​
Login / Signup
Stav Izrailov
ORCID
Publication Activity (10 Years)
Years Active: 2023-2023
Publications (10 Years): 6
Top Topics
Fatty Acid
Molecular Dynamics Simulations
Dna Binding
Machine Learning
Top Venues
Nature communications
</>
This page only lists publications with an associated author ORCID identifier.
Publications
</>
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)
Iris D Zelnik
,
Beatriz Mestre
,
Jonathan Yaacov Weinstein
,
Tamir Dingjan
,
Stav Izrailov
,
Shifra Ben-Dor
,
Sarel Jacob Fleishman
,
Anthony H Futerman
Computational design and molecular dynamics simulations suggest the mode of substrate binding in ceramide synthases.
Nature communications
14 (1) (2023)