Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors

10.1074/jbc.M311744200

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Main Authors: Song, J., Shi, J., Wei, Z.
Other Authors: BIOCHEMISTRY
Format: Article
Published: 2013
Online Access:http://scholarbank.nus.edu.sg/handle/10635/38056
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spelling sg-nus-scholar.10635-380562023-10-29T20:04:38Z Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors Song, J. Shi, J. Wei, Z. BIOCHEMISTRY 10.1074/jbc.M311744200 Journal of Biological Chemistry 279 23 24765-24773 JBCHA 2013-06-05T09:44:54Z 2013-06-05T09:44:54Z 2004 Article Song, J., Shi, J., Wei, Z. (2004). Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors. Journal of Biological Chemistry 279 (23) : 24765-24773. ScholarBank@NUS Repository. https://doi.org/10.1074/jbc.M311744200 00219258 http://scholarbank.nus.edu.sg/handle/10635/38056 000221702500107 Scopus
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
description 10.1074/jbc.M311744200
author2 BIOCHEMISTRY
author_facet BIOCHEMISTRY
Song, J.
Shi, J.
Wei, Z.
format Article
author Song, J.
Shi, J.
Wei, Z.
spellingShingle Song, J.
Shi, J.
Wei, Z.
Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
author_sort Song, J.
title Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
title_short Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
title_full Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
title_fullStr Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
title_full_unstemmed Dissection study on the severe acute respiratory syndrome 3C-like protease reveals the critical role of the extra domain in dimerization of the enzyme. Defining the extra domain as a new target for design of highly specific protease inhibitors
title_sort dissection study on the severe acute respiratory syndrome 3c-like protease reveals the critical role of the extra domain in dimerization of the enzyme. defining the extra domain as a new target for design of highly specific protease inhibitors
publishDate 2013
url http://scholarbank.nus.edu.sg/handle/10635/38056
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