35 evolution "https:" "https:" "https:" "https:" "https:" "https:" research jobs at Nature Careers in United States
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Anderson Cancer Center. Dr. Wang's laboratory conducts cutting-edge research to understand the evolution of cancer transcriptomes through DNA-RNA dynamics, aiming to uncover mechanisms of cancer initiation
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Molecular Mechanisms and Translational Cancer Research A postdoctoral fellow position is available in the Brugarolas lab (https://brugarolaslab.com/research-summary/ ) Research in the lab spans
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. Available research opportunities include development of microfabrication processes and novel devices, advancing transduction principles and their fundamental limits, and development of precision sensing and
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of Health (NIH) and the Department of Health and Human Services (DHHS). Within this program, the Section on Synapse Development Plasticity (Chief: Zheng Li, PhD, https://www.nimh.nih.gov/research/research
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the Shaul/Mineo lab receive strong support from both of the PI’s, who are committed to their professional development in preparation for academic, industrial, or entrepreneurial careers in cardiovascular
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development of blood and prostate cancers. Our research bridges basic, translational, and clinical studies to uncover mechanisms linking inflammation, DNA damage, and stem cell aging to cancer initiation and
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in education, patient care, community service, research and technology development, and through leadership activities in Michigan, nationally and internationally. Our mission is guided by our
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Postdoctoral position to study Polo kinase and centrosome abnormalities in cancer and other diseases
the centrosomal architecture and function, the deregulation of which can lead to the development of various human diseases, including cancers, microcephaly, and AIDS. For additional information, please visit https
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the mission to examine the contribution of somatic mosaicism in healthy human brain development and in neurologic diseases and collaborates with the Huang lab for the analysis of their high throughput genetic
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the molecular mechanisms of bacterial virulence factors and translating these discoveries into macromolecular drug development—specifically focusing on antibodies, vaccines, and innovative medical cosmetics