Javier Iglesias-Fernández

About Javier Iglesias-Fernández

Javier Iglesias-Fernández, With an exceptional h-index of 19 and a recent h-index of 16 (since 2020), a distinguished researcher at Universidad de Gerona, specializes in the field of Molecular Dynamics, Enhance Sampling Techniques, Markov State Models, Docking Calculations.

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

Structural basis of a redox-dependent conformational switch that regulates the stress kinase p38α

Designing Efficient Enzymes: Eight Predicted Mutations Convert a Hydroxynitrile Lyase into an Efficient Esterase

Controlled sulfur-based engineering confers mouldability to phosphorothioate antisense oligonucleotides

MEP pathway products allosterically promote monomerization of deoxy-D-xylulose-5-phosphate synthase to feedback-regulate their supply

Preclinical evaluation of a COVID-19 vaccine candidate based on a recombinant RBD fusion heterodimer of SARS-CoV-2

Brave new surfactant world revisited by thermoalkalophilic lipases: computational insights into the role of SDS as a substrate analog

In Silico Identification and Experimental Validation of Distal Activity-Enhancing Mutations in Tryptophan Synthase

Insights into the molecular determinants of thermal stability in halohydrin dehalogenase HheD2

Javier Iglesias-Fernández Information

University

Position

Institut de Química Computacional i Catàlisi (IQCC). (Spain)

Citations(all)

1439

Citations(since 2020)

970

Cited By

894

hIndex(all)

19

hIndex(since 2020)

16

i10Index(all)

23

i10Index(since 2020)

20

Email

University Profile Page

Google Scholar

Javier Iglesias-Fernández Skills & Research Interests

Molecular Dynamics

Enhance Sampling Techniques

Markov State Models

Docking Calculations

Top articles of Javier Iglesias-Fernández

Structural basis of a redox-dependent conformational switch that regulates the stress kinase p38α

Nature Communications

2023/12/1

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

Designing Efficient Enzymes: Eight Predicted Mutations Convert a Hydroxynitrile Lyase into an Efficient Esterase

bioRxiv

2023/8/24

Controlled sulfur-based engineering confers mouldability to phosphorothioate antisense oligonucleotides

Nucleic acids research

2023/6/9

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

Carlos González
Carlos González

H-Index: 3

MEP pathway products allosterically promote monomerization of deoxy-D-xylulose-5-phosphate synthase to feedback-regulate their supply

Plant communications

2023/5/8

Preclinical evaluation of a COVID-19 vaccine candidate based on a recombinant RBD fusion heterodimer of SARS-CoV-2

Iscience

2023/3/17

Brave new surfactant world revisited by thermoalkalophilic lipases: computational insights into the role of SDS as a substrate analog

Physical Chemistry Chemical Physics

2023

Mohamed Shehata
Mohamed Shehata

H-Index: 2

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

In Silico Identification and Experimental Validation of Distal Activity-Enhancing Mutations in Tryptophan Synthase

ACS catalysis

2021/10/28

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

Silvia Osuna
Silvia Osuna

H-Index: 25

Insights into the molecular determinants of thermal stability in halohydrin dehalogenase HheD2

The FEBS Journal

2021/8

Rational prediction of distal activity-enhancing mutations in tryptophan synthase

2021/3/4

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

Conformational landscapes of halohydrin dehalogenases and their accessible active site tunnels

Catalysts

2020/12/1

Javier Iglesias-Fernández
Javier Iglesias-Fernández

H-Index: 14

Enzyme conformation influences the performance of lipase‐powered nanomotors

Angewandte Chemie

2020/11/16

Mutational analysis of linalool dehydratase isomerase suggests that alcohol and alkene transformations are catalyzed using noncovalent mechanisms

ACS Catalysis

2020/9/15

See List of Professors in Javier Iglesias-Fernández University(Universidad de Gerona)

Co-Authors

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