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Results of search for 'au:"Dedon, P C"', page 1 of 2
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Authors
Allis, C D
Awada, M
Bodenner, D L
Borch, R F
Burney, S
Dedon, P C
Fox, J G
Goldberg, I H
Gorovsky, M A
Keng, P C
LaMarr, W A
Liang, Q
Reeve, J N
Salzberg, A A
Sandman, K M
Soults, J A
Tannenbaum, S R
Wogan, G N
Xu, J
Yu, L
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Topics
Aminoglycosides
Animals
Anti-Bacterial Agents
Antibiotics, Antineoplastic
Base Sequence
Binding Sites
Cattle
DNA
DNA Damage
Enediynes
Histones
Humans
Kinetics
Nucleosomes
Plasmids
chemistry
drug effects
genetics
metabolism
pharmacology
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English
Your search returned 38 results.
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1.
Mechanisms of target selection by DNA-damaging chemicals: studies with enediyne anticancer drugs.
[electronic resource]
by
Dedon, P C
Producer:
19970219
In:
International archives of occupational and environmental health
vol. 68
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2.
Determination of binding mode: intercalation.
[electronic resource]
by
Dedon, P C
Producer:
20080512
In:
Current protocols in nucleic acid chemistry
vol. Chapter 8
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3.
Determination of binding thermodynamics.
[electronic resource]
by
Dedon, P C
Producer:
20080512
In:
Current protocols in nucleic acid chemistry
vol. Chapter 8
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4.
Reaction of cis- and trans-2-Butene-1,4-dial with 2'-deoxycytidine to form stable oxadiazabicyclooctaimine adducts.
[electronic resource]
by
Gingipalli, L
Dedon, P C
Producer:
20010816
In:
Journal of the American Chemical Society
vol. 123
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5.
Analysis of oxidized DNA fragments by gel electrophoresis.
[electronic resource]
by
Awada, M
Dedon, P C
Producer:
20080508
In:
Current protocols in nucleic acid chemistry
vol. Chapter 10
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6.
Formation of the 1,N2-glyoxal adduct of deoxyguanosine by phosphoglycolaldehyde, a product of 3'-deoxyribose oxidation in DNA.
[electronic resource]
by
Awada, M
Dedon, P C
Producer:
20011204
In:
Chemical research in toxicology
vol. 14
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7.
Cu(II)/H2O2-induced DNA damage is enhanced by packaging of DNA as a nucleosome.
[electronic resource]
by
Liang, Q
Dedon, P C
Producer:
20010628
In:
Chemical research in toxicology
vol. 14
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8.
An improved method for the rapid assessment of DNA bending by small molecules.
[electronic resource]
by
Salzberg, A A
Dedon, P C
Producer:
19980210
In:
Journal of biomolecular structure & dynamics
vol. 15
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9.
DNA bending is a determinant of calicheamicin target recognition.
[electronic resource]
by
Salzberg, A A
Dedon, P C
Producer:
20000804
In:
Biochemistry
vol. 39
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10.
Sequence-specific double-strand breakage of DNA by neocarzinostatin involves different chemical mechanisms within a staggered cleavage site.
[electronic resource]
by
Dedon, P C
Goldberg, I H
Producer:
19901009
In:
The Journal of biological chemistry
vol. 265
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11.
Characterization of the reactions of platinum antitumor agents with biologic and nonbiologic sulfur-containing nucleophiles.
[electronic resource]
by
Dedon, P C
Borch, R F
Producer:
19870716
In:
Biochemical pharmacology
vol. 36
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12.
Free-radical mechanisms involved in the formation of sequence-dependent bistranded DNA lesions by the antitumor antibiotics bleomycin, neocarzinostatin, and calicheamicin.
[electronic resource]
by
Dedon, P C
Goldberg, I H
Producer:
19920921
In:
Chemical research in toxicology
vol. 5
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13.
Influence of thiol structure on neocarzinostatin activation and expression of DNA damage.
[electronic resource]
by
Dedon, P C
Goldberg, I H
Producer:
19920330
In:
Biochemistry
vol. 31
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14.
Modulation of enediyne-induced DNA damage by chromatin structures in transcriptionally active genes.
[electronic resource]
by
Wu, J
Xu, J
Dedon, P C
Producer:
19991216
In:
Biochemistry
vol. 38
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15.
Cytosine methylation enhances DNA damage produced by groove binding and intercalating enediynes: studies with esperamicins A1 and C.
[electronic resource]
by
Mathur, P
Xu, J
Dedon, P C
Producer:
19980108
In:
Biochemistry
vol. 36
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16.
DNA damage produced by enediynes in the human phosphoglycerate kinase gene in vivo: esperamicin A1 as a nucleosome footprinting agent.
[electronic resource]
by
Xu, J
Wu, J
Dedon, P C
Producer:
19980317
In:
Biochemistry
vol. 37
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17.
Enediyne-mediated DNA damage in nuclei is modulated at the level of the nucleosome.
[electronic resource]
by
Yu, L
Goldberg, I H
Dedon, P C
Producer:
19940317
In:
The Journal of biological chemistry
vol. 269
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18.
New insights into calicheamicin-DNA interactions derived from a model nucleosome system.
[electronic resource]
by
Yu, L
Salzberg, A A
Dedon, P C
Producer:
19951213
In:
Bioorganic & medicinal chemistry
vol. 3
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19.
Exclusive production of bistranded DNA damage by calicheamicin.
[electronic resource]
by
Dedon, P C
Salzberg, A A
Xu, J
Producer:
19930513
In:
Biochemistry
vol. 32
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20.
Calicheamin-mediated DNA damage in a reconstituted nucleosome is not affected by histone acetylation: the role of drug structure in the target recognition process.
[electronic resource]
by
Liang, Q
Choi, D J
Dedon, P C
Producer:
19971120
In:
Biochemistry
vol. 36
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