Regulation of protein kinase TAK1

This study was focused on the exploration of new regulators of TAK1, a critical kinase lying near the top of multiple pro-inflammatory signaling cascades, by identifying novel interacting proteins of TAK1, which hopefully will facilitate development of potential therapeutics for chronic inflammatory...

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Main Author: Liu, Xinyu
Other Authors: Cheung Ching For, Peter
Format: Theses and Dissertations
Language:English
Published: 2010
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Online Access:https://hdl.handle.net/10356/42238
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-422382023-02-28T18:36:35Z Regulation of protein kinase TAK1 Liu, Xinyu Cheung Ching For, Peter School of Biological Sciences DRNTU::Science::Biological sciences::Biochemistry This study was focused on the exploration of new regulators of TAK1, a critical kinase lying near the top of multiple pro-inflammatory signaling cascades, by identifying novel interacting proteins of TAK1, which hopefully will facilitate development of potential therapeutics for chronic inflammatory diseases such as rheumatoid arthritis. Firstly, TAK1 was identified as Hsp90 client kinase using endogenous and exogenous systems. Hsp90 directly binds to kinase domain of TAK1, while the kinase activity of TAK1 as well as autophosphorylation of TAK1 at its activation loop was not required for the binding. TAB1/2/3, the binding partners of TAK1, did not interact with Hsp90, however, interaction of TAK1-Hsp90 was found to be significantly attenuated by TAB1 regardless of TAK1 activation states whereas TAK1-TAB1 binding was not affected by overexpression of Hsp90 in HEK293 cells. This result was supported by TAB1 knockdown experiment which led to increased binding of Hsp90 to TAK1. Hsp90 was not required for TAK1 activation since phosphorylation of TAK1 activation loop was unaffected when Hsp90-TAK1 interaction was disrupted by using Hsp90 inhibitor in a short term. Nonetheless, it was required for TAK1 stability because prolonged inhibition of Hsp90 resulted in down-regulation of endogenous TAK1 but not its binding partners (TAB1, TAB2 and TAB3). DOCTOR OF PHILOSOPHY (SBS) 2010-10-04T07:52:12Z 2010-10-04T07:52:12Z 2009 2009 Thesis Liu, X. (2009). Regulation of protein kinase TAK1. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/42238 10.32657/10356/42238 en 170 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
Liu, Xinyu
Regulation of protein kinase TAK1
description This study was focused on the exploration of new regulators of TAK1, a critical kinase lying near the top of multiple pro-inflammatory signaling cascades, by identifying novel interacting proteins of TAK1, which hopefully will facilitate development of potential therapeutics for chronic inflammatory diseases such as rheumatoid arthritis. Firstly, TAK1 was identified as Hsp90 client kinase using endogenous and exogenous systems. Hsp90 directly binds to kinase domain of TAK1, while the kinase activity of TAK1 as well as autophosphorylation of TAK1 at its activation loop was not required for the binding. TAB1/2/3, the binding partners of TAK1, did not interact with Hsp90, however, interaction of TAK1-Hsp90 was found to be significantly attenuated by TAB1 regardless of TAK1 activation states whereas TAK1-TAB1 binding was not affected by overexpression of Hsp90 in HEK293 cells. This result was supported by TAB1 knockdown experiment which led to increased binding of Hsp90 to TAK1. Hsp90 was not required for TAK1 activation since phosphorylation of TAK1 activation loop was unaffected when Hsp90-TAK1 interaction was disrupted by using Hsp90 inhibitor in a short term. Nonetheless, it was required for TAK1 stability because prolonged inhibition of Hsp90 resulted in down-regulation of endogenous TAK1 but not its binding partners (TAB1, TAB2 and TAB3).
author2 Cheung Ching For, Peter
author_facet Cheung Ching For, Peter
Liu, Xinyu
format Theses and Dissertations
author Liu, Xinyu
author_sort Liu, Xinyu
title Regulation of protein kinase TAK1
title_short Regulation of protein kinase TAK1
title_full Regulation of protein kinase TAK1
title_fullStr Regulation of protein kinase TAK1
title_full_unstemmed Regulation of protein kinase TAK1
title_sort regulation of protein kinase tak1
publishDate 2010
url https://hdl.handle.net/10356/42238
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