Best Researcher Award
Maria Hrmova — Adelaide University, Australia
| Maria Hrmova | |
|---|---|
| Affiliation | Adelaide University |
| Country | Australia |
| Scopus ID | 6603811052 |
| Documents | 141 |
| Citations | 6,789 |
| h-index | 45 |
| Subject Area | Computational biology |
| Event | World Top Scientist Awards |
| ORCID | 0000-0002-3545-0605 |
Maria Hrmova is a Professor of Structural Biochemistry and Biophysics whose documented academic work is associated with the University of Adelaide in Australia. Her research programme focuses on molecular mechanisms that underpin plant protein function, with particular attention to enzymes involved in plant development, plant transport proteins associated with elemental soil toxicity tolerance, and transcription factors involved in plant abiotic stress tolerance. [1]
Abstract
Maria Hrmova’s research profile represents an interdisciplinary programme connecting structural biochemistry, biophysics, computational biology, and plant molecular science. Her documented work examines how molecular structure, catalytic mechanisms, membrane transport, and transcriptional regulation contribute to biological function and environmental adaptation in plants. The supplied academic record reports 141 documents, 6,789 citations, and an h-index of 45 for the specified Scopus author profile. [2]
Keywords
The principal keywords associated with the research record include structural biochemistry, biophysics, biotechnology, carbohydrate and protein chemistry, enzyme mechanisms, genomics and genetic engineering, transport proteins, transcription factors, protein structure, three-dimensional protein modelling, and molecular mechanisms of plant abiotic stress tolerance. Together, these terms describe a broad research framework in which computational and structural approaches are used to investigate protein function. [1]
Introduction
The supplied ORCID record identifies Maria Hrmova as Professor of Structural Biochemistry and Biophysics at the University of Adelaide, Faculty of Sciences, Engineering and Technology, Australia. It states that her laboratory investigates enzymes involved in plant development, transport proteins underlying elemental soil toxicity tolerance, and transcription factors associated with plant abiotic stress tolerance. [1]
Research Profile
Hrmova’s research profile is characterised by the investigation of molecular mechanisms that determine protein structure and function. Her documented studies include enzyme catalysis, glycoside hydrolases, plant membrane proteins, aquaporins, cation–chloride cotransporters, transcription factors, and plant responses to environmental stresses. Computational chemistry, protein modelling, structural analysis, and biochemical approaches appear across the listed works. [1]
Research Contributions
The documented research contributes to understanding catalytic efficiency, substrate recognition, protein structural plasticity, and transport mechanisms in plant systems. Studies of glycoside hydrolases examine relationships between protein structure, water networks, and enzymatic activity, while research on membrane proteins considers the molecular basis of transport and permeability. Other publications investigate transcription factors and molecular responses associated with drought, salinity, and related stresses. [3]
Publications
The ORCID record contains numerous journal articles, preprints, and research resources associated with Maria Hrmova. Recent publications include studies of glycoside exo-hydrolase catalytic efficiency, plant cation–chloride cotransporters, aquaporin membrane-protein arrangements, and the evolutionary advantage of aromatic clamps in plant enzymes. [4]
Research Impact
The supplied Scopus information reports 141 documents, 6,789 citations, and an h-index of 45 for the specified author identifier. These bibliometric measures provide quantitative indicators of publication activity and citation visibility within the Scopus record. The ORCID profile separately describes more than 220 peer-reviewed articles associated with the research group and approximately 9,000 citations, demonstrating that totals can differ between databases and between individual and group-level records. [1]
Award Suitability
The available academic record contains several measurable characteristics relevant to consideration for researcher recognition, including a substantial indexed publication record, citation activity, an h-index of 45, and research spanning structural biochemistry, computational biology, plant molecular biology, and biophysics. [1]
Conclusion
Maria Hrmova’s documented research profile demonstrates sustained activity across structural biochemistry, biophysics, computational biology, and plant molecular science. Her publications address enzymes, membrane proteins, transport mechanisms, transcription factors, protein modelling, and molecular responses to environmental stress. [5]
External Links
References
- ORCID. (2026). Maria Hrmova, ORCID record 0000-0002-3545-0605. ORCID.
https://orcid.org/0000-0002-3545-0605 - Luang, S., Fernández-Luengo, X., Streltsov, V. A., Maréchal, J.-D., Masgrau, L., & Hrmova, M. (2025). The structure and dynamics of water molecule networks underlie catalytic efficiency in a glycoside exo-hydrolase. Communications Biology.
https://doi.org/10.1038/s42003-025-08113-9 - Henderson, S. W., Nourmohammadi, S., & Hrmova, M. (2024). Protein Structural Modeling and Transport Thermodynamics Reveal That Plant Cation–Chloride Cotransporters Mediate Potassium–Chloride Symport. International Journal of Molecular Sciences.
https://doi.org/10.3390/ijms252312955 - Hrmova, M. (2024). Quaternary arrangements of membrane proteins: an aquaporin case. Biochemical Society Transactions.
https://doi.org/10.1042/BST20241630 - Hrmova, M. (2022). The evolutionary advantage of an aromatic clamp in plant family 3 glycoside exo-hydrolases. Nature Communications.
https://doi.org/10.1038/s41467-022-33180-5