Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors
<p>Abstract</p> <p>Background</p> <p>Caspase-3, a principal apoptotic effector that cleaves the majority of cellular substrates, is an important medicinal target for the treatment of cancers and neurodegenerative diseases. Large amounts of the protein are required for d...
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doaj-43d065d784b049dc96817ab0317a465e2020-11-25T03:51:27ZengBMCBMC Biotechnology1472-67502008-12-01819210.1186/1472-6750-8-92Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursorsPark SungJang MiPark KyoungsookJeong Yu-JinLee Young-miKang HyoBae Kwang-HeeKim MoonilChung Sang J<p>Abstract</p> <p>Background</p> <p>Caspase-3, a principal apoptotic effector that cleaves the majority of cellular substrates, is an important medicinal target for the treatment of cancers and neurodegenerative diseases. Large amounts of the protein are required for drug discovery research. However, previous efforts to express the full-length caspase-3 gene in <it>E. coli </it>have been unsuccessful.</p> <p>Results</p> <p>Overproducers of thrombin-activatable full-length caspase-3 precursors were prepared by engineering the auto-activation sites of caspase-3 precursor into a sequence susceptible to thrombin hydrolysis. The engineered precursors were highly expressed as soluble proteins in <it>E. coli </it>and easily purified by affinity chromatography, to levels of 10–15 mg from 1 L of <it>E. coli </it>culture, and readily activated by thrombin digestion. Kinetic evaluation disclosed that thrombin digestion enhanced catalytic activity (<it>k</it><sub>cat</sub>/<it>K</it><sub><it>M</it></sub>) of the precursor proteins by two orders of magnitude.</p> <p>Conclusion</p> <p>A novel method for a large-scale preparation of active caspase-3 was developed by a strategic engineering to lack auto-activation during expression with amino acid sequences susceptible to thrombin, facilitating high-level expression in <it>E. coli</it>. The precursor protein was easily purified and activated through specific cleavage at the engineered sites by thrombin, generating active caspase-3 in high yields.</p> http://www.biomedcentral.com/1472-6750/8/92 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Park Sung Jang Mi Park Kyoungsook Jeong Yu-Jin Lee Young-mi Kang Hyo Bae Kwang-Hee Kim Moonil Chung Sang J |
spellingShingle |
Park Sung Jang Mi Park Kyoungsook Jeong Yu-Jin Lee Young-mi Kang Hyo Bae Kwang-Hee Kim Moonil Chung Sang J Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors BMC Biotechnology |
author_facet |
Park Sung Jang Mi Park Kyoungsook Jeong Yu-Jin Lee Young-mi Kang Hyo Bae Kwang-Hee Kim Moonil Chung Sang J |
author_sort |
Park Sung |
title |
Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors |
title_short |
Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors |
title_full |
Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors |
title_fullStr |
Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors |
title_full_unstemmed |
Large-scale preparation of active caspase-3 in <it>E. coli </it>by designing its thrombin-activatable precursors |
title_sort |
large-scale preparation of active caspase-3 in <it>e. coli </it>by designing its thrombin-activatable precursors |
publisher |
BMC |
series |
BMC Biotechnology |
issn |
1472-6750 |
publishDate |
2008-12-01 |
description |
<p>Abstract</p> <p>Background</p> <p>Caspase-3, a principal apoptotic effector that cleaves the majority of cellular substrates, is an important medicinal target for the treatment of cancers and neurodegenerative diseases. Large amounts of the protein are required for drug discovery research. However, previous efforts to express the full-length caspase-3 gene in <it>E. coli </it>have been unsuccessful.</p> <p>Results</p> <p>Overproducers of thrombin-activatable full-length caspase-3 precursors were prepared by engineering the auto-activation sites of caspase-3 precursor into a sequence susceptible to thrombin hydrolysis. The engineered precursors were highly expressed as soluble proteins in <it>E. coli </it>and easily purified by affinity chromatography, to levels of 10–15 mg from 1 L of <it>E. coli </it>culture, and readily activated by thrombin digestion. Kinetic evaluation disclosed that thrombin digestion enhanced catalytic activity (<it>k</it><sub>cat</sub>/<it>K</it><sub><it>M</it></sub>) of the precursor proteins by two orders of magnitude.</p> <p>Conclusion</p> <p>A novel method for a large-scale preparation of active caspase-3 was developed by a strategic engineering to lack auto-activation during expression with amino acid sequences susceptible to thrombin, facilitating high-level expression in <it>E. coli</it>. The precursor protein was easily purified and activated through specific cleavage at the engineered sites by thrombin, generating active caspase-3 in high yields.</p> |
url |
http://www.biomedcentral.com/1472-6750/8/92 |
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