Dr. Hankore also completed postdoctoral research in pure product biosynthesis and protein engineering at the University of Kentucky’s College of Pharmacy. Currently, Dr. Hankore studies sophieraiin erome kinases using a proteomics strategy, using ATP analogs developed by the Pflum lab to elucidate kinase-substrate interactions in cells.
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NCSA College Recruiting® (NCSA) is the nation’s main collegiate recruiting supply for more than 500,000 student-athletes and 42,000 college coaches. By profiting from this intensive community, more than ninety two percent of NCSA verified athletes play on the college degree. The network is available to high school student-athletes across the nation through valued relationships with the NFLPA, FBU, NFCA and SPIRE. Dr. Hankore’s unbiased lab will focus on leveraging her experience in chemical biology, molecular biology, biochemistry, biocatalysis, green chemistry, and protein engineering to explore progressive solutions for biotechnology and drug discovery. Her analysis aims to develop novel biocatalysts and sustainable approaches for the synthesis of pharmaceuticals and value-added industrial compounds. She earned her Ph.D. in chemistry from the University of Nebraska-Lincoln, the place she specialised in chemical biology and biocatalysis. Her analysis focused on genetic code expansion, the event of biocatalysts for biofuel production, and kinase dynamics for drug discovery.
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- Dr. Hankore also accomplished postdoctoral analysis in natural product biosynthesis and protein engineering on the University of Kentucky’s College of Pharmacy.
- Dr. Hankore’s unbiased lab will give attention to leveraging her experience in chemical biology, molecular biology, biochemistry, biocatalysis, green chemistry, and protein engineering to explore revolutionary options for biotechnology and drug discovery.
- Currently, Dr. Hankore research kinases utilizing a proteomics approach, utilizing ATP analogs developed by the Pflum lab to elucidate kinase-substrate interactions in cells.
- Her analysis goals to develop novel biocatalysts and sustainable approaches for the synthesis of prescription drugs and value-added industrial compounds.
- Her analysis focused on genetic code expansion, the development of biocatalysts for biofuel manufacturing, and kinase dynamics for drug discovery.
- The community is available to highschool student-athletes across the country via valued relationships with the NFLPA, FBU, NFCA and SPIRE.
- She earned her Ph.D. in chemistry from the University of Nebraska-Lincoln, the place she specialised in chemical biology and biocatalysis.