To better understand human diseases, much recent work has focused on proteins to either identify disease targets through proteomics or produce therapeutics via protein engineering. Noncanonical amino acids (ncAAs) are tools for altering the chemical and physical properties of proteins, providing a facile strategy not only to label proteins but also to engineer proteins with novel properties. My thesis research has focused on the development and applications of noncanonical amino acids in identifying, imaging, and engineering proteins for studying human diseases. Chapter 1 introduces the concept of ncAAs and reveals insights to how I chose my thesis projects. ncAAs have been incorporated to tag and enrich newly synthesized proteins for ma...
Proteins are inherently limited by the properties of their constituent amino acids and attempt to o...
Unnatural amino acids (UAAs) permit the incorporation of novel biochemical functionalities into prot...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Proteins mediate many essential functions in cells, and methods to profile cellular proteins are of ...
Directly incorporating noncanonical amino acids (NCAAs) into proteins in living cells is an indispen...
Enzymes are powerful tools that are capable of catalyzing reactions with high specificity and effici...
Thesis advisor: Eranthie WeerapanaThesis advisor: Jianmin GaoProteins are composed of the 20 natural...
Proteins are diverse biopolymers constructed from 20 canonical amino acids, affording innumerable am...
Proteins in living cells can be made receptive to bioorthogonal chemistries through metabolic labeli...
Engineering of protein with new modifications essentially expands the protein functions which provid...
Cellular protein synthesis changes rapidly in response to internal and external cues in ways that va...
Amino acid homeostasis is maintained by a combination of transmembrane transport processes, metaboli...
Thesis advisor: Abhishek ChatterjeeNoncanonical amino acid (ncAA) mutagenesis provides powerful new ...
abstract: ABSTRACT Post Translational Modifications (PTMs) are a series of chemical modificati...
Evolution created the complex and versatile protein landscape that underpins cellular function, thro...
Proteins are inherently limited by the properties of their constituent amino acids and attempt to o...
Unnatural amino acids (UAAs) permit the incorporation of novel biochemical functionalities into prot...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...
Proteins mediate many essential functions in cells, and methods to profile cellular proteins are of ...
Directly incorporating noncanonical amino acids (NCAAs) into proteins in living cells is an indispen...
Enzymes are powerful tools that are capable of catalyzing reactions with high specificity and effici...
Thesis advisor: Eranthie WeerapanaThesis advisor: Jianmin GaoProteins are composed of the 20 natural...
Proteins are diverse biopolymers constructed from 20 canonical amino acids, affording innumerable am...
Proteins in living cells can be made receptive to bioorthogonal chemistries through metabolic labeli...
Engineering of protein with new modifications essentially expands the protein functions which provid...
Cellular protein synthesis changes rapidly in response to internal and external cues in ways that va...
Amino acid homeostasis is maintained by a combination of transmembrane transport processes, metaboli...
Thesis advisor: Abhishek ChatterjeeNoncanonical amino acid (ncAA) mutagenesis provides powerful new ...
abstract: ABSTRACT Post Translational Modifications (PTMs) are a series of chemical modificati...
Evolution created the complex and versatile protein landscape that underpins cellular function, thro...
Proteins are inherently limited by the properties of their constituent amino acids and attempt to o...
Unnatural amino acids (UAAs) permit the incorporation of novel biochemical functionalities into prot...
Expanding the genetic code of organisms by incorporating non‐canonical amino acids (ncAAs) into targ...