Jennifer A. Codding-Bui, Ph.D.

Jennifer A. Codding-Bui, Ph.D. Email and Phone Number

Senior Scientist, Protein Engineering at ATUM @ ATUM
Jennifer A. Codding-Bui, Ph.D.'s Location
San Francisco Bay Area, United States, United States
Jennifer A. Codding-Bui, Ph.D.'s Contact Details

Jennifer A. Codding-Bui, Ph.D. work email

Jennifer A. Codding-Bui, Ph.D. personal email

n/a
About Jennifer A. Codding-Bui, Ph.D.

Ph.D. protein biochemist with significant experience characterizing and engineering antibodies, enzymes, and biologics. Expertise in utilizing bioanalytical techniques and biochemical and cell-based assays to produce proteins and to characterize protein-ligand interactions, enzyme and affinity kinetics, protein folding and stability, mechanism-of-action studies, structure-function relationships, protein-substrate specificity, and enzyme pathways in neurodegenerative diseases. Specialties: SPR, Octet (BLI), affinity kinetics, enzyme kinetics, protein characterization, bioanalytical techniques, biochemical & cell-based assay development, recombinant protein engineering & expression, protein purification (AKTA), protein folding, quantitation and kinetic analysis, biochemistry, cell and molecular biology, redox chemistry, neurological diseases, inhibitor characterization and development, confocal microscopy, primary neuronal cell culture, animal models, leadership, interpersonal communication, and scientific editing and writing.

Jennifer A. Codding-Bui, Ph.D.'s Current Company Details
ATUM

Atum

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Senior Scientist, Protein Engineering at ATUM
Jennifer A. Codding-Bui, Ph.D. Work Experience Details
  • Atum
    Senior Scientist, Protein Engineering
    Atum Sep 2020 - Present
    Newark, Ca, Us
     Apply ATUM’s proprietary GPS bioengineering technology combining Design of Experiment (DoE), empirical measurements requiring protein, and Machine Learning (ML) toward multiparametric optimization of therapeutic antibodies Lead internal and external protein engineering efforts as part of ATUM’s ProteinGPS team Develop high-quality, analytical assays (including quantifying binding dynamics by SPR and octet) and use ML to evaluate the impact of variables, enabling the directed engineering of new variants
  • Distributed Bio Inc
    Senior Scientist
    Distributed Bio Inc Jan 2020 - Jun 2020
    Within the kinetics screening department, I utilized the Octet HTX to screen and characterize the binding properties of thousands of high affinity developable antibodies against drug targets of interest.
  • Fortebio
    Field Applications Scientist
    Fortebio Dec 2017 - Jan 2020
    Fremont, Ca, Us
    As an FAS with ForteBio, I trained scientists in applying the best methods for biomolecular interaction studies to their research efforts. I contribute to pharmaceutical, biotech, academic, and government research by designing and running Octet BLI and SPR experiments, analyzing data, troubleshooting, and helping our clients to develop novel applications.
  • Quintara Discovery
    Independent Consultant
    Quintara Discovery 2017 - 2017
  • Circuit Therapeutics
    Research Scientist
    Circuit Therapeutics Mar 2016 - Jul 2016
    As a Scientist on the Parkinson's Disease Team, my project probed enzyme mechanisms in primary neuronal cultures by way of micro-titer plate based readout cellular assays to aid in the development of PD therapeutics. A second area of focus involved characterizing the safety of optogenetic therapeutic parameters by assessing brain tissue through immunohistochemistry and confocal microscopy.
  • Stanford University School Of Medicine
    Nrsa Postdoctoral Fellow
    Stanford University School Of Medicine Oct 2014 - Feb 2016
    Palo Alto, Ca, Us
    Advisor: Xinnan Wang, Ph.D.The goal of my NIH-sponsored research in Dr. Xinnan Wang’s laboratory at Stanford was to determine the role of mitochondria motility and distribution in stroke pathophysiology and to identify the underlying enzyme mechanisms leading from stroke-like injury to mitophagy toward biomarker identification. This project allowed me to establish a primary neuronal cell culture model, to image mitochondrial transport and distribution in primary hippocampal neurons, and to identify mechanistic changes upon stroke-like injury by western blot analysis and cell-based assays.
  • Columbia University
    Postdoctoral Research Scientist
    Columbia University May 2013 - Sep 2014
    New York, Ny, Us
    Advisor: Carol Troy, M.D., Ph.D.My F32 sponsored postdoctoral research at Columbia University examined the edema-specific downstream substrates of caspase-9, an early mediator of ischemic stroke. In addition to utilizing in vitro and cell culture techniques to characterize this pathway, I studied the effects of knocking out or inhibiting caspase-9 and MMP9 in stroked animals to determine the cell-specific contributions of caspase-9 activation during stroke in endothelial cells and in neurons. While I learned much from being the team lead on this project, I chose to transfer to Stanford when my husband received a position in R&D in the Bay Area.
  • University Of Delaware
    Doctoral Research Assistant
    University Of Delaware Sep 2006 - Jan 2013
    Newark, De, Us
    Advisor: Colin Thorpe, Ph.D.During graduate school, I led and completed a project exploring the substrate tolerances of the endoplasmic reticulum flavoprotein Quiescin Sulfhydryl Oxidase (QSOX), which incorporates disulfide bonds into proteins via the transfer of electrons to molecular oxygen. The precise role of the QSOX family is currently under debate, and this timely in vitro study advanced our understanding of QSOX’s potential capabilities inside of the cell. A second body of work primarily utilized redox trapping assays to probe the redox equilibria between the chaperone Protein Disulfide Isomerase and QSOX, and their respective substrates. Both projects allowed me to gain expertise in several molecular biology and biochemical techniques, including the expression and purification of recombinant wild type and mutant enzymes; biochemical activity assays; and redox chemistry techniques.
  • University Of Delaware
    Chemistry And Biology Interface (Cbi) Rotation Student
    University Of Delaware Aug 2006 - Feb 2007
    Newark, De, Us
    Advisor: John Koh, Ph.D.Biosynthetic incorporation of unnatural amino acids to allow chemistry to function independent of functional groups found in proteinsAdvisor: Roberta Coleman, Ph.D.Characterization of intersubunit complementation between two mutants of human adenylosuccinate lyase to increase comprehension of adenylosuccinate lyase deficiencyAdvisor: Thomas Beebe, Ph.D.Optimization of directional control of axonal outgrowth as a function of substrate to control axon regrowth in the nervous system
  • Oak Ridge National Lab
    Intern
    Oak Ridge National Lab Aug 2005 - Dec 2005
    Oak Ridge, Tn, Us
    Mentor: Wei Wang, Ph.D.During the fall semester of my senior year I was an intern at Oak Ridge National Laboratory in the Environmental Science Division working under the direction of Dr. Wei Wang. Continual questions from interested post-docs and research scientists challenged me to understand the drug delivery and environmental applications of optimizing the synthesis and characterization of tin oxide nanoparticles. This experience reinforced my decision to pursue a career in science.
  • Mcmurry University
    Undergraduate Research Assistant
    Mcmurry University May 2004 - Aug 2005
    Abilene, Tx, Us
    Advisor: Professor Arlen JefferyI conducted organic research with Dr. Arlen Jeffery on the synthesis and kinetic characterization of novel carbohydrates to inhibit the replication of the enzyme human immunodeficiency virus reverse transcriptase. Working directly with my advisor for two summers as an undergraduate taught valuable lessons, and I wrote my honors thesis on this research.

Jennifer A. Codding-Bui, Ph.D. Skills

Chemistry Uv/vis Western Blotting Biochemistry Mass Spectrometry Fplc Protein Chemistry Fluorescence Spectroscopy Molecular Biology Cell Culture Protein Expression Enzyme Kinetics Gel Electrophoresis Pcr Enzyme Assays Leadership Protein Purification Research Ethics Enzymology Life Sciences Subcloning Confocal Microscopy Mentoring Strong Communication Skills Cell Biology Neurology In Vitro Redox Chemistry Oxidative Protein Folding Redox Trapping Experiments Stopped Flow Spectroscopy Fluorescence Microscopy Primary Neuronal Cell Culture Immunohistochemistry Immunocytochemistry Assay Development Hplc Sds Page Oxygen Electrode Circular Dichroism Fluorchem Q Imaging System Molecular Cloning Synthetic Gene Design Polarstar Omega Multifunction Microplate Reader Macpymol Writing And Editing Facilitation Curriculum And Program Development Octet Surface Plasmon Resonance

Jennifer A. Codding-Bui, Ph.D. Education Details

  • University Of Delaware
    University Of Delaware
    Chemistry And Biochemistry
  • Mcmurry University
    Mcmurry University
    Biochemistry; Religion
  • Artesia High School
    Artesia High School
    Chemistry

Frequently Asked Questions about Jennifer A. Codding-Bui, Ph.D.

What company does Jennifer A. Codding-Bui, Ph.D. work for?

Jennifer A. Codding-Bui, Ph.D. works for Atum

What is Jennifer A. Codding-Bui, Ph.D.'s role at the current company?

Jennifer A. Codding-Bui, Ph.D.'s current role is Senior Scientist, Protein Engineering at ATUM.

What is Jennifer A. Codding-Bui, Ph.D.'s email address?

Jennifer A. Codding-Bui, Ph.D.'s email address is je****@****bio.com

What schools did Jennifer A. Codding-Bui, Ph.D. attend?

Jennifer A. Codding-Bui, Ph.D. attended University Of Delaware, Mcmurry University, Artesia High School.

What are some of Jennifer A. Codding-Bui, Ph.D.'s interests?

Jennifer A. Codding-Bui, Ph.D. has interest in Large Molecules, Protein Analytics, Aggregation, Immuno Oncology, Molecular Pharmacology, Health, Children, Protein Therapeutics, Education, Science And Technology.

What skills is Jennifer A. Codding-Bui, Ph.D. known for?

Jennifer A. Codding-Bui, Ph.D. has skills like Chemistry, Uv/vis, Western Blotting, Biochemistry, Mass Spectrometry, Fplc, Protein Chemistry, Fluorescence Spectroscopy, Molecular Biology, Cell Culture, Protein Expression, Enzyme Kinetics.

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