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investigate localized mRNA processes—such as selective translation, transport, phase separation, and localization—that enable cells to respond to mechanical stimuli. This project will explore RNA-based
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, cellular biology and signaling, and mouse models of disease, enhancing our understanding of how the allosteric site influences physiology and disease mechanisms. We plan to utilize drug discovery to identify
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— such as selective translation, transport, phase separation, and localization—that enable cells to respond to mechanical stimuli. This project will explore RNA-based regulatory mechanisms in
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- based intervention services to individuals at CHR-P, and receive clinical supervision This an excellent opportunity for those interested in a career that combines clinical research and program development
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in immunology and / or cancer biology research and the development of new cancer therapies. Experience with in vivo immunotherapy models, mRNA therapeutics, functional genomics and the use of CRISPR
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. This position is based at Yale, where we are located at in the Center of Molecular and Cellular Oncology (CMCO), Yale Cancer Center, and part of the Department of Pathology, Yale School of Medicine. CMCO fosters
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assays. They conduct laboratory and field- based studies in low- and high-income settings globally and have experience in phase 1 to phase 3 clinical trials for vaccines against different pathogens such as
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, artificial neural network models, evaluation of individualized predictions or estimates for individuals with diverse backgrounds, and promotion of health equity using AI models. The Postdoctoral Associate will
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mechanisms in RNA-guided processes, and to develop novel genome editing applications based on the mechanistic understanding. Research details can be found in our laboratory and departmental web sites
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conduct comprehensive research on the risks and potential therapeutic applications of cannabis and cannabinoids, and to inform public policy based on our findings. At YC-SCAN², we focus on thorough