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Characterization of Nla protease from turnip mosaic potyvirus exhibiting a low-temperature optimum catalytic activity SCIE SCOPUS

Title
Characterization of Nla protease from turnip mosaic potyvirus exhibiting a low-temperature optimum catalytic activity
Authors
Kim, DHHwang, DKang, BHLew, JChoi, KY
Date Issued
1996-07-01
Publisher
ACADEMIC PRESS INC JNL-COMP SUBSCRIPT
Abstract
Nuclear inclusion protein a (NIa) protease of turnip mosaic potyvirus is responsible for the processing of the viral polyprotein into functional proteins. The NIa protease was found to exhibit its optimum catalytic activity at approximately 15 degrees and a bell-shaped pH-dependent activity profile with a maximum at approximately pH 8.5. Kinetic studies showed that both Km and K-max values were lower at 12 than at 25 degrees in all three different pH conditions, pH 7.0, 7.4, and 8.3, indicating that the higher activity al 12 degrees is due to the lower value of K-m. Interestingly, the self-cleavage of the 27-kDa protease to generate the 25-kDa protease occurred more rapidly al 25 than at 12 degrees, implying that the C-terminal self-cleavage site may interfere with the binding of the peptide substrate to the active site of the protease. Mutations and deletions at the C-terminal cleavage site had no effect on the temperature dependence of the proteolytic activity, demonstrating that the C-terminal self-cleavage is not related to the low-temperature optimum catalytic activity. The fluorescence measurement of the NIa protease upon temperature variation revealed that the protease undergoes a large conformational change between 2 and 42 degrees and a drastic transition near 45 degrees, suggesting that the low-temperature optimum catalytic activity is due to the highly flexible structure of the NIa protease. (C) 1996 Academic Press, Inc.
Keywords
CYSTEINE PROTEASES; SERINE PROTEASES; PURIFICATION; PROTEINASE; CLEAVAGE; SEQUENCE
URI
https://oasis.postech.ac.kr/handle/2014.oak/21542
DOI
10.1006/viro.1996.0372
ISSN
0042-6822
Article Type
Article
Citation
VIROLOGY, vol. 221, no. 1, page. 245 - 249, 1996-07-01
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최관용CHOI, KWAN YONG
Div of Integrative Biosci & Biotech
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