I Can Kazan

I Can Kazan

Arizona State University

H-index: 6

North America-United States

About I Can Kazan

I Can Kazan, With an exceptional h-index of 6 and a recent h-index of 6 (since 2020), a distinguished researcher at Arizona State University, specializes in the field of Biophysics.

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

Enhancing deep learning model design through protein dynamics information integration

Engineering gain-of-function mutants of a WW domain by dynamics and structural analysis

Some mechanistic underpinnings of molecular adaptations of SARS-COV-2 spike protein by integrating candidate adaptive polymorphisms with protein dynamics

Engineering gain‐of‐function mutants of a WW domain by dynamics and structural analysis

Allosteric regulatory control in dihydrofolate reductase is revealed by dynamic asymmetry

Understanding the evolution of cold sensing and menthol activation in TRPM8

Evolutionary Guided Molecular Dynamics Driven Protein Design

Design of novel cyanovirin-N variants by modulation of binding dynamics through distal mutations

I Can Kazan Information

University

Position

___

Citations(all)

108

Citations(since 2020)

104

Cited By

25

hIndex(all)

6

hIndex(since 2020)

6

i10Index(all)

4

i10Index(since 2020)

4

Email

University Profile Page

Google Scholar

I Can Kazan Skills & Research Interests

Biophysics

Top articles of I Can Kazan

Enhancing deep learning model design through protein dynamics information integration

Biophysical Journal

2024/2/8

Engineering gain-of-function mutants of a WW domain by dynamics and structural analysis

Biophysical Journal

2024/2/8

Some mechanistic underpinnings of molecular adaptations of SARS-COV-2 spike protein by integrating candidate adaptive polymorphisms with protein dynamics

bioRxiv

2023/9/15

Engineering gain‐of‐function mutants of a WW domain by dynamics and structural analysis

Protein Science

2023/9

Allosteric regulatory control in dihydrofolate reductase is revealed by dynamic asymmetry

Protein Science

2023/8

I Can Kazan
I Can Kazan

H-Index: 3

Understanding the evolution of cold sensing and menthol activation in TRPM8

Biophysical journal

2023/2/10

Evolutionary Guided Molecular Dynamics Driven Protein Design

2023

Design of novel cyanovirin-N variants by modulation of binding dynamics through distal mutations

Elife

2022/12/6

Investigating the allosteric response of the PICK1 PDZ domain to different ligands with all‐atom simulations

Protein Science

2022/12

I Can Kazan
I Can Kazan

H-Index: 3

Yi He
Yi He

H-Index: 8

Dynamic coupling of residues within proteins as a mechanistic foundation of many enigmatic pathogenic missense variants

PLoS computational biology

2022/4/7

The role of rigid residues in modulating TEM-1 β-lactamase function and thermostability

International journal of molecular sciences

2021/3/12

I Can Kazan
I Can Kazan

H-Index: 3

Adaptive Evolution of SARS-CoV-2: A Perspective from Dynamics

Biophysical Journal

2021/2/12

Protein folding stability and binding interactions through the lens of evolution: a dynamical perspective

2021/2/1

Design of novel CV-N variants: Modulation of binding dynamics through distal mutations

bioRxiv

2020/12/22

Plant-expressed cocaine hydrolase variants of butyrylcholinesterase and methods of reducing cocaine-primed reinstatement

2020/3/5

Large Scale Disease Susceptibility Prediction of nSNVs by Dynamics Information Based Neural Networks

Biophysical Journal

2020/2/7

A method for the incorporation of protein dynamics into computational enzyme design using the Rosetta software suite

Biophysical Journal

2020/2/7

See List of Professors in I Can Kazan University(Arizona State University)