/4/1

Molecular Dynamics Simulations of Rhodamine B Zwitterion Diffusion in Polyelectrolyte Solutions

The Journal of Physical Chemistry B

Peter K Walhout

Zhe He

Bercem Dutagaci

Grzegorz Nawrocki

Michael Feig

2022/12/28

Multi‐state modeling of G‐protein coupled receptors at experimental accuracy

Proteins: Structure, Function, and Bioinformatics

Lim Heo

Michael Feig

2022/11

Characterizing Transient Protein–Protein Interactions by Trp-Cys Quenching and Computer Simulations

The journal of physical chemistry letters

Lim Heo

Kasun Gamage

Gilberto Valdes-Garcia

Lisa J Lapidus

Michael Feig

2022/10/24

Physics‐Based Protein Structure Refinement in the Era of Artificial Intelligence

Proteins: Structure, Function, and Bioinformatics

Lim Heo

Giacomo Janson

Michael Feig

2021/13

Crowding affects structural dynamics and contributes to membrane association of the NS3/4A complex

Biophysical Journal

Natalia Ostrowska

Michael Feig

Joanna Trylska

2021/9/7

Reduced efficacy of a Src kinase inhibitor in crowded protein solution

Nature communications

Kento Kasahara

Suyong Re

Grzegorz Nawrocki

Hiraku Oshima

Chiemi Mishima-Tsumagari

...

2021/7/2

See List of Professors in Michael Feig University(Michigan State University)

Co-Authors

H-index: 67
Wonpil Im

Wonpil Im

Lehigh University

H-index: 59
jeetain mittal

jeetain mittal

Lehigh University

H-index: 36
John Karanicolas

John Karanicolas

Temple University

H-index: 23
Lim Heo

Lim Heo

Michigan State University

H-index: 21
Ryuhei Harada

Ryuhei Harada

University of Tsukuba

H-index: 17
Sarah Rauscher

Sarah Rauscher

University of Toronto

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