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1 arginine carboxypeptidase, and anaphylotoxin inactivator).
2  acquired at least one (2)H from the labeled inactivator.
3  conclusion that furafylline is an efficient inactivator.
4  a consequence of the effects of a cytosolic inactivator.
5 activation of 0.1 microM MAO-B by 500 microM inactivator.
6 ting neutrophils is regulated by a cytosolic inactivator.
7  substantially reduced levels of this PTPase inactivator.
8 e or mixed competitive-noncompetitive CYP3A4 inactivator.
9 sually only recognizes one enantiomer of the inactivator.
10 finity but does not act as a mechanism-based inactivator.
11  that the ( R) enantiomer is the more potent inactivator.
12 anisms based on the binding direction of the inactivator.
13  acid (12) was designed as a mechanism-based inactivator.
14 agenesis and subsequent exposure to affinity inactivators.
15 ct readily with prototypical serine protease inactivators.
16 cy and selectivity of (acyloxy)methyl ketone inactivators.
17 er than as suicide substrates or active site inactivators.
18 ing that these compounds are mechanism-based inactivators.
19 a benefit to 4-substitution in this class of inactivators.
20 th a series of N-cyclopropyl mechanism based inactivators.
21 ore classified as active-site-directed redox inactivators.
22 plication as, for example, targeted protease inactivators.
23 s to develop resistance to sulfanylbenzamide inactivators.
24 in other studies of related aminotransferase inactivators.
25  which is typical for mechanism-based enzyme inactivators.
26 st potent and broad spectrum mechanism-based inactivators.
27 amine, and hydrazine-functionalities as LSD1 inactivators.
28 and characterization the two most potent AgD inactivators.
29  10-1000-fold over previously reported PAI-1 inactivators.
30 me P-450 ligands such as the mechanism-based inactivator 1-aminobenzotriazole did not inhibit iNOS.
31  13-acetate (500 nM), and blocked by the PKC inactivator (+/-)-1-(5-isoquinolinesulfonyl)-2-methylpip
32 dy has led to the identification of a potent inactivator (10) for this enzyme, and study of its inact
33 blished CYP3A4 substrate and mechanism-based inactivator, 17-alpha-ethynylestradiol (17EE), via click
34 scovery of the nonselective aminotransferase inactivator (1R,3S,4S)-3-amino-4-fluoro cyclopentane-1-c
35                 We evaluated a novel GABA-AT inactivator (1S, 3S)-3-amino-4-difluoromethylenyl-1-cycl
36 red by the discovery of the aminotransferase inactivator (1S,3S)-3-amino-4-(difluoromethylene)cyclope
37 the negatively charged (at physiological pH) inactivators 2-amino-O4-benzylpteridine-6-carboxylic aci
38 ve covalent modification of COX-2 by a novel inactivator, 2-acetoxyphenyl hept-2-ynyl sulfide (70).
39 e incorporation of two (13)C labels into the inactivator, [2,3-(13)C(2)]-1-PCPA, followed by analysis
40           The first reported mechanism-based inactivator, 3-decynoyl-N-acetylcysteamine (3-decynoyl-N
41 ally rigid analogues (7-15) of other GABA-AT inactivators, 4-amino-5-halopentanoic acids, were synthe
42              A new bicyclomycin irreversible inactivator, 5a-formylbicyclomycin (3), was prepared to
43                                  Autoinducer inactivator A (AiiA) is a metal-dependent N-acyl homoser
44 identification of CAPRI (Ca(2+)-promoted Ras inactivator), a Ca(2+)-dependent Ras GTPase-activating p
45 means to explore the structure of the flavin-inactivator adduct of MAO N.
46 ther structural identification of the flavin-inactivator adduct.
47 n leads to covalent attachment of 2 equiv of inactivator after gel filtration; upon urea denaturation
48 ion in vitro and test the design of specific inactivators aimed at blocking the production of the pyr
49 them, (+)-7, (-)-9, (+)-10, and (+)-15, were inactivators, although not as potent as the correspondin
50 sma amine oxidase (BPAO) both as a temporary inactivator and as a substrate.
51 del does not show an interaction between the inactivator and Asp66.
52 igned a pantetheine-like chloromethyl ketone inactivator and co-crystallized it with ThnT.
53 ed complex elucidates the orientation of the inactivator and its covalent attachment to the active si
54 thiols to form a mixed disulfide between the inactivator and papain.
55 ons of analogs of ritonavir, a potent CYP3A4 inactivator and pharmacoenhancer, we have built a pharma
56  is direct transfer of hydrogens between the inactivator and the 5'-methyl of 5'-deoxyadenosine.
57  to the further rational design of selective inactivators and an understanding of potential inactivat
58 ass of highly water-soluble alkyltransferase inactivators and form the basis to construct more tumor-
59 d in hygiene-sensitive environments, both as inactivators and modulators of cellular immunity.
60 have been achieved by use of mechanism-based inactivators and photoaffinity ligands.
61 e findings for 3-vinylerlotinib (less potent inactivator) and tetrahydroerlotinib (no inactivation).
62 s of the mycotoxin cerulenin (a covalent FAS inactivator), and the novel small compound C75 (a slow-b
63 tanedione and phenylglyoxal were found to be inactivators, and inactivation could be protected agains
64 ify and characterize drug candidates as P450 inactivators are important in drug discovery and develop
65                                     Affinity inactivators are useful for probing catalytic mechanisms
66 e for further design of peptidomimetic HIV-1 inactivators based on the PT pharmacophore.
67                                  Thus, these inactivators behave as unique suicide substrates.
68 or BH3-only molecules function downstream of inactivator BH3-only molecules to activate BAX-BAK.
69 differentially inactivated by the remaining 'inactivator' BH3-only molecules including BAD, NOXA, BMF
70    Molecular modeling is used to investigate inactivator binding, reaction, and also a final pyridini
71    Pretreatment of HMG-CoA synthase with the inactivator blocks the enzyme's ability to form Michaeli
72 th models of the enzymes with the acetylenic inactivator bound in the active site suggest that the T3
73 cyclohex-3-ene-1-carboxylic acid (6) are not inactivators but are competitive reversible inhibitors o
74 ated with sodium tungstate (xanthine oxidase inactivator); c) an aorta occlusion group; and d) an aor
75 ated with sodium tungstate (xanthine oxidase inactivator); c) aorta occlusion group; and d) aorta occ
76 t in human neutrophils, calcium-promoted Ras inactivator (CAPRI) locally controls the GPCR-stimulated
77 d by the recruitment of calcium-promoted Ras inactivator (CAPRI), a GTPase-activating protein, to the
78   Here we show that the calcium-promoted Ras inactivator (CAPRI), a Ras GTPase-activating protein, fu
79 anaphylatoxins and suppresses the complement-inactivator carboxypeptidase N (CPN1).
80 ential susceptibility to the mechanism-based inactivators chloramphenicol and N-(2-p-nitrophenethyl)c
81 l- and O(6)-cycloalkylguanines were weak AGT inactivators compared with O(6)-allylguanine (IC(50) = 8
82 nd inactivation rate constant at an infinite inactivator concentration are 0.87 microM and 0.039 minu
83 nd inactivation rate constant at an infinite inactivator concentration are 2.19 microM and 0.0056 min
84          For the inactivation of CYP3A4, the inactivator concentration at the half-maximum rate of in
85                 For CYP3A5 inactivation, the inactivator concentration at the half-maximum rate of in
86 mechanisms of hOAT by two well-known GABA-AT inactivators (CPP-115 and OV329).
87 enzylguanine, the prototype alkyltransferase inactivator currently in clinical trials.
88 ages, we pretreated mice with the macrophage inactivators/depeleters gadolinium chloride (7 mg/kg, in
89 only the expected decrease by the macrophage inactivators/depleters, but also an apparent increase in
90 O6-(4-bromothenyl)guanine is the most potent inactivator described to date with an IC50 of 0.1 nM.
91                                     The PAD4 inactivators described herein will be useful pharmacolog
92 omethyl group and provide a basis for future inactivator design.
93    The R244S mutation affects beta-lactamase inactivators differently, but resistance can be overcome
94 via the mitogen-activated protein kinase p38 inactivator dual specificity phosphatase 1.
95 th ventricle pretreatment with the astrocyte inactivator fluorocitrate.
96 acetylene (tBPA) is a potent mechanism-based inactivator for cytochrome P450 2B4 (P450 2B4) in the re
97 xplored as a heme ligand and mechanism-based inactivator for the design of cytochrome P450 inhibitors
98 mples of fully characterized mechanism-based inactivators for an aspartyl protease and show promise a
99 similar strategy may provide highly specific inactivators for other protein kinases as well.
100 uation are novel SERMs, aromatase inhibitors/inactivators, gonadotrophin-releasing hormone agonists,
101 otide exchange factors; GEFs) and Rho GTPase inactivators (GTPase-activating proteins; GAPs), we find
102             We have used two mechanism-based inactivators, guanabenz and NG-amino-L-arginine, to alte
103            Recombinant expression of the TAP inactivator ICP47 by adenoviral-mediated transduction wa
104                 OP, a metal chelator and p53 inactivator in cell free systems, however, induces p53 t
105 3(Al), DUT-5, and MIL-110 were tested as PPO inactivators in apple juice by enzyme-MOF interactions a
106 w approach for the design of mechanism-based inactivators in general.
107                                          The inactivator is particularly effective at pH 9.0, with a
108 ble mechanism for inactivation by one of the inactivators is proposed.
109         The value of k(inact)/K(i) for these inactivators is strongly dependent on the leaving group.
110 igabatrin, a GABA aminotransferase (GABA-AT) inactivator, is used to treat infantile spasms and refra
111 e 4-carbon acid is the best substrate-analog inactivator known to date for PDHc, more potent than eit
112 ost potent irreversible, mechanism-based PHM inactivator known.
113  and psoralen (P)] tested as mechanism-based inactivators (MBIs) of purified reconstituted cytochrome
114 al design effort to discover mechanism-based inactivators (MBIs).
115 ased on mechanisms of known aminotransferase inactivators: Michael addition, enamine addition, and fl
116  prior intranigral injection of the receptor inactivator N-ethoxy-carbonyl-2-ethoxy-1,2-dihydroquinol
117 iously unknown class of potential PLP enzyme inactivators; namely, a family of quaternary, alpha-(1'-
118 on, indicating that GDP-2F-Fuc is neither an inactivator nor a slow substrate.
119  result of the liberation of the more potent inactivators, O(6)-benzylguanine and O(6)-benzyl-2'-deox
120                      (S)-Epoxypropane was an inactivator of (R)-epoxypropane carboxylation by compone
121 onents I- III, while (R)-epoxypropane was an inactivator of (S)-epoxypropane carboxylation by compone
122             Finasteride is a mechanism-based inactivator of 5alpha-reductase type 2 with subnanomolar
123 lcholinesterase (AChE), the primary synaptic inactivator of acetylcholine.
124               DEA has been believed to be an inactivator of AdoHcyase, but this study indicates that
125            O6-Benzylguanine (BG) is a potent inactivator of AGT, resulting in an increase in the sens
126 tibacterial activity and is a time-dependent inactivator of all purified Gram-positive bacterial alan
127 amino-L-arginine (NAA) is a metabolism-based inactivator of all three major nitric-oxide synthase (NO
128 kinase phosphatase that functions as both an inactivator of and a nuclear anchor for ERK2 in mammalia
129 ted earlier as a potent active site-directed inactivator of bovine liver enoyl-CoA hydratase (ECH).
130 me- and concentration-dependent irreversible inactivator of bovine plasma amine oxidase (BPAO), exhib
131 , 4) and was found to be an even more potent inactivator of BPAO than 1, exhibiting a 5 min IC(50) of
132                               Its role as an inactivator of C3b and C4b deposited on self-tissue is h
133  from binding to Trp3, and calmidazolium, an inactivator of Ca(2+)/CaM.
134 irus p35 protein, the broad spectrum suicide inactivator of caspases.
135 a potent peroxidase-mediated mechanism-based inactivator of COX-1 only (k(inact) = 0.069 +/- 0.004 s(
136 B) is a relatively selective mechanism-based inactivator of cytochrome P450 2B1, that partitions betw
137  the quad pill includes cobicistat (COBI; an inactivator of cytochrome P450 isoenzyme CYP3A without a
138 t-Butyl acetylene (tBA) is a mechanism-based inactivator of cytochromes P450 2E1 and 2E1 T303A; howev
139 e data suggest that caspase-3 is the primary inactivator of DFF45/ICAD and therefore the primary acti
140          Eniluracil (776C85) is an effective inactivator of dihydropyrimidine dehydrogenase that allo
141                Eniluracil (776C85), a potent inactivator of dihydropyrimidine dehydrogenase, allows f
142 ne arm of a paired study with eniluracil, an inactivator of dihydropyrimidine dehydrogenase, enabling
143          Eniluracil is being developed as an inactivator of dihydropyrimidine dehydrogenase, the enzy
144 ations revealed that BES is a time-dependent inactivator of dithiothreitol-reduced 2-KPCC, where the
145 racterized as a time-dependent, irreversible inactivator of epoxide carboxylase activity that is prop
146 lepoxypropane, a time-dependent irreversible inactivator of epoxide carboxylase activity, suggesting
147 s found to be a time-dependent, irreversible inactivator of epoxyalkane-degrading activity.
148 (IP-dUMP) is a mechanism-based, irreversible inactivator of Escherichia coli thymidylate synthase (TS
149  These data suggest that plasmin is a potent inactivator of factor Va and that region 307-348 of the
150 otein Signaling-14 (RGS14), an intracellular inactivator of G protein-coupled receptor (GPCR) signali
151 ter potency than that of vigabatrin, a known inactivator of GABA-AT and approved drug (Sabril) for th
152 d in the series is 8 times more efficient an inactivator of GABA-AT than vigabatrin, the only FDA-app
153 BA-AT than vigabatrin, the only FDA-approved inactivator of GABA-AT.
154 K, and AKT are inhibited by pertussis toxin (inactivator of Gi proteins) and by DPCPX (A1-selective a
155 hate is an active site-directed irreversible inactivator of GlmS from Escherichia coli (kinact/KI = 1
156 n isozyme-selective and active site-directed inactivator of glutathione S-transferase (GST).
157 ) was identified as a potent mechanism-based inactivator of hOAT while showing excellent selectivity
158            O6-Benzylguanine (BG) is a potent inactivator of human AGT (ED50 of 0.1 microM) that is cu
159 e demonstrate that itaconyl-CoA is a suicide inactivator of human and Mycobacterium tuberculosis MCM,
160 e (1) was found to be a selective and potent inactivator of human OAT (hOAT), which inhibited the gro
161 es as a robust and efficient mechanism-based inactivator of ICL1 (k(inact)/K(I) = (1.3 0.1) x 10(3) M
162 entration-, and NADPH-dependent irreversible inactivator of iNOS.
163  that citral is an effective mechanism-based inactivator of isozyme 2B4, with a KI of 44 microM as de
164 f benzene-dependent O2 consumption and as an inactivator of ISPNAP.
165 y bioavailable, mechanism-based irreversible inactivator of LSD1.
166 een to act as a time-dependent, irreversible inactivator of lysine decarboxylase from Hafnia alvei.
167 demonstrate that RiBi impairment is a robust inactivator of MCL1 and an additional proapoptotic mecha
168                                  Dusp1 is an inactivator of mitogen-activated protein kinase (MAPK),
169 opyl)glycine (CPG) acts as a mechanism-based inactivator of MSOX.
170 yl-d-isocitrate (2-VIC) as a mechanism-based inactivator of Mtb ICL1 and ICL2.
171 structs expressing the temperature-sensitive inactivator of neuronal function Shibire(ts1), and for t
172   Guanabenz, a metabolism-based irreversible inactivator of neuronal nitric-oxide synthase (nNOS) in
173 ted substrate analogue designed as a suicide inactivator of nucleophile-assisted C-C bond formation.
174        O(6)-Benzylguanine is an irreversible inactivator of O(6)-alkylguanine-DNA alkyltransferase cu
175 ha-difluoromethylornithine (DFMO), a suicide inactivator of ODC, in the drinking water from birth, th
176 inction of a class of compounds acting as an inactivator of one amine oxidase family and a pure subst
177 dine, a potent and bioavailable irreversible inactivator of PAD4.
178 ructural characterization of a high affinity inactivator of PAI-1.
179     For example, Z-Phe-Gly-CH(2)-X is a poor inactivator of papain when X is OCOCH(3) (k(inact)/K(i)
180 rt the first metabolism-dependent, selective inactivator of PGHS-2.
181                         As a mechanism-based inactivator of PLP-enzymes, (S)-4-amino-4,5-dihydro-2-th
182 carbonitrile was found to be an irreversible inactivator of PncA, with a kinact/KI of 975 M(-1) s(-1)
183 ridium difficile toxin B (CdTxB), a specific inactivator of Rho-GTPases, significantly blocked KSHV e
184 lostridium botulinum C3 exotoxin, a specific inactivator of RhoA family members.
185 ablishes that F(2)CDP is a substoichiometric inactivator of RNR.
186               Importantly, treatment with an inactivator of ROS reversed the T-cell suppressive funct
187 toxin 3-nitropropionic acid, an irreversible inactivator of succinate dehydrogenase, forms a covalent
188 ransferase (NAT) was first identified as the inactivator of the anti-tubercular drug isoniazid.
189                 O6-Benzylguanine is a potent inactivator of the DNA-repair protein, O6-alkylguanine-D
190 lic acid was identified as a mechanism-based inactivator of the enzyme [K(i) = 38.1 +/- 6.0 microM an
191 VG is both a substrate and a mechanism-based inactivator of the enzyme, but the partition ratio, k(ca
192 ity that is proposed to be a mechanism-based inactivator of the enzyme.
193 lcyclopropylamine (1-PCPA) is shown to be an inactivator of the fungal flavoenzyme monoamine oxidase
194  elimination reactions, is not a significant inactivator of the medium-chain dehydrogenase.
195 and synthesis of a potential mechanism-based inactivator of the protein.
196 -vinylGABA) is known to be a mechanism-based inactivator of the pyridoxal phosphate (PLP)-dependent e
197 activity of the Arg substrate p190RhoGAP, an inactivator of the RhoA GTPase.
198 at aminoguanidine (AG) is a metabolism-based inactivator of the three major isoforms of nitric-oxide
199  inhibitors, neuroserpin is a more effective inactivator of tPA than of urokinase-type plasminogen ac
200 MTS-galactose derivatives behave as affinity inactivators of a functional mutant with Ala(122)-->Cys
201 s containing a central b(6)G are more potent inactivators of AGT than b(6)G.
202  Drug Administration-approved small molecule inactivators of any serpins.
203 b and select metabolites are mechanism-based inactivators of AOX1, provides insights into the mechani
204  beta-PAD and 6 beta-PED are mechanism-based inactivators of aromatase.
205              The covalent 2'-deoxynucleoside inactivators of CD38 are powerful inhibitors by acting a
206  MBL-fold domain and were first described as inactivators of common B-lactam antibiotics.
207  MBL-fold domain and were first described as inactivators of common beta-lactam antibiotics.
208 retinylamine analogs as active-site directed inactivators of constitutively active mutants of rhodops
209 ersible reactive "warheads" of vinyl sulfone inactivators of cruzain.
210 se (GABA-AT) inactivator vigabatrin were not inactivators of GABA-AT.
211 ntanoic acids, were synthesized as potential inactivators of GABA-AT.
212  vigabatrin and as potential mechanism-based inactivators of gamma-aminobutyric acid aminotransferase
213 Env gp120 encounter by peptide triazole (PT) inactivators of HIV-1.
214 d mechanism is proposed in which the amidine inactivators of iNOS bind as does substrate L-arginine,
215 oic acid, were NADPH-dependent, irreversible inactivators of iNOS.
216 ed from indoline resulted as the most potent inactivators of lipoxygenase, with IC50 values of 41.4 a
217 clopropylamines can serve as mechanism-based inactivators of LSD1.
218 and shown to be time-dependent, irreversible inactivators of monoamine oxidase B (MAO B).
219 30A mutant were inactivated with three known inactivators of monoamine oxidase, namely, phenylhydrazi
220 own for the first time that the irreversible inactivators of nNOS, perhaps through covalent alteratio
221 H and were more than 200-fold less active as inactivators of O(6)-alkylguanine-DNA alkyltransferase (
222 he study of small molecules as inhibitors or inactivators of OAT or as a method to determine OAT acti
223 ribed here could be applied to the design of inactivators of other heme-dependent enzymes.
224   We have synthesized (acyloxy)methyl ketone inactivators of papain, cathepsin B, and interleukin-1be
225 g N-alkylmaleimides were only time-dependent inactivators of PGHS, suggesting that the carboxylate is
226 probes are active site-directed irreversible inactivators of PTPs and form a covalent adduct with PTP
227 pyrones which are nonselective, irreversible inactivators of serine hydrolases.
228 a-lactams, and N-acyl beta-sultams are novel inactivators of the class C beta-lactamase of Enterobact
229 (7) are shown to be as potent or more potent inactivators of the human DNA repair protein O6-alkylgua
230 as competitive inhibitors and as mechanistic inactivators of the inducible isoform of NOS (iNOS).
231  inactivated by 17EE or efavirenz, which are inactivators of the wild-type enzyme.
232 ne 5'-diphosphate (FMCDP) are time dependent inactivators of this protein, with approximately 1.5 equ
233 tion of mTORC1 signaling, demonstrating that inactivators of TR3 represent a novel class of mTORC1 in
234 reviously reported to be inhibitors, but not inactivators, of GABA-AT.
235  signal for macrophages) and PD-L1 (a T-cell inactivator) on their surface.
236 nism, makes the design of new beta-lactamase inactivators or beta-lactamase-stable beta-lactams all t
237 se of raloxifene, any aromatase inhibitor or inactivator, or fenretinide to lower the risk of develop
238                                  These novel inactivators owe their potency to an S-farnesylcysteine
239 s the enzyme from inhibition by the covalent inactivator p-fluorosulfonylbenzoyl 5'-adenosine at 0.5
240 this protocol can be easily adapted to other inactivators, P450 isoforms, substrates and plate reader
241 ex formation between the PKC isozyme and the inactivator peptide.
242 lts provide evidence that the N-biotinylated inactivator peptides are active-site affinity labels of
243                                          The inactivator peptides most likely function by S-thiolatin
244 r intranigral injection of the Gi-Go-protein inactivator pertussis toxin (1 mg/ml 0.9% NaCl 24 h befo
245 ctors which contribute to their substrate vs inactivator properties.
246 in cell-free extracts by the mechanism-based inactivator propyne, suggesting that it is the catalytic
247 s unusual selectivity toward mechanism-based inactivators provides additional discrimination between
248 activator (PI3-kinase) and a globally acting inactivator (PTEN or a similar phosphatase) are coordina
249                       We conclude that these inactivator reactions mainly involve motion of the pseud
250  NPS-2143 are allosteric CaSR activators and inactivators, respectively, that ameliorate signaling di
251  between the action of the activator and the inactivator results in a spatially oriented persistent s
252  and EP4, Akt, small GTPase RalA and Ral.GTP inactivator RGC2.
253 constitute a new category of mechanism-based inactivators selective for lysyl oxidase.
254 e if this is a general phenomenon of GABA-AT inactivators, several mono- and di-halogen-substituted c
255 ll known affinity labels and mechanism-based inactivators should allow the procurement of a wide rang
256            Titrations with the phosphorylase inactivator showed that stimulation of glycogen synthesi
257                              Mechanism-based inactivators such as bergamottin are useful chemical too
258 us structure of LacY with a covalently bound inactivator suggests that the galactopyranoside must be
259 ptible" to inhibition by the mechanism-based inactivators tazobactam, sulbactam, and clavulanic acid.
260  2B4 covalently bound to the mechanism-based inactivator tert-butylphenylacetylene (tBPA) has yielded
261 yguanosine were more potent alkyltransferase inactivators than the parent nucleoside.
262 alues, and primary aldehydes are more potent inactivators than the structurally related secondary and
263 The 4-substituted analogues were more potent inactivators than the unsubstituted analogue, indicating
264 ein phosphatase 5 (PP5) was identified as an inactivator that associates with Raf-1 on growth factor
265 te activation to itaconyl-CoA, a MUT suicide inactivator that forms an adduct with adenosylcobalamin.
266 esents the first example of an peptide-based inactivator that fully distinguishes between these two c
267 se data reveal that p35 is a mechanism-based inactivator that has adopted an inhibitory device remini
268 t adduct between enzyme and a portion of the inactivator that includes the CoA nucleotide.
269 ) is a potent inhibitor and reversible redox inactivator that reacts with MCRred1 to form an EPR-acti
270 ion mechanism for CPP-115, a mechanism-based inactivator that undergoes GABA-AT-catalyzed hydrolysis
271 1 exists that is vulnerable to inhibition by inactivators that bind at the vitronectin binding site.
272 ormational constraint has a larger effect on inactivators that inactivate by a Michael addition mecha
273         Experiments with two mechanism-based inactivators that target the FAD of the medium- and shor
274 rs a basis for the design of selective COX-1 inactivators that work through a mechanism-based event a
275 analysis of a carbocyclic mechanism-based GH inactivator, the results of which show that the two Mich
276   As a result of inhibition of the cytosolic inactivator, the translocated PTPase expresses full acti
277 nd in contrast to previously described PAI-1 inactivators, these compounds inactivate PAI-1 in the pr
278 tization and sensitivities to activators and inactivators; they can also have different intracellular
279 e supports covalent attachment of the 1-PCPA inactivator to the cofactor as N(5)-3-oxo-3-phenylpropyl
280 earrangement that leads to attachment of the inactivator to the PLP, which is bound to the protein (S
281 difications include the addition of an RNase inactivator to the reaction mixture, elimination of a si
282 first time in a study of an aminotransferase inactivator to validate the noncovalent interactions bet
283          Other metabolism-based irreversible inactivators to nNOS, N(G)-methyl-L-arginine, and N(5)-(
284 ogues of the GABA aminotransferase (GABA-AT) inactivator vigabatrin were not inactivators of GABA-AT.
285 nvestigating cytochrome P450 mechanism-based inactivators; we use the example of CYP2B6 and bergamott
286  inhibitors although several mechanism-based inactivators were identified.
287  = 2.5 M(-)(1) s(-)(1)) but becomes a potent inactivator when X is OCO-L-Leu-Z (k(inact)/K(i) = 11 00
288 hat chlorovinyl-H3 is a mechanism-based LSD1 inactivator whereas endo-cyclopropylamine-H3 does not sh
289 m, 14 was identified as a new selective hOAT inactivator, which demonstrated a potency 22x greater th
290 esidue stabilizes the pyridinium form of the inactivator, which has enhanced reactivity toward the ac
291 veral reversible inhibitors and irreversible inactivators, which have been used to implicate one or m
292 thyl)-L-ornithine amide (Cl-amidine), a PAD4 inactivator with enhanced potency.
293 sly identified mechanism-based, irreversible inactivator with moderate nNOS selectivity.
294 s enantiomers are relatively modest covalent inactivators with kobs/[I] = 46 M-1 s-1 for the R enanti
295 nitrosylation in the incubation of S-nitroso inactivators with papain was excluded.
296                                  A series of inactivators with the general structure Fmoc-L-Asp-CH(2)
297 ), octenoyl-CoA (product), and octynoyl-CoA (inactivator) with medium chain acyl-CoA dehydrogenase (M
298 loalkenylguanines proved to be excellent AGT inactivators, with 1-cyclobutenylmethylguanine (IC(50) =
299 her modest residence time or a contaminating inactivator within an inhibitor sample, in either case p

 
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