Show notes
Our guest today is Dr. Elaine Choung-Hee Lee, an assistant professor in the Department of Kinesiology at the University of Connecticut. Much of Elaine’s research focuses on understanding the mechanisms of resilience and investigating ways to help humans improve their stress resistance, adaptation and healthspan.Elaine’s research is focused not only on understanding fundamental biology, but also on what can be done to manipulate our biology to optimize health and performance as well as preventing disease.At her UConn research center, called the EC Lee Laboratory, she and her colleagues use genomic and other technologies to ask questions about what makes high-performing athletes and warfighters so elite.In today’s interview, you’ll hear how an early passion for Marvel comics and superheroes helped nudge Elaine into a science career. You’ll also learn about some of her lab’s projects that range from improving warfighter resilience to studying the effects of exercise and supplementation on our immune functions.Show notes:[[[[[[[[[[[[[00:23:59] Dawn mentions that during Elaine’s post-doc, she and Dr. Kevin Strange co-authored a paper in the journal of Federation of American Societies for Experimental Biology, titled “Osmosensitive gene expression in C elegans is regulated by conserved signaling mechanisms that control protein translation initiation.” Dawn goes on to mention that this paper was selected in 2012 by the Cellular and Molecular Physiology Section of the American Physiological Society as one of six finalists for its annual research recognition award. Dawn asks why this paper attracted such attention.[[[[[[00:43:33] Dawn asks about a study that looked at intracellular and surface heat shock protein 70 expression, as well as early apoptosis and heat tolerance of lymphocytes during 11 days of whole-body heat acclimation.[00:48:15] Dawn asks about a paper that Elaine and Ken Strange wrote in 2012 in the American Journal of Physiology-Cell Physiology which that demonstrated for the first time that inhibition of protein translation protects extant proteins from damage brought about by an environmental stressor, and further asks how this paper challenged some widely held views about chemical chaperones.[00:50:16] Ken asks about a paper Elaine worked on with Jeff Volek and Stephen Phinney, that looked at the metabolic characteristics of keto-adapted ultra-endurance runners.[[[[[[[[[[[[[Links:Elaine Lee LabElaine Choung-Hee Lee bioLearn more about IHMCSTEM-Talk homepageKen Ford bioKen Ford Wikipedia pageDawn Kernagis bio



