Brandon D'Arcy

Brandon D'Arcy

Principal Scientist, Structural Biology @ Kimia Therapeutics

About

Experience executing and managing multiple projects in the following areas: •Ten years of experience in biochemistry and molecular biology •Five years of experience in structural biology crystallizing protein-inhibitor/ligand complexes •Advanced training in X-ray crystallography and Small Angle X-ray Scattering •Expertise in genome engineering using Cas9-based methods and lentiviral transduction for generating stable cell lines harboring genetic disruptions and modified genes. •Author of eight publications in peer-reviewed journals including five first-author papers and one patent.

Country

-

City

United States

Industry

Pharmaceuticals

Skill

X-ray crystallography, Protein Crystallization, Protein Purification, Data Processing, Molecular Cloning, Protein Expression, Assay Development, Chromatography, High-Performance Liquid Chromatography (HPLC), Liquid Chromatography-Mass Spectrometry (LC-MS), Recombinant Protein Expression, Insect Cell Culture, Coot (Software), Polymerase Chain Reaction (PCR), SDS-PAGE, Western Blotting, Flow Cytometry, Reverse Transcription Polymerase Chain Reaction (RT-PCR), Immunohistochemistry, Confocal Microscopy

Experience

Kimia Therapeutics

Principal Scientist, Structural Biology

Kimia Therapeutics

LinkedIn
2023-6 - Present · 3 yrs 4 mos

Berkeley, California, United States

Loxo@Lilly

Senior Scientist

Loxo@Lilly

LinkedIn
2021-10 - 2023-6 · 1 yr 9 mos

South San Francisco, California, United States

University of South Alabama

Postdoctoral Researcher

University of South Alabama

LinkedIn
2016-12 - 2021-9 · 4 yrs 10 mos

Mobile, Alabama, United States

• Demonstrated LB-100, a small molecule protein phosphatase inhibitor, targets both PPP2AC and PPP5C using X-ray crystallography, dose response assays, and cell-based studies • Contributed to the development of pro-drugs for the specific inhibition of serine/threonine protein phosphatase using X-ray crystallography and structure-aided drug design • Characterized the structural and functional effects of clinically relevant missense mutations in the PMS2 gene using biochemical assays, Small Angle X-ray Scattering, and X-ray crystallography

Education

University of South Alabama

University of South Alabama

LinkedIn

Department of Biochemistry and Molecular Biology

2012 - 2016 · 4 yrs

Developed methods to enable cholesterol ring degradation in human cells, which are now licensed to and being further developed by Repair Biotechnologies

Brandon D'Arcy's Contact Information

Email

******@***.com

Phone

(**) *** ****

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