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1 e/threonine kinase, completely abrogated its catalytic activity.
2 evaluation of the effect of the order on ORR catalytic activity.
3 omains with the kinase core, thus preventing catalytic activity.
4 ellar framework contribute to the ultra-high catalytic activity.
5 the substituent in the ylide-backbone on the catalytic activity.
6 reas the dimerization appeared to compromise catalytic activity.
7 e a general acid-base role, minimally affect catalytic activity.
8 s dependent on angiotensin-converting enzyme catalytic activity.
9 s and partly plays their role independent of catalytic activity.
10 he surface of Pd nanocubes to maximize their catalytic activity.
11 light irradiation, which is responsible for catalytic activity.
12 nal switch that allosterically modulates the catalytic activity.
13 hat nucleosome binding potently inhibits its catalytic activity.
14 onic stem cells that completely removes PRC1 catalytic activity.
15 gests that Ca(2+) binding is relevant to the catalytic activity.
16 lease through a mechanism that requires Hrq1 catalytic activity.
17 out any appreciable loss in particle size or catalytic activity.
18 ecific loop amino acid residues in mediating catalytic activity.
19 l of crossover numbers without requiring its catalytic activity.
20 ible for the changes in the external surface catalytic activity.
21 ctive effect is strictly dependent on Set1's catalytic activity.
22 autoinhibitory state, which has low "basal" catalytic activity.
23 arrangements of the DNA correlating with low catalytic activity.
24 (-1) , as well as good stability and durable catalytic activity.
25 ules, some of which possess (perhaps slight) catalytic activity.
26 ndent protein kinase A (PKA) pathway and PKA catalytic activity.
27 ting that the TM is not essential for enzyme catalytic activity.
28 ss of these substrates that have interesting catalytic activity.
29 sites are essential for FePc to achieve high catalytic activity.
30 in to DNA, which in turn is required for the catalytic activity.
31 many of these same residues are required for catalytic activity.
32 ite surface for assembly, which silences its catalytic activity.
33 d SAUR binding but had no apparent effect on catalytic activity.
34 tidine residues that play a critical role in catalytic activity.
35 roperties of different components to promote catalytic activity.
36 ycomb-mediated gene repression requires PRC1 catalytic activity.
37 mechanism of action and factors controlling catalytic activity.
38 's oncogenic potential is independent of its catalytic activity.
39 es is key for tuning product selectivity and catalytic activity.
40 r, calculations show a significantly reduced catalytic activity.
41 ing a nonallosteric enzyme that retains full catalytic activity.
42 oordinated Ca(2+) but exhibited little or no catalytic activity.
43 s further correlated Omega-loop opening with catalytic activity.
44 dependent of its cytoplasmic tail and of its catalytic activity.
45 display hypomorphic function in an assay of catalytic activity.
46 istinct structural elements influence enzyme catalytic activity.
47 cent to a (His)(3) metal binding site alters catalytic activity.
48 active site plays an important role for the catalytic activity.
49 in the triple mutant and investigated their catalytic activities.
50 Cu(I), making them interesting for redox and catalytic activities.
51 em on individual columns, separating the two catalytic activities.
52 TET inhibitor that specifically blocks their catalytic activities.
61 , and show that this function depends on its catalytic activity and ability to interact with Mhf1-Mhf
62 id metals render this possible as they offer catalytic activity and an ultrasmooth templating interfa
63 n mode in Pd/COF-DB endows it with excellent catalytic activity and cyclic stability as a heterogeneo
64 ogeneity of active-site loops in controlling catalytic activity and directing evolutionary trajectori
65 n in chloroplast biogenesis unrelated to its catalytic activity and driven by a moonlighting function
67 classes in S. cerevisiae, we perturb Pol II catalytic activity and GTF function and analyze their ef
68 activated BTK, even in the absence of BTK's catalytic activity and independently of enhanced PLCgamm
69 n experiments demonstrated that both FANCJ's catalytic activity and interaction with BRCA1 are import
70 strong acidity of nanoboxes, provided superb catalytic activity and longevity in hydrocarbon cracking
71 to create orthogonal MTs possessing improved catalytic activity and selectivity for cxSAM, with subse
72 N(4) active sites have exhibited exceptional catalytic activity and selectivity for the electrochemic
75 tions, little is known with regards to their catalytic activity and stability during aqueous ROMP.
77 o interact with specific AHL, increase their catalytic activity and stability, or enhance their biote
79 effect of disulfide formation on PKARIalpha catalytic activity and subcellular localization, live-ce
81 hat the examined domain supports Pol epsilon catalytic activity and symmetric movement of replication
82 pha(o) over Galpha(i) as a substrate for its catalytic activity and that M(2)R signals preferentially
83 idues involved in metal ion binding impaired catalytic activity and the formation of active hexamers.
86 tages may include significant enhancement in catalytic activity and/or selectivity and substantial re
87 during stress, which adversely affect their catalytic activities, and that PIMT repairs the isoAsp r
90 oid-inducible kinase 1 (SGK1) transcription, catalytic activity, and phosphorylation are upregulated
91 which typically use ssDNA binding to enhance catalytic activity, and suggests that the C-terminal reg
93 ling properties of these molecules and their catalytic activity as ligands in copper-catalyzed azide
94 als with 16 isoforms that differ in terms of catalytic activity as well as cellular and tissue distri
96 2) The doping of CeO(2) with Ni improves the catalytic activity because the NiO participates in the c
97 5, and phosphomimetic mutations enhance Set5 catalytic activity but diminish its ability to interact
98 ontaining PKARIalpha was not found to impact catalytic activity, but instead led to enhanced AKAP (A-
99 erminal lysine doublet which likely augments catalytic activity by increasing the positive electrosta
101 er numerous degrees of freedom for enhancing catalytic activity by tailoring their physicochemical pr
102 aryl and alkyl amines, but notably enhanced catalytic activity can be realized with challenging N-al
103 mimetic nanostructures possessing intrinsic catalytic activity circumvent various limitations of nat
104 flat oxide surfaces such as CeO(2)(111) have catalytic activities comparable to those of molecular co
105 2 protein expression and sulfamethazine NAT2 catalytic activity correlated highly across the cryopres
108 , the effect of transition metal alloying on catalytic activity differs from reaction to reaction.
109 tionally, while Mn2+ accelerates the overall catalytic activity, dsDNA length-dependent dimerization
110 metals and their related materials show poor catalytic activity due to a broadened single resonance d
111 all fraction of the assembled ligases retain catalytic activity due to the presence of disabling muta
112 l electrocatalysts because of their superior catalytic activities during the oxygen-reduction and -ev
114 , yielded a panel of optoPLDs whose range of catalytic activities enables mimicry of endogenous, phys
116 hat the Mo(2)N nanobelt cathodes had similar catalytic activities for H(2) evolution compared to that
117 -index facets is favorable for improving the catalytic activity for all three classes of reactions st
118 s containing six branches showed significant catalytic activity for copper sulfate mediated cycloaddi
120 d the 3D alloy electrocatalyst exhibits high catalytic activity for NH(3) production with a yield rat
123 ng a rationale for targeting EZH2 beyond its catalytic activity for overcoming cisplatin resistance i
124 ed by successive infiltration to have higher catalytic activity for soot combustion than the Ni-impre
125 CeO(2) on the physicochemical properties and catalytic activity for soot combustion was studied.
126 nstrated nearly an order of magnitude higher catalytic activity for the breakdown of a chemical warfa
127 es with a size range of 79-200 nm and showed catalytic activity for the degradation (in high yields)
128 fective elements dramatically gave excellent catalytic activity for the oxygen evolution reaction in
130 ysis shed light on the origins of the varied catalytic activities found in metazoan CCDs, opening the
131 the conductivity (from polypyrrole -PPy) and catalytic activities (from manganese dioxide -MnO(2)) we
132 alian development, and the inhibition of its catalytic activity has been extensively studied for canc
133 one of the core particle (CP) subunits with catalytic activity, has been shown to be incorporated in
134 hat the active site metal ions essential for catalytic activity have a secondary structural role medi
135 l nanocrystals with integrated plasmonic and catalytic activities hold great promise for analyzing ch
136 al understanding of all processes leading to catalytic activity, i.e., light absorption, charge separ
137 erated immobilized pectinase showed enhanced catalytic activity, improved operational stability, and
138 on the NP surface also lead to an increased catalytic activity, improving the sensitivity of the NP
140 s where the variants still retain sufficient catalytic activity in both directions: An inflection app
144 contention that role of Fe(3+) in enhancing catalytic activity in Ni oxide catalysts arises from its
145 ly-ubiquitin chains of >= Ub3 stimulate TDP2 catalytic activity in nuclear extracts and enhance TDP2
148 found vital for imparting high stability and catalytic activity in the dry reforming of methane.
149 near nakedness of the cation results in high catalytic activity in the hydrosilylation of 1-hexene an
150 P-1 binds to snoRNAs, which stimulate PARP-1 catalytic activity in the nucleolus independent of DNA d
154 ing lead to a unique temperature dependence: catalytic activity increases as temperature decreases in
156 atalyzes cellulose synthesis and whether its catalytic activity influences efficient CSC transport at
157 f N-MYLK domain (amino acids 1-919 devoid of catalytic activity) into Mylk-L(-/-) EC rescued SOCE to
160 compromise the stability of the protein, the catalytic activity is decreased, or a combination of bot
161 associated with Sts-1 and indicate that this catalytic activity is linked to specific cell-signaling
162 structural basis for the regulation of their catalytic activity is not fully understood, and RPTPs ar
165 the possibility that the inhibition of their catalytic activities might not be sufficient per se to b
166 Biochemical analysis has now identified the catalytic activities of all enzymes encoded by the 34 TP
167 Tight regulation of the cellular levels and catalytic activities of HO1 and HO2 is important for mai
170 owever, nonhistone substrates and additional catalytic activities of SIRT6, including long-chain deac
174 w an adaptor can simultaneously modulate the catalytic activity of a AAA+ enzyme, efficiently promote
176 ortant in determining a tradeoff between the catalytic activity of a MOF and its resistance to unzipp
177 of Galpha regulation by RGS, we examine the catalytic activity of all canonical human RGS proteins a
178 entered at -140 mV Vs Ag/AgCl confirming the catalytic activity of anammox bacteria towards the elect
179 he regulation of ubiquitin signals, and both catalytic activity of and target recruitment by DUBs nee
181 electron density of pyridines modulates the catalytic activity of Au(III) complexes in propargyl est
183 s to propose a mechanism explaining the high catalytic activity of bismuth to reduce these families o
186 due near the active site participates in the catalytic activity of Cd-SrtB and also SrtB from Staphyl
187 e cell imaging, we found that inhibiting the catalytic activity of CESA6 by ES20 treatment reduced th
190 eposition of methylation marks relies on the catalytic activity of DNA methyltransferases (DNMTs), an
192 Owing to the unique electronic structure and catalytic activity of Fe-N-C SACs, large amounts of ROS
194 Being a putative ribosyltransferase, the catalytic activity of HopO1-1 is required for regulation
201 HD11 associates with the OGDHc and maintains catalytic activity of lipoyl domain by preventing the fo
202 nature of active sites, nanostructures, and catalytic activity of M-N-C catalysts at the atomic scal
203 in the extracellular matrix is regulated by catalytic activity of matrix metalloproteinases MMP-2,9.
204 ns up a new avenue to dramatically enhancing catalytic activity of metal oxides for other application
206 w electrostatics can be employed to tune the catalytic activity of metalloenzymes and can thus contri
209 gs highlight an important, but unrecognized, catalytic activity of mineral nanoparticles produced by
210 e ability to use internal strain to increase catalytic activity of MOFs suggests that applying this s
213 nce (HTRF)-based enzyme assay to measure the catalytic activity of N(6)-methyladenosine (m(6)A) methy
219 ly unknown regulatory mechanism by which the catalytic activity of OTUD3 is tightly controlled to ens
222 lation events that lead to activation of the catalytic activity of phosphoinositide 3-kinase (PI3K),
223 w that SULT4A1, by negatively regulating the catalytic activity of Pin1 toward PSD-95, facilitates NM
224 no acids that potentially participate in the catalytic activity of plant CESA6, in addition to previo
227 fied as albumin, does not interfere with the catalytic activity of soluble receptor at saturating rec
230 response in the lung were dependent upon the catalytic activity of the enzyme, as a catalytically ina
232 -toxic chemical probe UNC0638 to inhibit the catalytic activity of the histone methyltransferases EHM
233 function theory calculations reveal that the catalytic activity of the main-group metals (Mg, Al and
235 systemic application of an inhibitor for the catalytic activity of the Rho GEF Vav2 at the organismal
237 ng receptor concentrations and amplifies the catalytic activity of the soluble receptor at a concentr
239 ng with our labeled inhibitors, we show that catalytic activity of these enzymes is not required for
240 5 nm L1(0)-CoMPt NPs, we could push the ORR catalytic activity of these NPs toward the optimum regio
241 obilized pectinase demonstrated the enhanced catalytic activity of this enzyme after immobilization.
242 culations provided a deeper insight into the catalytic activity of this new family of non-canonical,
243 dings highlight a potential link between the catalytic activity of topoisomerases and the fundamental
247 es in our understanding of the structure and catalytic activity of viperin, together with studies inv
248 icrostructure and dimensions-and thereby the catalytic activity-of the nanofibres were controlled thr
249 ecently demonstrated that DspB has increased catalytic activity on de-N-acetylated PNAG oligosacchari
250 protein scaffold of DIMT1, regardless of the catalytic activity on m(2) (6,6)A in 18S rRNA, is essent
253 cyclability of 1-OTf-Pd(NP) and its superior catalytic activity over the homogeneous counterparts.
254 Unlike PKM1, which has constitutively high catalytic activity, PKM2 is under complex regulation.
256 chemical adsorption with active species and catalytic activity promotes conversion processes, suppre
257 elated to photosynthesis, metabolic process, catalytic activity, protein phosphorylation, kinase acti
258 require metabolic cofactors to support their catalytic activities, providing a direct path for fluctu
259 es occupy target sites independently of PRC1 catalytic activity, providing a putative mechanism for P
262 nomaterials was chiefly responsible for this catalytic activity, rather than through the conventional
264 CA2a(WT)) and SERCA2a mutants with different catalytic activity revealed that an intact catalytic cyc
265 ses while on ibrutinib, which inhibits BTK's catalytic activity, revealed several mutations in BTK, m
267 tificial enzyme model (AEM) as it mimics the catalytic activity similar to enzyme alcohol dehydrogena
268 sure the DNA-binding specificity (Spec-seq), catalytic activity specificity (SEAM-seq) and cleavage e
269 ppress the peptidyl transferase center (PTC) catalytic activity stimulated by eukaryotic release fact
270 s at the single particle level showed higher catalytic activity, stronger adsorption strength, and hi
271 Here it is demonstrated that the inverse catalytic activity-structural stability relation can be
272 distribution (in micro- vs. mesopores), and catalytic activity suggest nearly invariant structure an
274 phase olefin metathesis and exhibited higher catalytic activity than the corresponding catalysts synt
275 tric organo/photocatalyst has shown a better catalytic activity than those presenting a C(2) symmetry
276 nality can play a crucial role in tuning the catalytic activity that is observed and that advanced th
277 here is strong interest in stimulating SIRT1 catalytic activity, the homeostasis of SIRT1 at the prot
278 surface Bi is highly favorable for improving catalytic activity, there is little influence from trans
279 bility to bind penicillin, rather than their catalytic activity, these key targets are called penicil
280 with binding ability to specific targets and catalytic activities to gain signals are known to be ide
282 ons of SIRT6 with a focus on attributing its catalytic activity to its proposed biological functions.
283 ular probes that respond to disease-specific catalytic activity to produce a diagnostic readout, as w
284 howed that the Bi electrode exhibited a high catalytic activity to reduce alachlor, a chlorinated her
287 f the gamma-secretase complex as well as its catalytic activity toward its substrate Notch, a critica
288 rot fungus adsorption and its direct electro-catalytic activity toward oxygen reduction was investiga
291 mimics (named LM nanozymes) with a superior catalytic activity was successfully prepared by using gl
293 inhibitor GTP binding and inhibition of GDH catalytic activity. We further show that the binding of
294 NO-CCSD(T)) calculations, both stability and catalytic activity were investigated for Rh single atoms
295 enzymes often show dramatic changes in their catalytic activity when subjected to chemically similar
296 PKM2, we used TEPP-46, which increases PKM2 catalytic activity while inhibiting any PKM2 signalling
297 eet morphology and regulate external surface catalytic activity while preserving micro- and mesoporos
298 cterial effectors frequently uncover diverse catalytic activities, while structure-informed similarit
299 ees C to enhance electronic conductivity and catalytic activity, while preserving its macrostructure.
300 ng the active site, we can rapidly switch on catalytic activity with light and monitor the ensuing dy