Hao Li · Biochemistry
Dr. Hao Li's lab at the University of California, San Francisco focuses on understanding and combating the effects of aging through innovative approaches. By utilizing artificial intelligence, the lab aims to identify biomarkers of healthy aging and develop methods for rejuvenating human tissues. Their research includes studying the biological aspects of aging and exploring how certain transcription factors can potentially reverse cellular aging.
Jeremy F Reiter · Biochemistry
Dr. Jeremy F. Reiter's lab at UCSF studies the role of centrioles—structures essential for various cellular functions—in mammalian development. Their research focuses on understanding how defects in centrioles can lead to congenital diseases, particularly affecting the heart, lungs, and inner ear. By examining how different parts of centrioles contribute to cellular functions, the lab aims to uncover critical insights into developmental processes and disease mechanisms.
Hiten D Madhani · Biochemistry
Dr. Hiten D Madhani's lab focuses on understanding the genetic factors that influence the behaviour and evolution of the fungal pathogen Cryptococcus neoformans, the leading cause of fungal meningitis. They explore how different genetic backgrounds affect the pathogen's ability to infect hosts and respond to treatments. By generating genomic resources and employing cutting-edge techniques like CRISPR, the lab aims to provide critical insights that could help develop new therapies for treating invasive fungal infections.
Peter James Turnbaugh · Biochemistry
Dr. Peter Turnbaugh's lab focuses on understanding how the gut microbiome influences the metabolism of cancer drugs, particularly fluoropyrimidines used in colorectal cancer treatment. By examining the interactions between gut bacteria and these drugs, the research aims to reveal why there are differences in drug effectiveness and side effects among patients. This work could lead to better treatment strategies that take into account individual differences in gut microbiota.
James M Holton · Biochemistry
James Holton's lab focuses on structural biology, particularly understanding how the structures of macromolecules relate to their functions. They develop new methods and tools for accurate molecular modeling and data collection to bridge the gap between predicted and real structures of biological molecules. By improving the resolution and accuracy of imaging techniques, the lab aims to unlock deeper insights into essential biological processes and drug design.
Graeme W Davis · Biochemistry
Dr. Graeme W. Davis's lab at UCSF studies homeostatic plasticity, which helps neurons stabilize their function in response to changes. Their research focuses on the mechanisms linking this plasticity to neurodevelopmental disorders, mental health, and age-related declines in neuromuscular function. By investigating these connections, the lab aims to explore new therapeutic strategies for conditions like Jordan's Syndrome and other neurodegenerative diseases.
Geeta J Narlikar · Biochemistry
Dr. Geeta J Narlikar's lab at UCSF focuses on understanding how chromatin, the material that makes up our DNA, is regulated in cells. They study both active and repressed states of chromatin, which are crucial for maintaining cellular identity and function. By investigating the mechanisms of chromatin remodeling and phase separation, the lab aims to discover how these processes relate to development and diseases, particularly cancer.
Wallace Marshall · Biochemistry
Dr. Wallace Marshall's lab at UCSF focuses on understanding how cells determine their shapes and structures, which are crucial for their functions. By studying model organisms and employing techniques from both biology and engineering, they investigate how cells sense and respond to changes in their geometry. Their research has important implications for understanding diseases where cell structure is altered, such as cancer.