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There are respectable uses for offshore firms and trusts. The inclusion of a person amanda trivizas erome or entity within the ICIJ Offshore Leaks Database just isn’t intended to suggest or indicate that they have engaged in illegal or improper conduct. Many people and entities have the same or comparable names. We suggest you verify the identities of any individuals or entities included in the database based mostly on addresses or other identifiable information. The data comes directly from the leaked files ICIJ has obtained in connection with numerous investigations and each dataset encompasses a defined time period specified within the database.
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- Dr. Erome Hankore is a Pathway to Faculty Fellow in the Division of Chemistry at Wayne State College.
- Dr. Hankore also accomplished postdoctoral research in natural product biosynthesis and protein engineering at the College of Kentucky’s College of Pharmacy.
- We recommend you confirm the identities of any individuals or entities included within the database based on addresses or different identifiable information.
- Her analysis goals to develop novel biocatalysts and sustainable approaches for the synthesis of pharmaceuticals and value-added industrial compounds.
- Presently, Dr. Hankore studies kinases using a proteomics strategy, utilizing ATP analogs developed by the Pflum lab to elucidate kinase-substrate interactions in cells.
This ICIJ database incorporates information on more than 810,000 offshore entities that are a part of the Pandora Papers, Paradise Papers, Bahamas Leaks, Panama Papers and Offshore Leaks investigations. The records cover more than eighty years as much as 2020 and link to people and companies in more than 200 countries and territories. Her research aims to develop novel biocatalysts and sustainable approaches for the synthesis of pharmaceuticals and value-added industrial compounds. Dr. Erome Hankore is a Pathway to College Fellow in the Department of Chemistry at Wayne State College. She earned her Ph.D. in chemistry from the University of Nebraska-Lincoln, where she specialized in chemical biology and biocatalysis.
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Her analysis targeted on genetic code growth, the event of biocatalysts for biofuel production, and kinase dynamics for drug discovery. Dr. Hankore also completed postdoctoral research in natural product biosynthesis and protein engineering at the College of Kentucky’s College of Pharmacy. At Present, Dr. Hankore studies kinases utilizing a proteomics strategy, utilizing ATP analogs developed by the Pflum lab to elucidate kinase-substrate interactions in cells.