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Yellow fever virus NS2B/NS3 protease: Hydrolytic Properties and Substrate Specificity
Authors:Marcia Y Kondo  Lilian CG Oliveira  Debora N Okamoto  Marina RT de Araujo  Claudia N Duarte dos Santos  Maria A Juliano  Luiz Juliano  Iuri E Gouvea
Institution:aDepartment of Biophysics, Escola Paulista de Medicina, Universidade Federal de São Paulo, São Paulo, Brazil;bInstituto Carlos Chagas/Fiocruz PR, Rua Prof. Algacyr Munhoz Mader 3775 – CIC, Curitiba 81350-010, Brazil
Abstract:Here we report the hydrolytic behavior of recombinant YFV NS2B/NS3 protease against FRET substrates mimicking the prime and non-prime region of the natural polyprotein cleavage sites. While the P2-P′1 motif is the main factor associated with the catalytic efficiency of Dengue (DV) and West Nile Virus (WNV) protease, we show that the kcat/Km of YFV NS2B/NS3 varied by more than two orders of magnitude, despite the presence of the same motif in all natural substrates. The catalytic significance of this homogeneity – a unique feature among worldwide prominent flavivirus – was kinetically analyzed using FRET peptides containing all possible combinations of two and three basic amino acids in tandem, and Arg and Lys residues produced distinct effects on kcat/Km. The parallel of our data with those obtained in vivo by Chambers et al. (1991) restrains the idea that these sites co-evolved with the NS2B/NS3 protease to promote highly efficient hydrolysis and supports the notion that secondary substrate interaction distant from cleavage sites are the main factor associated with the different hydrolytic rates on YFV NS2B-NS3pro natural substrates.
Keywords:FRET substrate  Enzyme kinetics  Serine-proteases  Flavivirus  Dengue
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