Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation

The study of protein structure and function is a central topic of bioscience research. As the most important molecules of life, proteins often undergo post-translational modifications (PTM) in order to carry out their biological functions. A good example is the histone proteins whose PTMs include ac...

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Main Author: Li, Fupeng
Other Authors: Liu Chuan Fa
Format: Theses and Dissertations
Language:English
Published: 2012
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Online Access:https://hdl.handle.net/10356/48371
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-483712023-02-28T18:33:53Z Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation Li, Fupeng Liu Chuan Fa School of Biological Sciences DRNTU::Science::Biological sciences::Biochemistry The study of protein structure and function is a central topic of bioscience research. As the most important molecules of life, proteins often undergo post-translational modifications (PTM) in order to carry out their biological functions. A good example is the histone proteins whose PTMs include acetylation, methylation and ubiquitination on specific amino acid side chains. The understanding of how a protein exerts its function in either its native or post-translationally modified form can not only solve many problems in basic biology but also produce therapeutic breakthroughs in medicine. Protein chemical synthesis is a useful approach for the production of these modified proteins which are invaluable reagents for the structural and functional characterization of individual PTM events. In my study, two popular chemical ligation methods were studied for ligation at valine residue: the thioester-mediated ligation and thioacid capture ligation. An N-terminal penicillamine was used to mediate the ligation reaction, similar to the Cys-mediated chemical ligation. Subsequent desulfurization gives a Val residue at the ligation site. However, the steric hindrance of the tertiary thiol group in penicillamine significantly slows down the ligation reaction as compared to ligation at a cysteine residue. Several model peptide thioesters and thioacids were prepared to ligate with the penicillyl peptides by the respective ligation methods. From the results, we can conclude that the thioacid capture ligation works very well for ligation at the sterically hindered Pen compared with the thioester-mediated ligation. A modified histone H2B K120Ac was successfully synthesized by the thioacid capture ligation method. Moreover, a new strategy was developed for the purification of the ligation product. DOCTOR OF PHILOSOPHY (SBS) 2012-04-09T01:31:25Z 2012-04-09T01:31:25Z 2012 2012 Thesis Li, F. P. (2012). Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/48371 10.32657/10356/48371 en 143 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences::Biochemistry
spellingShingle DRNTU::Science::Biological sciences::Biochemistry
Li, Fupeng
Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
description The study of protein structure and function is a central topic of bioscience research. As the most important molecules of life, proteins often undergo post-translational modifications (PTM) in order to carry out their biological functions. A good example is the histone proteins whose PTMs include acetylation, methylation and ubiquitination on specific amino acid side chains. The understanding of how a protein exerts its function in either its native or post-translationally modified form can not only solve many problems in basic biology but also produce therapeutic breakthroughs in medicine. Protein chemical synthesis is a useful approach for the production of these modified proteins which are invaluable reagents for the structural and functional characterization of individual PTM events. In my study, two popular chemical ligation methods were studied for ligation at valine residue: the thioester-mediated ligation and thioacid capture ligation. An N-terminal penicillamine was used to mediate the ligation reaction, similar to the Cys-mediated chemical ligation. Subsequent desulfurization gives a Val residue at the ligation site. However, the steric hindrance of the tertiary thiol group in penicillamine significantly slows down the ligation reaction as compared to ligation at a cysteine residue. Several model peptide thioesters and thioacids were prepared to ligate with the penicillyl peptides by the respective ligation methods. From the results, we can conclude that the thioacid capture ligation works very well for ligation at the sterically hindered Pen compared with the thioester-mediated ligation. A modified histone H2B K120Ac was successfully synthesized by the thioacid capture ligation method. Moreover, a new strategy was developed for the purification of the ligation product.
author2 Liu Chuan Fa
author_facet Liu Chuan Fa
Li, Fupeng
format Theses and Dissertations
author Li, Fupeng
author_sort Li, Fupeng
title Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
title_short Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
title_full Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
title_fullStr Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
title_full_unstemmed Chemical synthesis of proteins containing post‐translational modifications and PNA‐templated disulfide bond formation
title_sort chemical synthesis of proteins containing post‐translational modifications and pna‐templated disulfide bond formation
publishDate 2012
url https://hdl.handle.net/10356/48371
_version_ 1759853774549024768