๐ Structural and functional characterization of MERS coronavirus papain-like protease
Backgrounds. A new highly pathogenic human coronavirus (CoV), Middle East respiratory syndrome coronavirus (MERS-CoV), has emerged in Jeddah and Saudi Arabia and quickly spread to some European countries since September 2012. Until 15 May 2014, it has infected at least 572 people with a fatality rate of about 30% globally. Studies to understand the virus and to develop antiviral drugs or therapy are necessary and urgent. In the present study, MERS-CoV papain-like protease (PLpro) is expressed, and its structural and functional consequences are elucidated. Results: Circular dichroism and Tyr/Trp fluorescence analyses indicated that the secondary and tertiary structure of MERS-CoV PLpro is well organized and folded. Analytical ultracentrifugation analyses demonstrated that MERS-CoV PLpro is a monomer in solution. The steady-state kinetic and deubiquitination activity assays indicated that MERS-CoV PLpro exhibits potent deubiquitination activity but lower proteolytic activity, compared with SARS-CoV PL pro. A natural mutation, Leu105, is the major reason for this difference. Conclusions: Overall, MERS-CoV PLpro bound by an endogenous metal ion shows a folded structure and potent proteolytic and deubiquitination activity. These findings provide important insights into the structural and functional properties of coronaviral PLpro family, which is applicable to develop strategies inhibiting PLpro against highly pathogenic coronaviruses. ยฉ 2014 Lin et al.; licensee Bio. Med Central Ltd.
keywords
๐ syndrome coronavirus (1074)
๐ present study (186)
๐ highly pathogenic (100)
๐ papain-like protease (67)
๐ fatality rate (123)
๐ human coronavirus (623)
๐ respiratory syndrome (2004)
author
๐ค Lin, Min Han
๐ค Chuang, Shang Ju
๐ค Chen, Chiao Che
๐ค Cheng, Shu Chun
๐ค Cheng, Kai Wen
๐ค Lin, Chao Hsiung
๐ค Sun, Chiao Yin
๐ค Chou, Chi Yuan
year
โฐ 2014
issn
๐ 14230127 10217770
volume
21
number
1
page
citedbycount
18
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