Development of Activity Probes for Glycosidases and Their Applications in Proteomics

碩士 === 國立臺灣大學 === 化學研究所 === 90 === The application of activity probes in proteomics, including the distribution and specificity of various glycosidases, has been developed recently. The design of activity probes is based on suicide inhibition of enzymes. The synthesis of ac...

Full description

Bibliographic Details
Main Authors: Charng-Sheng Tsai, 蔡長昇
Other Authors: Lee-Chiang Lo
Format: Others
Language:zh-TW
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/40904381554177814263
id ndltd-TW-090NTU00065010
record_format oai_dc
spelling ndltd-TW-090NTU000650102015-10-13T14:38:05Z http://ndltd.ncl.edu.tw/handle/40904381554177814263 Development of Activity Probes for Glycosidases and Their Applications in Proteomics 醣水解酵素活性標示之開發及其在蛋白質體學上的應用 Charng-Sheng Tsai 蔡長昇 碩士 國立臺灣大學 化學研究所 90 The application of activity probes in proteomics, including the distribution and specificity of various glycosidases, has been developed recently. The design of activity probes is based on suicide inhibition of enzymes. The synthesis of activity probe contains:Glycosidic bond formation, Hydrogenation, Esterification, Bromination, Hydrolysis, Fluorination, Peptide bond formation. From the signals of 19F NMR, we observed the rate of activity probes with glucosidase and formation of 1,6-elimination. In addition, we also discuss the specific coupling glucosidase by SDS-PAGE. Lee-Chiang Lo 羅禮強 2002 學位論文 ; thesis 173 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 化學研究所 === 90 === The application of activity probes in proteomics, including the distribution and specificity of various glycosidases, has been developed recently. The design of activity probes is based on suicide inhibition of enzymes. The synthesis of activity probe contains:Glycosidic bond formation, Hydrogenation, Esterification, Bromination, Hydrolysis, Fluorination, Peptide bond formation. From the signals of 19F NMR, we observed the rate of activity probes with glucosidase and formation of 1,6-elimination. In addition, we also discuss the specific coupling glucosidase by SDS-PAGE.
author2 Lee-Chiang Lo
author_facet Lee-Chiang Lo
Charng-Sheng Tsai
蔡長昇
author Charng-Sheng Tsai
蔡長昇
spellingShingle Charng-Sheng Tsai
蔡長昇
Development of Activity Probes for Glycosidases and Their Applications in Proteomics
author_sort Charng-Sheng Tsai
title Development of Activity Probes for Glycosidases and Their Applications in Proteomics
title_short Development of Activity Probes for Glycosidases and Their Applications in Proteomics
title_full Development of Activity Probes for Glycosidases and Their Applications in Proteomics
title_fullStr Development of Activity Probes for Glycosidases and Their Applications in Proteomics
title_full_unstemmed Development of Activity Probes for Glycosidases and Their Applications in Proteomics
title_sort development of activity probes for glycosidases and their applications in proteomics
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/40904381554177814263
work_keys_str_mv AT charngshengtsai developmentofactivityprobesforglycosidasesandtheirapplicationsinproteomics
AT càizhǎngshēng developmentofactivityprobesforglycosidasesandtheirapplicationsinproteomics
AT charngshengtsai tángshuǐjiějiàosùhuóxìngbiāoshìzhīkāifājíqízàidànbáizhìtǐxuéshàngdeyīngyòng
AT càizhǎngshēng tángshuǐjiějiàosùhuóxìngbiāoshìzhīkāifājíqízàidànbáizhìtǐxuéshàngdeyīngyòng
_version_ 1717755003960033280