Postdoctoral Researchers |
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|---|---|
| Name | Project |
Bacterial display systems to increase the efficacy of therapeutic antibodies by optimizing effector function, antigen binding, and specificity |
|
Enzyme evolution |
|
Engineering and evolution of intrinsically disordered proteins |
|
| Xin Ge | |
| Sai Reddy | Engineering protein therapeutics for the modulation of innate immune responses |
| Silvia Arredondo | Structure, Function and Engineering of Bacterial Disulfide Isomerases for the Enhanced Expression of Heterologous Proteins with Therapeutic Applications |
| Sang Taek Jung | Antibody Fc Engineering Using Bacterial Display System |
| Teresa N. Giles | Protease Engineering |
| Seung Hyun Kang | Engineering of therapeutic antibodies for immune mediated diseases |
| Jason Lavinder | |
| Visiting Scientist | |
| Tomohiro Makino | Mass producation of IgG in E.coli |
| Graduate Student Researchers | |
Directed evolution towards the de-immunization of therapeutic proteins and directed evolution and display of novel protease inhibitor fusion proteins |
|
| Antibody Engineering | |
| Studying the redox pathways in E. coli | |
Emulsion droplets for high-throughput enzyme and antibody screening |
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Antibody Fc Engineering Using Bacterial Display System |
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Cell-free transcription, translation, and the folding of OmpT to generate an active enzyme |
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Protease Engineering |
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Protease Engineering |
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Engineering high affinity antibodies against Infectious pathogens |
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Using glutathione as a platform for understanding and engineering of redox homeostasis in Escherichia coli |
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The RNase E inhibitors RraA and RraB |
|
| Olga Paley | Enzyme Engineering |
| William Kelton | Engineering of proteolytic resistant IgG antibodies |
| Undergraduate Assistants | |
| Anna Venardos | Biology Major; working with Marsha Demers-Lewis |
| Lynne Chantranupong | Protein engineering of (1) human Arginase I for use as a chemotherapeutic agent (2) a novel human L-asparaginase GLIAP |
| Lab Assistant | |
| Candice Gonzales | Human Arginase I and Human Arginase II |


