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1 otentials, and is a one-electron, one-proton irreversible reaction.
2 ens into C(18) estrogens is thought to be an irreversible reaction.
3 ant of 1.58 x 10(5) M(-)(1) s(-)(1) for this irreversible reaction.
4 h equilibrium over 24 h, as well as for fast irreversible reactions.
5 e reversible and compare them to essentially irreversible reactions.
6 mer would be present if dissociation were an irreversible reaction and if dimer formation required GT
7 sopentenyl 5-diphosphate in an ATP-dependent irreversible reaction and is therefore an attractive tar
8                                              Irreversible reactions are more susceptible to kinetic t
9             We show that both reversible and irreversible reactions are possible and useful to create
10 ts the potential of this method for studying irreversible reactions at sub-microsecond timescales usi
11  functional rationale for the positioning of irreversible reactions at the beginning of unbranched bi
12 nd the rate constant for the physiologically irreversible reaction between [P]IICB(Glc) and Glc was 3
13 eneous group of compounds resulting from the irreversible reaction between biomolecules and alpha-dic
14  activity inhibition and uses a specific and irreversible reaction between phosphoryl halides and a f
15 on, a highly heterogeneous process involving irreversible reactions between electrolyte components an
16  by a pseudo-critical concentration, whereas irreversible reactions consume all free subunits.
17                              The solution-an irreversible reaction cycle that decreases internal erro
18 dentify functional consequences of having an irreversible reaction early in the pathway.
19 We systematically varied the position of the irreversible reaction in model pathways and compared the
20 than an otherwise equivalent pathway with an irreversible reaction located at any step other than the
21      Our results show that a pathway with an irreversible reaction located at the first step, and wit
22 hesized from all-trans-retinal (atRAL) in an irreversible reaction mainly catalyzed by retinal dehydr
23 lar reaction network composed of effectively irreversible reactions, maximal reaction flux is achieve
24 cy study indicated the adsorption controlled irreversible reaction mechanism.
25 s preserved for a class of complex, strongly irreversible reaction mechanisms and determine the corre
26 t most unbranched biosynthetic pathways have irreversible reactions near their beginning, many times
27                                     Although irreversible reaction of NO with the oxyheme of hemoglob
28 one site to adjacent sites, and k(trap), for irreversible reaction of the radical cation with H(2)O o
29 und a cyclic molecular track when powered by irreversible reactions of a chemical fuel, 9-fluorenylme
30 ere the redox moieties are ionic, and (2) an irreversible reaction on two different types of enzymes
31 lent bonds can be made in two ways, applying irreversible reactions or reversible reactions.
32                      Data further suggest an irreversible reaction overall, in agreement with the dow
33  and as the oxidation of retinaldehyde is an irreversible reaction, RA production has to be considere
34       This simple genetic encoding for rapid irreversible reaction should provide diverse opportuniti
35 hey encounter mercury ions, which promote an irreversible reaction that converts the dyes to fluoresc
36 of apo and different holo forms of Fet3p are irreversible reactions that depend on the scan rate.
37 nated N-hydroxysulfenamide intermediate, two irreversible reactions that lead to either the disulfide
38 reasons for this fact, then one would expect irreversible reactions to be equally distributed among a
39               The analysis of a second-order irreversible reaction under pseudo-first-order condition
40                     A total of 27 and 16 new irreversible reactions were identified in Recon 1 and Ye
41 nic O6-alkylguanine lesions within DNA in an irreversible reaction which results in inactivation of t
42 C/EBPbeta by helenalin acetate is not due to irreversible reaction with cysteine residues of C/EBPbet
43  with carbon monoxide or intercepted through irreversible reaction with dihydrogen, resulting in sele
44 1-pyrrolidinyloxy (I) is shown to undergo an irreversible reaction with peroxyl radicals and other ra
45 gh the nucleobases until it is trapped by an irreversible reaction with water or oxygen.
46 yme (K1=8.5 microM. 5.2 microM) prior to the irreversible reaction, with maximum rate constants of 0.