Department of Biochemistry & Molecular Biology
Home to many internationally recognized researchers, the Department of Biochemistry & Molecular Biology is focused on subjects of great interest to the general public. Researchers in the Department study many important diseases including cancer, diabetes, blindness, heart disease and inflammation. Together with others in the Departments who focus on drug research, they are working both understand these issues and develop treatments and cures. Other major aspects of the Department’s research focus on developing new antibiotics: this is an urgent priority since resistance to existing drugs is so prevalent around the world. Several members of the Department are working to understand how the function of genes is controlled. The excellence of our research is amply demonstrated by the fact that several members of the Department have been recognized by major research prizes.
Graduate Degree Programs
Research Supervisors
| Name | Research Interests |
|---|---|
| Chen, Carol | Brain Cancer; Brain development; Epigenetics; Neurodevelopmental disorders; Developmental biology; Brain Cancer, Brain Development, Epigenetics, Neurodevelopmental Disorders, Developmental Biology |
| Ciernia, Annie | Autism; Brain development; Epigenetics; Gene-Environment Interactions; Neurodevelopmental disorders; Autism, Brain development, Epigenetics, Gene-Environment Interactions, Neurodevelopmental disorders |
| Dedhar, Shoukat | molecular biology, molecular biology as it relates to disease; developing new theraputics for cancer; how brain cells (neurons)make connections, therapeutics for cancer; molecular genetics and cancer; medical research, cancer, inflammatory diseases, cariovascular diseases, Cellular proteins, extracellular martrix, integrins, signal transduction, calreticulin, protein kinase, gene expression, cell differentiation |
| Duong, Franck | Membrane protein, nanodiscs, ligand-receptor interactions, cell membranes, lipids, soluble proteins, porin, iron intake |
| Finlay, B Brett | Infectious agents, bacteria, microbial infections and how humans react to it |
| Foster, Leonard | Agriculture; antigen presentation; Bioinformatics; Biological and Biochemical Mechanisms; Biotechnology; Cell Signaling and Infectious and Immune Diseases; Honey bees; host-pathogen interactions; Immune System; Microbiology; Proteomics; Systems Biology; Agriculture, Antigen presentation, Bioinformatics, Biological and Biochemical Mechanisms, Biotechnology, Cell Signaling and Infectious and Immune Diseases, Honey bees, Host-pathogen interactions, Immune System, Microbiology, Proteomics, Systems biology |
| Greenblatt, Ethan | |
| Gsponer, Joerg | Protein-DNA, protein-RNA and protein-protein interactions |
| Jan, Eric | Virus; Nucleic Acids; Proteomics; Antiviral innate immunity; Zika; coxsackievirus; enterovirus; Innate immunity; molecular biology; picornavirus; protease; Protein synthesis; RNA; RNA structure function; RNA virus; ribosome; SARS; tRNA; translation; Virology; Virus; virus host interactions; mRNA therapeutics; Virus, Nucleic Acids, Proteomics, Antiviral innate immunity, Zika, Coxsackievirus, Enterovirus, Innate immunity, Molecular biology, Picornavirus, Protease, Protein synthesis, RNA, RNA structure function, RNA virus, Ribosome, SARS, TRNA, Translation, Virology, Virus, Virus host interactions, mRNA therapeutics |
| Lim, Emilia | Bioinformatics; Cancer; Aging; genomics; Transcriptomics; Epigenomics; Pollution Exposure; Bioinformatics, Cancer, Aging, Genomics, Transcriptomics, Epigenomics, Pollution Exposure |
| Mayor, Thibault | Aging; Cell Biology; Neurodegenerative diseases; Proteasome; Protein Degradation; Protein Folding; Proteomics; Proteostasis; Ubiquitin; Yeast Genetics; Aging, Cell Biology, Neurodegenerative diseases, Proteasome, Protein Degradation, Protein Folding, Proteomics, Proteostasis, Ubiquitin, Yeast Genetics |
| Molday, Robert | Proteins, cell structure, lipids, drug discovery, gene therapy |
| Mui, Alice | Inflammatory Signalling Pathways |
| Parker, Seth | Metabolomics; mass spectrometry; Childhood disease; Cancer; Solute carriers; Metabolism; Mitochondria; Stable-isotope tracing; Functional assay development; Metabolomics, Mass spectrometry, Childhood disease, Cancer, Solute carriers, Metabolism, Mitochondria, Stable-isotope tracing, Functional assay development |
| Sadowski, Ivan | Gene regulation contributing to cancer and HIV, and yeast, regulation of HIV-I latency and replication in T cells |
| Schindler, Corinna | Developing innovative strategies for synthesis and catalysis |
| Stephenson, Corey | Photoredox Methodology, Complex Molecule Synthesis, Biomass Degradation |
| Strynadka, Natalie | Blood Research, structure-based design of inhibitors, antibiotic-resistance mechanisms, macromolecular assemblies, bacterial viability pathogenesis |
| Subramaniam, Sriram | Structural Biology; cryo-electron microscopy; drug discovery; Cryo-electron tomography; Antibody design; drug discovery; Protein therapeutics; COVID-19 therapeutic design; Infectious disease; Artificial Intelligence; Machine Learning ; Structural biology, Cryo-electron microscopy, Drug discovery, Cryo-electron tomography, Antibody design, Drug discovery, Protein therapeutics, COVID-19 therapeutic design, Infectious disease, Artificial Intelligence, Machine Learning |
| Teves, Sheila | Epigenetics; Genetics; Genome Science; Molecular Epigenetics (MEG); molecular biology; Transcriptional memory and cellular identity in mouse embryonic stem cells; Epigenetics, Genetics, Genome Science, Molecular Epigenetics (MEG), Molecular biology, Transcriptional memory and cellular identity in mouse embryonic stem cells |
| Tokuriki, Nobuhiko | Experimental evolution of proteins and molecular networks. |
| Van Petegem, Filip | Biological and Biochemical Mechanisms; Genetic Diseases; Calcium signaling; Cardiac arrhythmia; electrical signaling; electrophysiology; Epilepsy; Ion channels; Structural Biology; Biological and Biochemical Mechanisms, Genetic Diseases, Calcium signaling, Cardiac arrhythmia, Electrical signaling, Electrophysiology, Epilepsy, Ion channels, Structural Biology |
| Yip, Calvin | Gene Regulation and Expression; Genetic Diseases; Enzymes and Proteins; Biological and Biochemical Mechanisms; Molecular Structure and Sizing; Imaging; Chromatin modification / epigenetic regulation; Molecular etiologies of rare diseases; Regulation of autophagy degradation; Gene Regulation and Expression, Genetic Diseases, Enzymes and Proteins, Biological and Biochemical Mechanisms, Molecular Structure and Sizing, Imaging, Chromatin modification / epigenetic regulation, Molecular etiologies of rare diseases, Regulation of autophagy degradation |