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1 sticizer syntheses, with high yield and TON (turnover number).
2 ot catalysis (E111F), exhibits a decrease in turnover number.
3 ydroxychalcones and dienes in high yield and turnover number.
4 position 512 critically affects transporter turnover number.
5 ), combine to yield the overall observed low turnover number.
6 , still more than a 100-fold slower than the turnover number.
7 in high yield at rates that exceed the BZDOS turnover number.
8 more fully reduce the enzyme do not slow its turnover number.
9 ming reaction significantly exceeds the NDOS turnover number.
10 other load-dependent rate exists, affecting turnover number.
11 dependent ATPase activity, albeit with a low turnover number.
12 age to the protein, and produce higher total turnover numbers.
13 s giving a longer-lived catalyst with higher turnover numbers.
14 ciency hydroxychlorination with thousands of turnover numbers.
15 es C, which agree well with the experimental turnover numbers.
16 cular sieves, manifested by higher catalytic turnover numbers.
17 is kinetically competent with the enzymatic turnover numbers.
18 detection window ranging from single to high turnover numbers.
19 oxidation reactions, in some cases with high turnover numbers.
20 rbon monoxide from CO2 selectively with high turnover numbers.
21 defluorinated with high conversions and high turnover numbers.
22 ees C, and at room temperature it exhibits a turnover number (0.07 s(-1)) comparable to bacterial DHN
25 merization of acetylenes and exhibits a high turnover number (4371), activity (1.05 x 10(6) g(PPA) mo
27 lipoyl protein domain had a 2-3-fold higher turnover number, a lower K(I) for NADH, and a higher K(I
30 al properties of D454C, i.e., a reduction in turnover number and a loss of voltage sensitivity, altho
31 reductase (Frd) is notable both for its high turnover number and for its production of substantial O2
32 4-, 5-, and 30-fold), as well as in both the turnover number and the catalytic efficiency, in that or
33 rve, is established between oxygen-reduction turnover number and the Lewis basicity of graphitic carb
35 methylstyrene (20 bar H2, 40 degrees C) with turnover number and turnover frequency of ca. 540 and 1.
36 hol substrates and the immobilized catalyst, turnover numbers and frequencies approach 2 000 and 4 00
37 ate and camphorsulfonic acid, gives the best turnover numbers and reactivity with the broadest range
38 h high selectivity and activity and achieves turnover numbers and turnover frequencies reaching 98,00
39 formation of CH3OBR2 or (CH3OBO)3 with TON (turnover numbers) and TOF (turnover frequencies) reachin
41 s of P450BM-3 due to its high affinity, high turnover number, and increased solubility as compared to
45 ned their ability to mediate enzymatic total turnover numbers approaching or exceeding that of the na
46 with O(2) is decreased >or=100-fold and the turnover number approximately 1000-fold thus verifying t
47 utA(Hh) and PutA(Hp) exhibit 100-fold-higher turnover numbers (approximately 30 min(-1)) than PutA(Ec
48 ratio and an order of magnitude increase in turnover number are achieved by simply altering the fram
49 s high as 22 and 13 s-1, respectively, these turnover numbers are only about 20% of those observed wi
50 the relative k(cat)/K(m) values, the maximum turnover numbers are similar, suggesting that the 2'-pho
51 It introduces the notion of the limiting turnover number as a second key element of catalyst benc
52 d FMN cofactors had about the same oxidation turnover number as did the holoenzyme, 7 min-1 FAD-1.
53 y spaced EcoRI sites is governed by the same turnover number as hydrolysis of parental pBR322, which
54 nge depending on the source of the IgMs, and turnover numbers as great as 2.1/min were observed, sugg
57 essive decreases in the maximum steady-state turnover number, as well as lower apparent rate constant
60 hylidene species and provide good yields and turnover numbers at relatively low catalyst loading (<50
61 o alkynes and cycloisomerizations, with high turnover numbers at room temperature or slightly elevate
65 um in absence of substrate and, in turn, the turnover number can be modulated with mutational- and os
67 r) or greater, a number that agrees with the turnover number derived from steady-state kinetic method
72 ducin can activate PDE to about one-half the turnover number for catalytic alphabeta dimers completel
74 generated CO with high selectivity, and its turnover number for CO formation reached 32 based on the
75 thiol-modified AuNPs by the enzyme, (iii) a turnover number for CtCDH immobilised on thiol-modified
80 ontrast to the single aspartate mutants, the turnover number for the double mutant was 500-fold lower
82 tion is 20-fold slower than the steady-state turnover number for the overall reaction, implying that
85 elatively stable GS-CH(2)F intermediate, the turnover numbers for a series of dihalomethanes fall in
88 iments, in conjunction with the steady-state turnover numbers for dCDP formation of 2-14 s(-1) at RNR
90 ecule levels demonstrate increased substrate turnover numbers for DNA nanocage-encapsulated enzymes.
92 erial enzymes, the diiron hydrogenases, have turnover numbers for hydrogen production from water as l
93 , are found to give extremely high rates and turnover numbers for n-alkane dehydrogenation, and yield
96 up to 92% ee and a 4-fold increase in total turnover number) for the production of (S)-salsolidine.
98 on was sustained for more than one week with turnover numbers greater than 6x10(5) and 3x10(6), respe
103 ange factor, but still hydrolyses GTP with a turnover number identical to that for wild-type Cdc42.
105 ed the catalytic nature of the process, with turnover numbers in excess of 5 and essentially quantita
112 dingly, we establish the following trend for turnover number (k(cat)) and catalytic efficiency (k(cat
118 respectively, values that corresponded to a turnover number (k(cat)) of 0.66 min(-1) and a catalytic
120 mM, with a V(max) of 7.9 +/- 0.3 mM min(-1), turnover number (k(cat)) of 6.7 x 10(-2) s(-1), and a ca
121 The Michaelis-Menten constant (k(m)) and turnover number (k(cat)) of purified total GSTs toward p
126 ization exchange, revealed that the enzyme's turnover number (k(cat)) was strongly correlated with pr
133 excellent transport substrate with apparent turnover number, K(m) and K(i) values of 5.8 s(-1), 4 mi
134 he key kinetic constants of these proteases, turnover number kcat and catalytic efficiency kcat/KM, a
138 schii AdoMetDC has a Km of 95 microm and the turnover number (kcat) of 0.0075 s(-1) at pH 7.5 and 22
139 outside-out orientation yielded a catalytic turnover number (kcat) of about 1 s(-1), a value that is
140 l findings that the impact is largely on the turnover number (kcat), with less substantial effects on
143 e compared these with the observed catalytic turnover numbers measured under steady-state conditions.
147 dendrimer with 12 phenylseleno groups has a turnover number of >60 000 mol of H2O2 consumed per mole
152 H(2) by methanolysis of phenylsilane, with a turnover number of 10(5) and a turnover frequency surpas
153 f H(2) production for up to 4 h with a total turnover number of 10(6) before photocatalytic activity
154 rk lifetime of more than 5 days and a record turnover number of 1094+/-61 molH2 (molNi )(-1) for a de
156 We demonstrated that syngas with a benchmark turnover number of 1330 and a desirable CO/H2 ratio of 1
159 Tn oligomers, NTP hydrolysis occurred with a turnover number of 20-25 min(-1) and the observed S0.5 v
160 length, NTP hydrolysis still occurred with a turnover number of 20-25 min(-1), but the observed S0.5
162 inyl-L,L-diaminopimelic acid of 1.3 mM and a turnover number of 200 s-1 in the presence of zinc.
163 lly, allylation proceeded efficiently with a turnover number of 2200 at room temperature, which is un
170 beled triphosphate-terminated poly(A) with a turnover number of 52 min-1 and converts ATP to ADP with
172 E. coli pyrophosphatase was found to have a turnover number of 570 s(-1) under the same conditions.
175 ction proceeds at a low driving force with a turnover number of 9 x 10(9) cell(-1) and turnover frequ
177 t room temperature, representing the highest turnover number of any Fe-based N2 silylation catalyst t
181 While TPX2 binding has no effect on the turnover number of AurA and does not change the reaction
184 state and is predicted to enhance the kinase turnover number of PKCalpha during a single membrane doc
189 gh level of expression and a relatively high turnover number of the efflux pumps in gram-negative bac
195 resent in excess is a key determinant of the turnover number of the G-quadruplex DNAzyme; decompositi
197 Mutations at position 179 also affected the turnover number of the ornithine carrier severely, imply
199 of the hydroxyl group of A621 inhibited the turnover number of the ribozyme significantly, this acti
203 ze the HDF of C(6)F(5)H with Et(3)SiH with a turnover number of up to 200 and a turnover frequency of
204 ng the catalyst-substrate interaction times, turnover numbers of (0.6-1.2) x 10(4) and (3.0-5.0) x 10
208 sterol 14alpha-demethylation with respective turnover numbers of 1.7 min(-1), 5.6 min(-1) and 3.4 min
209 ent hydrolysis of rATP, ddATP, and dATP with turnover numbers of 10, 20, and 36 min(-1), respectively
210 scal pressure led to yields as high as ~52%, turnover numbers of 100, and improved chemoselectivity f
211 - 2 microM, respectively, with corresponding turnover numbers of 2.08, 1.65, and 1.32 s(-1), respecti
217 iven hydroxylation of lauric acid with total turnover numbers of 935 and initial reaction rate of 125
218 al groups and displayed unprecedentedly high turnover numbers of approximately 2.5 x 10(6) and turnov
220 st activity, generating approximately 40,000 turnover numbers of H2 over 12 d (with respect to dye).
222 ng determination of the remarkable intrinsic turnover numbers of O2 (*-) to O2 by PEG-HCCs at >20,000
225 ns revealed a 15-20-fold decrease in overall turnover numbers of the hybrid modules as compared to th
227 e kinetic data were employed to simulate the turnover numbers of the various CBS-catalyzed reactions
230 Impressively, sal-Fe-MOF displayed very high turnover numbers of up to 145000 and was recycled and re
231 Q240A variant biocatalysts displaying total turnover numbers of up to 32,000 and space time yields u
232 catalyst loadings as low as 0.002 mol %, and turnover numbers of up to 43,000 were achieved without r
233 he Mg-functionalized MOF displayed very high turnover numbers of up to 8.4 x 10(4) for ketone hydrobo
236 bstrates with low micromolar K(m) values and turnover numbers on the order of hundreds per second.
237 sence of dCTP, with each mutant possessing a turnover number or k(cat) that is about 15% that of the
239 ding nor catalysis (H112Q) exhibits the same turnover number per active subunit as wild-type IDE.
242 ction of hydrogen from neutral water, with a turnover number reaching 5.5 x 10(4) mol of H(2) per mol
244 often feature high catalyst loading and low turnover numbers relative to non-oxidative cross-couplin
248 E showed comparable kinetic parameters, with turnover number similar to that of carboxypeptidase and
249 dissociation constants of less than 8 nM and turnover numbers similar to palmitic acid and N-palmitoy
250 (>5 days) than the protein-film (<6 h), with turnover numbers surpassing those of the protein-film af
251 her known substrate and reacts with a higher turnover number than palmitic acid but with unaltered re
252 ith blue light produces oxygen with a higher turnover number than the analogous intermolecular compon
254 reatest decrease in activity, resulting in a turnover number that was more than 30000-fold lower than
256 igh tolerance of functional groups, and with turnover numbers that exceed those of previous catalysts
257 ein, but the FhuA constructs functioned with turnover numbers that were equivalent to wild type.
258 capable of carrying out more than a million turnover numbers (TNs) at pH 7 with an Eapp =1.45 V vs.
260 of saturated N-heterocycles with the highest turnover number (TON) (1 mol% of 1, 12 h, TON = 62; 0.1
261 xtends catalyst lifetime to increase the Met turnover number (TON) 3-fold compared with H2O2, highlig
266 zes H2 production over 1 week and achieves a turnover number (TON) of as high as 6500 with almost no
268 alladacycles have been used to generate high turnover numbers (TON's) and turnover frequencies (TOF's
269 onate) formed was in the range of 92-99% and turnover numbers (TON) were close to 500; in the case of
270 ong-lived and remarkably efficient with high turnover numbers (TONs) and turnover frequencies (TOFs)
272 ting S or Se for O in the xanthene ring give turnover numbers (TONs) as high as 9000 for the generati
273 3030COA:3030TBE:1p-XPCPIrHCl (4):1.1NaOtBu, turnover numbers (TONs) between 1400 and 2200 (up to 72%
275 activity during solar light irradiation with turnover numbers (TONs) of more than 50,000 mol H2(mol H
276 enorhodamine dye generate more hydrogen [181 turnover numbers (TONs) with respect to chromophore] tha
279 binding affinities and steady-state kinetic turnover numbers toward native (K(d)(S6K1) = 1.2 microm
280 e Km for CH2-H4folate is 0.8 microM, and the turnover number under Vmax conditions estimated for the
281 ethers with excellent mass balance and high turnover numbers under 1 atm of O2 with no need for any
283 ve olefin metathesis catalysts, allowing for turnover numbers up to 10,000 in various olefin metathes
289 beta-lactones, catalyst 1 exhibits excellent turnover numbers (up to 10,000) and turnover frequencies
291 s exhibit high Faradaic efficiency (90%) and turnover numbers (up to 290,000, with initial turnover f
292 At 37 degrees C, the enzyme shows a maximal turnover number (V(max)) of 670 s(-1) and K(m) values fo
298 malate is similar to that of malate, but the turnover number with NADP is 3300-fold slower, although
299 CrPGK1 oxidation was found to affect the turnover number without altering the affinity for substr
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