Area of research
Ecology · Plant Science
Research interest
Research focused on Coral and Matrix metalloproteinase, with related work in Photosynthesis, Calcification, Stylophora pistillata. Notable publications include 'Corals concentrate dissolved inorganic carbon to facilitate calcification', 'Local auxin biosynthesis is required for root regeneration after wounding', and 'Development of High Affinity and High Specificity Inhibitors of Matrix Metalloproteinase 14 through Computational Design and Directed Evolution'.
Wounding-Induced Redirection of Sugar Transport Fuels Tissue Repair
Transient restriction of intercellular communication is required for root tip regeneration
Mobile signals, patterning, and positional information in root development
Climbing Up and Down Binding Landscapes through Deep Mutational Scanning of Three Homologous Protein–Protein Complexes
Local auxin biosynthesis is required for root regeneration after wounding
Effects of Light Pollution on the Early Life Stages of the Most Abundant Northern Red Sea Coral
Photoacclimation and induction of light-enhanced calcification in the mesophotic coral<i>Euphyllia paradivisa</i>
Plant growth regulators improve drought tolerance, reduce growth and evapotranspiration in deficit irrigated Zoysia japonica under field conditions
Converting a broad matrix metalloproteinase family inhibitor into a specific inhibitor of <scp>MMP</scp> ‐9 and <scp>MMP</scp> ‐14
A potent, proteolysis-resistant inhibitor of kallikrein-related peptidase 6 (KLK6) for cancer therapy, developed by combinatorial engineering
Development of High Affinity and High Specificity Inhibitors of Matrix Metalloproteinase 14 through Computational Design and Directed Evolution
Light Enhanced Calcification in Hermatypic Corals: New Insights from Light Spectral Responses
Long term photoacclimation responses of the coral Stylophora pistillata to reciprocal deep to shallow transplantation: photosynthesis and calcification
Euphyllia paradivisa, a successful mesophotic coral in the northern Gulf of Eilat/Aqaba, Red Sea
Corals concentrate dissolved inorganic carbon to facilitate calcification