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1 their properties, for example, the rarity of reverse mutations.
2  approach further minimizes the concern over reverse mutations.
3                                       Charge-reversing mutations (acid --> Lys) decreased the binding
4  our graph-based signatures, considering the reverse mutation and by using a refined, more reliable d
5 ns were tested for bacterial mutagenicity in reverse-mutation assays using Salmonella typhimurium fra
6   Interestingly, the diabetes drug metformin reverses mutation-associated alterations on energy metab
7                                Moreover, the reverse mutation BEAG T432S increased the affinity of BE
8 hod correlates well against the hypothetical reverse mutations, better than comparable methods built
9                  Mosaicism, anticipation and reverse mutation cases are discussed in the framework of
10 otably, the rate of evolution of forward and reverse mutations correlated with the conservation of ea
11 6 +/- 0.7 mV for wild-type HCN1); the charge-reversed mutation E235R shifted activation even more pos
12                                          The reverse mutation in GIRK1 (N217D) increased the rate of
13                                          The reverse mutation in heart rH1-C374Y reduced outside QX31
14                                          The reverse mutation in HKT1, Gly-91 to serine, abrogated K(
15                                              Reverse mutation in Kir1.1 (N171E) reduced the unitary c
16                 In the first experiment, the reverse mutation in rat LCAT (rA149E) converted substrat
17  sensitivity to zinc while the corresponding reverse mutation in TASK-1, K70E, induced zinc sensitivi
18 vity of the channel to cholesterol whereas a reverse mutation in the corresponding position in Kir2.3
19  destabilization is smaller than that of the reverse mutation in the drk SH3.
20                                          The reverse mutation in vertebrate GABA(A) alpha1 subunits i
21 nterparts in the alpha1beta2gamma2 GABAAR or reverse mutations in alpha1 or beta2 subunits.
22                                              Reverse mutations in Kir1.1 suggest that this mechanism
23  neurotensin at the neurolysin site, and the reverse mutations in neurolysin switch hydrolysis to the
24 av1.7 by approximately 300-fold, whereas the reverse mutations in rNav1.4 (N655D/Q657E) and the corre
25 190GD stimulation, whereas the corresponding reverse mutation of Cdc42 (S88D) was able to respond to
26 crosatellites within a fragment, and forward/reverse mutations of repeat length resulting in microsat
27 pproximately 10 times more frequent than the reverse mutation, resulting in an overall mutation press
28                               Furthermore, a reversed mutation, S293N, in GGA3 partially establishes
29 ergy changes due to the corresponding charge-reversing mutations, suggesting that the charges in the
30                                      The sex-reversed mutation Sxr results in XX males.
31                                           By reversing mutations that accumulated in an alpha-proteob
32                         By incorporating the reverse mutations, we have also constructed UV pigments
33                                          The reverse mutation, Y193L, in the corresponding region in

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