Characteristics of the caspase-like catalytic domain of human paracaspase

被引:33
作者
Snipas, SJ
Wildfang, E
Nazif, T
Christensen, L
Boatright, KM
Bogyo, M
Stennicke, HR
Salvesen, GS
机构
[1] Burnham Inst, Program Apoptosis & Cell Death Res, La Jolla, CA 92037 USA
[2] Stanford Univ, Dept Pathol, Stanford, CA 94305 USA
[3] Novo Nordisk AS, Prot Engn, DK-2880 Bagsvaerd, Denmark
[4] Univ Calif San Diego, Grad Program Mol Pathol, La Jolla, CA 92037 USA
关键词
activity profiling; catalytic site; protease;
D O I
10.1515/BC.2004.142
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
Human paracaspase has been predicted to be a member of the protein structural fold that encompasses protease clan CD. To determine whether paracaspase has catalytic activity we have expressed the region corresponding to the catalytic domain and used protease activity-based chemical probes to profile the putative active site. A leucine-based acyloxymethyl ketone probe that covalently labels cysteine proteases discloses a hydrophobic P-1 preference in the putative active site. The probe covalently labels Cys539, which is not the predicted catalytic site based on structural and sequence comparisons with other clan CD proteases. Using a combinatorial peptide substrate library approach we have been unable to detect amidolytic activity of paracaspase, implying that if it is a protease it must be very specific. We suggest a switch in the use of catalytic residues to generate an enzyme overlapping the canonical clan CD protease active site.
引用
收藏
页码:1093 / 1098
页数:6
相关论文
共 28 条
[1]   Evolutionary lines of cysteine peptidases [J].
Barrett, AJ ;
Rawlings, ND .
BIOLOGICAL CHEMISTRY, 2001, 382 (05) :727-733
[2]   Defining a link between gap junction communication, proteolysis, and cataract formation [J].
Baruch, A ;
Greenbaum, D ;
Levy, ET ;
Nielsen, PA ;
Gilula, NB ;
Kumar, NM ;
Bogyo, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (31) :28999-29006
[3]   Mechanisms of caspase activation [J].
Boatright, KM ;
Salvesen, GS .
CURRENT OPINION IN CELL BIOLOGY, 2003, 15 (06) :725-731
[4]   Selective targeting of lysosomal cysteine proteases with radiolabeled electrophilic substrate analogs [J].
Bogyo, M ;
Verhelst, S ;
Bellingard-Dubouchaud, V ;
Toba, S ;
Greenbaum, D .
CHEMISTRY & BIOLOGY, 2000, 7 (01) :27-38
[5]   Substrate binding and sequence preference of the proteasome revealed by active-site-directed affinity probes [J].
Bogyo, M ;
Shin, S ;
McMaster, JS ;
Ploegh, HL .
CHEMISTRY & BIOLOGY, 1998, 5 (06) :307-320
[6]   Chemistry-based functional proteomics reveals novel members of the deubiquitinating enzyme [J].
Borodovsky, A ;
Ovaa, H ;
Kolli, N ;
Gan-Erdene, T ;
Wilkinson, KD ;
Ploegh, HL ;
Kessler, BM .
CHEMISTRY & BIOLOGY, 2002, 9 (10) :1149-1159
[7]   A catalytic mechanism for caspase-1 and for bimodal inhibition of caspase-1 by activated aspartic ketones [J].
Brady, KD ;
Giegel, DA ;
Grinnell, C ;
Lunney, E ;
Talanian, RV ;
Wong, W ;
Walker, N .
BIOORGANIC & MEDICINAL CHEMISTRY, 1999, 7 (04) :621-631
[8]   ANALYSIS OF PROTEIN AND PEPTIDE MIXTURES - EVALUATION OF 3 SODIUM DODECYL SULFATE-POLYACRYLAMIDE GEL-ELECTROPHORESIS BUFFER SYSTEMS [J].
BURY, AF .
JOURNAL OF CHROMATOGRAPHY, 1981, 213 (03) :491-500
[9]   MALT1/paracaspase is a signaling component downstream of CARMA1 and mediates T cell receptor-induced NF-κB activation [J].
Che, TJ ;
You, Y ;
Wang, DH ;
Tanner, MJ ;
Dixit, VM ;
Lin, X .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (16) :15870-15876
[10]   The apoptosis inhibitor gene API2 and a novel 18q gene, MLT, are recurrently rearranged in the t(11;18)(q21;q21) associated with mucosa-associated lymphoid tissue lymphomas [J].
Dierlamm, J ;
Baens, M ;
Wlodarska, I ;
Stefanova-Ouzounova, M ;
Hernandez, JM ;
Hossfeld, DK ;
De Wolf-Peeters, C ;
Hagemeijer, A ;
Van den Berghe, H ;
Marynen, P .
BLOOD, 1999, 93 (11) :3601-3609