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1 he junction centre were strongly reactive to potassium permanganate.
2 m of the junction, as shown by reaction with potassium permanganate.
3 ction reaction between hydrogen peroxide and potassium permanganate.
4 symmetric oxidation reaction of alkenes with potassium permanganate.
5  thymines in the transcription bubble toward potassium permanganate.
6  DNA for possible unwinding in vivo by using potassium permanganate, a chemical that reacts with unpa
7                                              Potassium permanganate and dimethyl sulfate interference
8                                              Potassium permanganate and dimethyl sulfate interference
9 3 (fimbrial subunit), using gel retardation, potassium permanganate and DNase I footprinting, cleavag
10  repeats, were probed with dimethylsulphate, potassium permanganate and S1 nuclease.
11                                       Use of potassium permanganate as a probe for unpaired bases in
12  complex formation has been determined using potassium permanganate as a probe.
13 edrone (methcathinone), involving the use of potassium permanganate, became a new cause of intoxicati
14 midine-specific agents such as hydrazine and potassium permanganate, but not the DNA sugar-specific p
15  DNA melting and promoter clearance by using potassium permanganate, diethylpyrocarbonate and methidi
16 ted with these promoters in heterochromatin; potassium permanganate experiments showed a loss of Pol
17 7,8-tetrahydronaphthalen-1-yl)acetamide with potassium permanganate followed by acidic hydrolysis gav
18 ion was tested by using dimethyl sulfate and potassium permanganate footprinting analyses.
19       Transcription experiments in vitro and potassium permanganate footprinting analysis show that M
20                                              Potassium permanganate footprinting experiments indicate
21                                              Potassium permanganate footprinting on the nontemplate a
22                         In vitro DNase I and potassium permanganate footprinting revealed that Rns bi
23                                              Potassium permanganate footprinting revealed that the oc
24                                 We have used potassium permanganate footprinting to monitor DNA stran
25                                 Here we used potassium permanganate footprinting, DNase I footprintin
26                               Oxidation with potassium permanganate gave good yields of related diols
27 how that osmium tetroxide can be replaced by potassium permanganate, giving the same spectrum of muta
28 uclease or the single-strand-selective agent potassium permanganate included the major promoters P1 a
29 alactosidase histochemistry using 0.1% to 1% potassium permanganate incubation for 1 minute to 2 hour
30                                   The use of potassium permanganate is compatible with solid phase ca
31 th chloroacetaldehyde, dimethyl sulfate, and potassium permanganate is consistent with the formation
32                                        Using potassium permanganate (KMnO(4)) modification, we have i
33  report real-time hydroxyl radical (*OH) and potassium permanganate (KMnO4) footprints obtained under
34                                      We used potassium permanganate (KMnO4) to identify unpaired thym
35  reactivity of the top and bottom strands to potassium permanganate (KMnO4).
36                                 Here we used potassium permanganate modification to show that the avi
37                                 Furthermore, potassium permanganate probing shows that the conformati
38 Dehydrogenation of the indoline aminals with potassium permanganate produced the corresponding cyclic
39    Here, we use protein-DNA crosslinking and potassium permanganate reactivity to explore the base-fl
40                                 Probing with potassium permanganate reveals that the bis-PNA complexe
41                                        After potassium permanganate sensitivity of unpaired thymine r
42                    Arsine is absorbed into a potassium permanganate solution, the discoloration of wh
43  accessibility of PSE and type I elements to potassium permanganate suggests that origin regions are
44 arison of CCM with osmium tetroxide and with potassium permanganate, tested on a complete set of sing
45 present study we utilized the chemical probe potassium permanganate to identify sites of DNA distorti
46                                 We have used potassium permanganate to probe contacts between vaccini
47                                        Using potassium permanganate, which preferentially modifies si
48                     The specific reaction of potassium permanganate with thymine in single-stranded D

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