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1                                          The multicatalytic activities of the PTP complex all require
2                 The reaction is based upon a multicatalytic approach that combines a bifunctional Bro
3 synthesis of spiro-beta-carbolines through a multicatalytic cascade process.
4                              Proteasomes are multicatalytic complexes that function as the major prot
5 the first demonstration that PTP exists as a multicatalytic cysteine protease complex that can be act
6 s provide the first evidence for a role of a multicatalytic cysteine protease complex, PTP, in chroma
7  activities of the 650 kDa 20S proteasome or multicatalytic endopeptidase (MCP), which is thought to
8 (low-molecular-weight protein 7), and MECL1 (multicatalytic endopeptidase complex subunit 1) subunit,
9 molecular mass polypeptide (LMP) 2 (beta1i), multicatalytic endopeptidase complex-like-1 (beta2i), an
10 emonstrate conclusively that h-P450cc24 is a multicatalytic enzyme catalyzing most, if not all, of th
11               The proteasome is an important multicatalytic enzyme complex that degrades misfolded an
12                                   Some known multicatalytic enzymes contain several glycoside hydrola
13                        A one-pot, asymmetric multicatalytic formal [3+2] reaction between 1,3-dicarbo
14 ubstituents-in good to excellent yields in a multicatalytic metal-free, four-step one-pot cascade rea
15                                  Cooperative multicatalytic methods are steadily gaining popularity i
16               We report the development of a multicatalytic, one-pot, asymmetric Michael/Stetter reac
17                             Altogether, this multicatalytic platform offers the target structures wit
18 from apple pomace by the use of xylanase and multicatalytic preparation Celluclast and apple pomace.
19                                         This multicatalytic process enables both intra- and intermole
20                                          The multicatalytic process involves a secondary amine cataly
21 -beta-D-GlcUA-(1-->4)-beta-D-Glc-(1-->] by a multicatalytic process.
22  we present a metabolism-inspired network of multicatalytic processes capable of selectively synthesi
23 he 26 S proteasome can be assembled from the multicatalytic protease (or 20 S proteasome) and a large
24 compound inhibited peptide hydrolysis by the multicatalytic protease and Ub-conjugate degradation by
25           The 26S proteasome is an essential multicatalytic protease complex that degrades a wide ran
26                          The proteasome is a multicatalytic protease complex that plays a key role in
27 h for the 20S proteasome, a highly conserved multicatalytic protease found in all eukaryotes.
28                            The proteasome, a multicatalytic protease, displays distinct chymotrypsin-
29 actacystin, a newly defined inhibitor of the multicatalytic protease, the proteasome, and in vitro de
30                 Proteasomes are nonlysosomal multicatalytic proteases involved in antigen processing.
31                   20S proteasomes are large, multicatalytic proteases that play an important role in
32 e readily degraded by the ATP-dependent 26 S multicatalytic proteases.
33 in A and also by inhibitors of the cytosolic multicatalytic proteasome, N-acetyl-L-leucinyl-L-leucina
34 uding activation of the caspases cascade and multicatalytic proteasome, suppression of prosurvival tr
35  protein decreases due to degradation by the multicatalytic proteasome.
36 romethyl ketone) and of the nuclear scaffold multicatalytic proteinase (Ala-Pro-Phe chloromethyl keto
37 mponent of a cytosolic complex that includes multicatalytic proteinase (MCP), the major cytoplasmic p
38              Two catalytic components of the multicatalytic proteinase complex (MPC, proteasome) desi
39                                          The multicatalytic proteinase complex (MPC, proteasome) is a
40                                          The multicatalytic proteinase complex (MPC, proteasome) is c
41 ability are dependent on the function of the multicatalytic proteinase complex (proteasome), a multis
42 We have investigated the distribution of the multicatalytic proteinase complex in the central nervous
43 cidate the role of the proteasome pathway or multicatalytic proteinase complex in the induction of im
44                                          The multicatalytic proteinase complex is a multi-subunit, hi
45 s exhibited intense immunoreactivity for the multicatalytic proteinase complex only until the onset o
46              Inhibitors of the proteasome, a multicatalytic proteinase complex responsible for intrac
47 in is the 20 S proteasome, also known as the multicatalytic proteinase complex, an essential componen
48 plasmic and nuclear immunoreactivity for the multicatalytic proteinase complex.
49 d is prevented by specific inhibitors of the multicatalytic proteinase complex.
50 re to [14C]-3,4-dichloroisocoumarin (DCI) of multicatalytic proteinase complexes (MPC) isolated from
51  abrogated by inhibitors of proteasomes, the multicatalytic proteinase complexes that selectively deg
52                        Proteasomes are large multicatalytic proteinase complexes which are responsibl
53     These staining patterns suggest that the multicatalytic proteinase of Manduca sexta serves multip
54 intense cytoplasmic immunoreactivity for the multicatalytic proteinase, while persisting flight muscl
55                                              Multicatalytic proteinases (MCPs) are macromolecular str
56 s in the cytoplasm, in many cases by a large multicatalytic proteolytic particle, the proteasome.
57  recent years, our group has been developing multicatalytic reactions for the synthesis of biological
58                           Here, we present a multicatalytic route that allows the degradation of nitr
59 stainability in modern synthesis, integrated multicatalytic strategies such as synergistic dual catal
60 chanisms, with particular emphasis placed on multicatalytic strategies that enable the construction o
61  potency and versatility of this synergistic multicatalytic strategy.
62 ylation to produce a highly efficient tandem multicatalytic synthesis of pyrrolidinyl ketones.
63 e-pot strategy using a transition metal-free multicatalytic system comprised of rose bengal and cesiu