Functional profiling of recombinant NS3 proteases from all four serotypes of dengue virus using tetrapeptide and octapeptide substrate libraries

被引:213
作者
Li, J
Lim, SP
Beer, D
Patel, V
Wen, DY
Tumanut, C
Tully, DC
Williams, JA
Jiricek, J
Priestle, JP
Harris, JL
Vasudevan, SG
机构
[1] Novartis Inst Trop Dis, Singapore 138670, Singapore
[2] Novartis Res Fdn, Genom Inst, San Diego, CA 92121 USA
[3] Novartis Inst Biomed Res, CH-4002 Basel, Switzerland
关键词
D O I
10.1074/jbc.M500588200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Regulated proteolysis by the two-component NS2B/NS3 protease of dengue virus is essential for virus replication and the maturation of infectious virions. The functional similarity between the NS2B/NS3 proteases from the four genetically and antigenically distinct serotypes was addressed by characterizing the differences in their substrate specificity using tetrapeptide and octapeptide libraries in a positional scanning format, each containing 130,321 substrates. The proteases from different serotypes were shown to be functionally homologous based on the similarity of their substrate cleavage preferences. A strong preference for basic amino acid residues ( Arg/Lys) at the P1 positions was observed, whereas the preferences for the P2 - 4 sites were in the order of Arg > Thr > Gln/Asn/Lys for P2, Lys > Arg > Asn for P3, and Nle > Leu > Lys > Xaa for P4. The prime site substrate specificity was for small and polar amino acids in P1' and P3'. In contrast, the P2' and P4' substrate positions showed minimal activity. The influence of the P2 and P3 amino acids on ground state binding and the P4 position for transition state stabilization was identified through single substrate kinetics with optimal and suboptimal substrate sequences. The specificities observed for dengue NS2B/NS3 have features in common with the physiological cleavage sites in the dengue polyprotein; however, all sites reveal previously unrecognized suboptimal sequences.
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页码:28766 / 28774
页数:9
相关论文
共 38 条
[1]   DENGUE-2 VIRUS NS2B AND NS3 FORM A STABLE COMPLEX THAT CAN CLEAVE NS3 WITHIN THE HELICASE DOMAIN [J].
ARIAS, CF ;
PREUGSCHAT, F ;
STRAUSS, JH .
VIROLOGY, 1993, 193 (02) :888-899
[2]   CLEAVAGE OF THE DENGUE VIRUS POLYPROTEIN AT THE NS3/NS4A AND NS4B/NS5 JUNCTIONS IS MEDIATED BY VIRAL PROTEASE NS2B-NS3, WHEREAS NS4A/NS4B MAY BE PROCESSED BY A CELLULAR PROTEASE [J].
CAHOUR, A ;
FALGOUT, B ;
LAI, CJ .
JOURNAL OF VIROLOGY, 1992, 66 (03) :1535-1542
[3]   FLAVIVIRUS GENOME ORGANIZATION, EXPRESSION, AND REPLICATION [J].
CHAMBERS, TJ ;
HAHN, CS ;
GALLER, R ;
RICE, CM .
ANNUAL REVIEW OF MICROBIOLOGY, 1990, 44 :649-688
[4]   Cotranslational membrane insertion of the serine proteinase precursor NS2B-NS3(Pro) of dengue virus type 2 is required for efficient in vitro processing and is mediated through the hydrophobic regions of NS2B [J].
Clum, S ;
Ebner, KE ;
Padmanabhan, R .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (49) :30715-30723
[5]  
COPELAND RA, 2000, ENZYMES PRACTICAL IN, P313
[6]   CLEAVAGE OF HIV-1 GAG POLYPROTEIN SYNTHESIZED INVITRO - SEQUENTIAL CLEAVAGE BY THE VIRAL PROTEASE [J].
ERICKSONVIITANEN, S ;
MANFREDI, J ;
VIITANEN, P ;
TRIBE, DE ;
TRITCH, R ;
HUTCHISON, CA ;
LOEB, DD ;
SWANSTROM, R .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 1989, 5 (06) :577-591
[7]   BOTH NONSTRUCTURAL PROTEINS NS2B AND NS3 ARE REQUIRED FOR THE PROTEOLYTIC PROCESSING OF DENGUE VIRUS NONSTRUCTURAL PROTEINS [J].
FALGOUT, B ;
PETHEL, M ;
ZHANG, YM ;
LAI, CJ .
JOURNAL OF VIROLOGY, 1991, 65 (05) :2467-2475
[8]   Dengue and dengue hemorrhagic fever [J].
Gubler, DJ .
CLINICAL MICROBIOLOGY REVIEWS, 1998, 11 (03) :480-+
[9]   ORIGINAL ANTIGENIC SIN IN DENGUE [J].
HALSTEAD, SB ;
ROJANASUPHOT, S ;
SANGKAWIBHA, N .
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 1983, 32 (01) :154-156
[10]   Rapid and general profiling of protease specificity by using combinatorial fluorogenic substrate libraries [J].
Harris, JL ;
Backes, BJ ;
Leonetti, F ;
Mahrus, S ;
Ellman, JA ;
Craik, CS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (14) :7754-7759