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2 tes studied include methylphosphonic acid (a dibasic acid), the monoisopropyl ester of ethylphosphoni
5 myristoylation reaction occurs internally at dibasic amino acid doublets of proteins such as alpha-TN
11 ied a small region in bZIP28 that is rich in dibasic amino acids and proximal to the transmembrane do
12 in renal tubular and intestinal transport of dibasic amino acids that results in elevated urinary exc
13 arbamyl-phosphate synthase (CPS), as well as dibasic aminoacidurias hyperammonemia-hyperornithinemia-
15 ge of their respective precursor proteins at dibasic and monobasic sites, which is consistent with th
16 data imply that MPII specificity mimics the dibasic Arg downward arrowArg cleavage motif of furin-li
17 that this vitamin-K-dependent protein has a dibasic Arg-Arg sequence at the propeptide cleavage site
19 cium phosphate (CaP) phases (hydroxyapatite, dibasic calcium phosphate dihydrate, dibasic calcium pho
20 patite, dibasic calcium phosphate dihydrate, dibasic calcium phosphate, monobasic calcium phosphate,
21 is the first zinc metalloproteinase with the dibasic cleavage preferences, suggesting a high level of
22 onobasic cleavage sites rather than a single dibasic cleavage site at the amino-terminal end of the p
23 missense mutation, R236G, which disrupts the dibasic cleavage site between beta melanocyte-stimulatin
24 tion of Ebo-GP despite the conservation of a dibasic cleavage site in all filoviral envelope glycopro
26 ed an assay in which processing at the C-prM dibasic cleavage site is abolished by Lys-->Gly conversi
28 previously described mouse arginine-specific dibasic cleaving enzyme (dynorphin converting enzyme) is
30 ptor showed it to be identical to N-arginine dibasic convertase (NRDc), a metalloendopeptidase of the
32 proteolysis by metalloproteinase N-arginine dibasic convertase 1 (NRD1) and leads to the significant
37 ulation factor Xa, and the Bacillus subtilis dibasic endoproteinase subtilisin A through different me
39 cleavage occurs at a site distinct from the dibasic juxtamembrane motif that had been suggested prev
43 viously, we reported the identification of a dibasic motif (KxHxx) in the cytoplasmic tail of the SAR
45 ng site-directed mutagenesis, we created the dibasic motif (RR or RK; R = arginine, K = lysine), a ta
46 study, we demonstrate that introduction of a dibasic motif adjacent to a subdominant determinant enha
48 und O-acyltransferase family and possesses a dibasic motif at its C terminus that is likely responsib
49 tion with beta-COP was reduced by mutating a dibasic motif at Lys(54) in the Na,K-ATPase alpha-subuni
51 so show that prosegments lacking an internal dibasic motif can act as autoinhibitors and prevent acti
52 We reported previously that the RXR-type dibasic motif in the distal C-terminal tail of an HIV co
55 erminal 11-amino acid propeptide ending in a dibasic motif, suggesting cleavage by a furin-like propr
56 rmini of ZP1, ZP2, and ZP3 lie upstream of a dibasic motif, which is part of, but distinct from, a pr
57 ymes suggested that the naturally processed, dibasic motif-marked epitope may not always correspond p
58 ombinatorial, non-exchangeable dileucine and dibasic motifs located in a defined sequence context in
61 ch band occurring at ~1080 cm(-1) versus the dibasic (-OPO(3)(2-)) band measured at ~980 cm(-1) in bo
63 greater increase in soil solution P than the dibasic oxalic acid, likely due to the rapid degrading o
64 ved that an aromatic residue adjacent to the dibasic pair (i.e., Phe-Arg-Lys) could alter the cleavag
68 Analyses of peptides spanning each of the 12 dibasic PE cleavage sites illustrated differences in H-D
72 suggests differential utilization of typical dibasic processing sites and atypical processing sites C
73 ate the relative accessibilities of multiple dibasic processing sites of PE by peptide amide hydrogen
74 AP-A presequence indicated the presence of a dibasic protease (Kex2/furin) processing site motif 6-8
76 ng of proenkephalin by cathepsin V occurs at dibasic residue sites to generate enkephalin-containing
77 end two amino acids upstream of a conserved dibasic residue that is part of, but distinct from, the
78 otein motif consisting of a cluster of three dibasic residues ((356)RR(357), (359)KK(360), and (362)K
79 cleaving after sequences having consecutive dibasic residues (namely, at the P1 and P2 substrate pos
80 in convertase 1/3 (PC1) cleave substrates at dibasic residues along the eukaryotic secretory/endocyti
81 ecretory granules, where they are cleaved at dibasic residues by copackaged proprotein convertases.
82 that normally includes two sets of flanking dibasic residues), they offer insights into understandin
83 in convertases (PCs) cleave precursors after dibasic residues, and carboxypeptidases remove basic res
87 II-associated invariant chain Iip35 exhibits dibasic retention, carries a release motif, and shows mu
89 of all cell types tested, but cleavage of a dibasic sequence was detected only intracellularly and o
93 ytoplasmic trafficking motifs: an N-terminal dibasic site that binds beta-COP to hold channels in ER
96 molecule is processed by proteases at three dibasic sites found in the pro domain to form mature NGF
97 When a mutant form of pro-TRH, which has the dibasic sites of initial processing mutated to glycines,
98 lcium-dependent cleavage enzymes that act on dibasic sites of various peptide/protein substrates.
99 roenkephalin (PE) is a prohormone containing dibasic sites that are cleaved by proteases to generate
100 mutations in the pro domain at the other two dibasic sites, we found the stability of proNGF to incre
101 , the major form of catestatin is cleaved at dibasic sites, while smaller carboxyl-terminal forms als
103 in to insulin occurs via cleavage at the two dibasic sites: Arg31-Arg32, B chain-C-peptide (BC) junct
104 or the Y104D/I107E double mutation into the dibasic specific enzyme failed to generate the processed
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