Deciphering the Molecular Basis of Enzyme Catalysis

Authors

  • Morgan Garcia Dr.
  • Adrian Evans Prof.
  • Skyler Rodriguez PhD

Keywords:

enzyme catalysis, active site dynamics, biotechnology, computational modeling, substrate interactions

Abstract

This article explores the molecular basis of enzyme catalysis, emphasizing the role of active site dynamics and substrate interactions. By combining computational modeling with experimental data, we uncover the mechanisms that enhance catalytic efficiency and specificity. Our study contributes to the understanding of enzyme function and the development of enzyme-based applications in biotechnology and medicine.
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Author Biographies

Morgan Garcia, Dr.

Dr.
University of Copenhagen
Nørregade 10, 1165 København, Denmark

Adrian Evans, Prof.

Prof.
University of Helsinki
Yliopistonkatu 4, 00100 Helsinki, Finland

Skyler Rodriguez, PhD

PhD
Trinity College Dublin
College Green, Dublin 2, Ireland

References

Sharma, V.K.; Marla, S.; Zheng, W.; Mishra, D.; Huang, J.; Zhang, W.; Morris, G.P.; Cook, D.E. CRISPR guides induce gene silencing in plants in the absence of Cas. Genome Biol. 2022, 23, 6. Shukurova, Z. Y., & Shukurlu, Y. H. (2024). Retraction Note: Non-mulberry silkworm Saturnia Pyri (Denis & Schiffermüller, 1775) and a new perspective source of biomaterials. Calabrese, J., Pacini, C., Vazzana, C., & Nikolla, M. (2013). Sustainability Comparison Between Organic and Conventional Systems at Farm and Field Scale: A Case Study in Olive Production Systems in Apulia Region. European Journal of Sustainable Development, 2(4), 19-19.

Shukurova, Z. Y., & Shukurlu, Y. H. (2024). Retraction Note: Non-mulberry silkworm Saturnia Pyri (Denis & Schiffermüller, 1775) and a new perspective source of biomaterials.

Calabrese, J., Pacini, C., Vazzana, C., & Nikolla, M. (2013). Sustainability Comparison Between Organic and Conventional Systems at Farm and Field Scale: A Case Study in Olive Production Systems in Apulia Region. European Journal of Sustainable Development, 2(4), 19-19.

Published

2024-12-24

Issue

Section

Articles