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1 ons in which differences would depend on the intrinsic binding ability of the two groups.
2 ryotic cells, and 4) the vWA module shows an intrinsic binding ability to several host proteins.
3 iology is how this complex converts the weak intrinsic binding activity of the ectodomain into strong
4 of PfPuf1 expressed in bacteria demonstrated intrinsic binding activity of the PfPuf1 Puf domain to t
5  P protein can be uncoupled to determine the intrinsic binding affinities (K(a)'s) of the anionic lig
6                      Whereas leucine reduced intrinsic binding affinities and interactions of Lrps bo
7 e lrp-1 mutation did not have much effect on intrinsic binding affinities but it decreased cooperativ
8 l other competing 14-3-3 clients with higher intrinsic binding affinities.
9  resulting relationships are consistent with intrinsic binding affinity (corrected for membrane inter
10 y 136 bp) but they have different effects on intrinsic binding affinity and binding cooperativity.
11 nities, PR-B in fact has a greatly increased intrinsic binding affinity and cooperative binding abili
12 ting a concentration-dependent transition in intrinsic binding affinity and in the topology of the DN
13 elements only as a preformed dimer, then its intrinsic binding affinity is not the typically observed
14  MCAT motif accounts for the majority of the intrinsic binding affinity of Purbeta with intersite coo
15 m trimer is greatly enhanced relative to the intrinsic binding affinity of the isolated EF-hand domai
16     In additional studies, we found that the intrinsic binding and functional potencies of structural
17 tion about cellular functions as well as the intrinsic binding capabilities of conserved folds.
18 perature decreased the magnitude of both the intrinsic binding constant and the inter-trimer was coop
19                                          The intrinsic binding constant for [MnOH]+ to apo-WOC was de
20  constant increased by a factor of 1.42, the intrinsic binding constant for ethidium increased by abo
21                                          The intrinsic binding constant for the formation of the (H-A
22 imately 1 order of magnitude higher than the intrinsic binding constant for the purine oligomers.
23 ons (pH 7.0, 10 degrees C, 100 mM NaCl), the intrinsic binding constant for the pyrimidine oligomers
24 0 degrees C, 100 mM NaCl, 5 mM MgCl2) by the intrinsic binding constant K = 6 +/- 2 x 10(6) M-1.
25 amined, the affinity is characterized by the intrinsic binding constant K=1.4(+/-0.5)x10(5)M(-1) and
26                              Oscillations in intrinsic binding constant Ki and cooperativity factor o
27                                          The intrinsic binding constant of ATP is by a factor of appr
28 10(3) M(-1), which compares favorably to the intrinsic binding constant presented in the literature f
29  aged circles, both the torsion constant and intrinsic binding constant ratio lie close to the corres
30                   Its affinity, K omega (the intrinsic binding constant times a cooperativity factor)
31    However, the binding affinity Komega (the intrinsic binding constant times a cooperativity factor)
32 equires only two interaction parameters, the intrinsic binding constant, K, and cooperativity paramet
33  and -23.4 kcal/mol, respectively) and their intrinsic binding constants (8780, 5040, and 3370 L/mol,
34 ntitative binding information in the form of intrinsic binding constants (K(obs)) and binding site si
35 g data further allowed determination of both intrinsic binding constants (K) and cooperativity factor
36 ion titrations has allowed us to extract the intrinsic binding constants and cooperativity parameters
37 m to favor the T state without affecting the intrinsic binding constants for the two Ca(2+) sites.
38 (the Ca2+-bound form), without affecting the intrinsic binding constants for the two Ca2+ sites.
39         Comparison of this constant with the intrinsic binding constants of the native protein allowe
40 mer binding accounts for the majority of the intrinsic binding energetics and cooperativity contribut
41  the active binding species demonstrate that intrinsic binding energetics are over an order of magnit
42 are in very good agreement with the measured intrinsic binding energetics.
43 d that this constitutively active mutant has intrinsic binding energies equal to that of the inactive
44                                          The intrinsic binding energies of the 5'-phosphate group of
45 e activation is equivalently described by an intrinsic binding energy (IBE) of 11.4 kcal/mol.
46                                          The intrinsic binding energy derived from the ground-state d
47 from protein to RNA enzymes, suggesting that intrinsic binding energy is a fundamental feature of bio
48 trinsic specificity by the topography of the intrinsic binding energy landscape and the kinetic speci
49                                         This intrinsic binding energy may be used to position reactan
50        Thus, the ribozyme appears to use the intrinsic binding energy of groups on the P1 duplex for
51                           Interestingly, the intrinsic binding energy of NAD (+) differentially distr
52 hat this places an increased demand that the intrinsic binding energy of phosphite dianion be utilize
53 he transition state (Kd = 53 muM); the total intrinsic binding energy of phosphite dianion in the tra
54                  These results show that the intrinsic binding energy of phosphite dianion is used in
55 hite dianion results from utilization of the intrinsic binding energy of phosphite dianion to stabili
56  abstraction from the substrate and that the intrinsic binding energy of substrate may be a significa
57                              The 12 kcal/mol intrinsic binding energy of the phosphodianion is shown
58 ical model for catalysis by TIM in which the intrinsic binding energy of the substrate phosphodianion
59 he free aldehyde (1.7 kcal/mol) and (ii) the intrinsic binding energy of the terminal ethylene glycol
60 sts that T. thermophilus RNAP possesses less intrinsic binding energy than E. coli RNAP.
61                 This extends the concept of "intrinsic binding energy" from protein to RNA enzymes, s
62 nto the active site that is paid for by the "intrinsic binding energy" of groups on the P1 duplex.
63 rategies that include the use of metal ions, intrinsic binding energy, and a novel example of general
64  acid residues contribute 54% and 44% of the intrinsic binding energy, respectively, despite the latt
65 hown to contribute at least 16.6 kcal/mol of intrinsic binding free energy to the stabilization of th
66           This analysis indicates that while intrinsic binding is similar to that observed with unmod
67 ing anti-CD3 mAbs mimic this force via their intrinsic binding mode.
68                        Human IFNAR-1 has low intrinsic binding of human IFNs but strongly affects the
69 vided an estimate of Kd < or = 18 nM for the intrinsic binding of Lys-48-linked chains of linkage num
70 over, although phosphorylation increases the intrinsic binding of OmpR to a single OmpR-binding site,
71                         The mechanism of the intrinsic binding of pol beta to the dsDNA is different
72        However, it remains possible that the intrinsic binding or signaling properties of the NCAM po
73 the nature of the adhesion system and of any intrinsic binding or signaling properties of the NCAM po
74   DEPTOR is an evolutionarily conserved cell-intrinsic binding partner of mTOR that functions as a ne
75 y for a particular ligand and that it is the intrinsic binding potential of the protein surface that
76         We find that Gd@C(82)(OH)(22) has an intrinsic binding preference to the binding groove, part
77                                          The intrinsic binding process is an entropy-driven reaction,
78     To gain molecular-level insight into the intrinsic binding properties of octamethyl calix[4]pyrro
79  so that the differences were largely due to intrinsic binding properties.
80 gain, these differences arose primarily from intrinsic binding properties.
81 lution only gives values proportional to the intrinsic binding rates, [Formula: see text], and [Formu
82 ent hydrogen bonding between acetone and the intrinsic binding sites, underpinning both high uptake a
83 ted global cytidine deamination at deaminase intrinsic binding sites.
84  most important for function despite the low intrinsic binding specificity and the complete lack of e
85                            We also drive the intrinsic binding specificity and which correlation with
86 ion, indicating that the isolated domain has intrinsic binding specificity determinants.
87     Since individual syntrophins do not have intrinsic binding specificity for dystrophin, dystrobrev
88 lting data allowed determination of both the intrinsic binding thermodynamics separated from the infl
89                                              Intrinsic binding to the dsDNA includes only two sequent