Mina Ghahremani

About Mina Ghahremani

Mina Ghahremani, With an exceptional h-index of 11 and a recent h-index of 10 (since 2020), a distinguished researcher at Queens University, specializes in the field of Biochemistry and Molecular Biology.

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

Substrate profiling of the Arabidopsis Ca2+-dependent protein kinase AtCPK4 and its Ricinus communis ortholog RcCDPK1

Synthetic virology approaches to improve the safety and efficacy of oncolytic virus therapies

Arabidopsis PAP17 is a dual-localized purple acid phosphatase up-regulated during phosphate deprivation, senescence, and oxidative stress

Luciferase-based biosensors in the era of the COVID-19 pandemic

Nanoluciferase complementation-based bioreporter reveals the importance of N-linked glycosylation of SARS-CoV-2 S for viral entry

Home sweet home: how mutualistic microbes modify root development to promote symbiosis

Characterization of critical determinants of ACE2–SARS CoV-2 RBD interaction

Recent insights into the metabolic adaptations of phosphorus-deprived plants

Mina Ghahremani Information

University

Position

___

Citations(all)

414

Citations(since 2020)

381

Cited By

113

hIndex(all)

11

hIndex(since 2020)

10

i10Index(all)

12

i10Index(since 2020)

10

Email

University Profile Page

Google Scholar

Mina Ghahremani Skills & Research Interests

Biochemistry and Molecular Biology

Top articles of Mina Ghahremani

Substrate profiling of the Arabidopsis Ca2+-dependent protein kinase AtCPK4 and its Ricinus communis ortholog RcCDPK1

Plant Science

2023/6/1

Synthetic virology approaches to improve the safety and efficacy of oncolytic virus therapies

Nature communications

2023/5/26

Arabidopsis PAP17 is a dual-localized purple acid phosphatase up-regulated during phosphate deprivation, senescence, and oxidative stress

2022/1/5

Luciferase-based biosensors in the era of the COVID-19 pandemic

2021/8/9

Nanoluciferase complementation-based bioreporter reveals the importance of N-linked glycosylation of SARS-CoV-2 S for viral entry

Molecular Therapy

2021/2/10

Home sweet home: how mutualistic microbes modify root development to promote symbiosis

2021/3/29

Mina Ghahremani
Mina Ghahremani

H-Index: 6

Characterization of critical determinants of ACE2–SARS CoV-2 RBD interaction

International Journal of Molecular Sciences

2021/2/25

Recent insights into the metabolic adaptations of phosphorus-deprived plants

2021/2/2

Mina Ghahremani
Mina Ghahremani

H-Index: 6

Phosphate and phosphite have a differential impact on the proteome and phosphoproteome of Arabidopsis suspension cell cultures

The Plant Journal

2021/2

Devang Mehta
Devang Mehta

H-Index: 7

Mina Ghahremani
Mina Ghahremani

H-Index: 6

Implications for SARS-CoV-2 vaccine design: Fusion of spike glycoprotein transmembrane domain to receptor-binding domain induces trimerization

Membranes

2020/8/30

Nanoluciferase complementation-based biosensor reveals the importance of N-linked glycosylation of SARS-CoV-2 Spike for viral entry (preprint)

2020

Phosphoprotein phosphatase function of secreted purple acid phosphatases

Protein Phosphatases and Stress Management in Plants: Functional Genomic Perspective

2020

Mina Ghahremani
Mina Ghahremani

H-Index: 6

See List of Professors in Mina Ghahremani University(Queens University)