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on the molecular architecture and function of the intraflagellar transport (IFT) machinery, building directly on our recent high-resolution cryo-EM structures of the human IFT-A complex published in Cell Research
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hijacked in epilepsy and other neurological diseases. To study these mechanisms, they use a combination of in vivo mouse models as well as ex vivo human tissue culture paired with electrophysiology
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to understand how the environment drive pathogenic T cells. The goal is to develop novel therapies for systemic lupus erythematosus and other autoimmune diseases and deliver them in first-in-human studies at UTSW
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Center for Advancement of Blood Cancer Therapies (CABCT) (https://icahn.mssm.edu/research/cabct ). The successful candidate will work on projects involving human induced pluripotent stem cells (iPSCs) and
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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. Our mechanism-driven translational studies have led to first-in-human clinical trial in patients with breast cancer. The highly supportive and interdisciplinary training environment in the Chen lab
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development, and has a record of facilitating career advancement for postdocs. At St. Jude, we know what can be achieved when the brightest scientific minds face the fewest barriers. That's why we provide world
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mission is directly tied to the humanity, dignity and inherent value of each employee, patient, community member and supporter. Our commitment to learning across our differences and similarities make us
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STATISTICS: Pursuant to the Jeanne Clery Disclosure of Campus Security Policy and Campus Crime Statistics Act and the Pennsylvania Act of 1988, Penn State publishes a combined Annual Security and Annual Fire
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a leading role in shaping the lab's computational strategy, contributing to high-impact publications and external grant applications, and, ideally, act as the computational lead of the lab. VBC-wide