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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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Sigman, D.S.1
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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Science
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ACS Symposium Series 402; American Chemical Society: Washington, DC
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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(1989)
Metal-DNA Chemistry
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Tullis, T.D.1
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4
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0000149473
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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See for example (and also references therein): (a) Sigman, D. S. Acc. Chem. Res. 1986, 19, 180. (b) Barton, J. K. Science 1986, 233, 727. (c) Metal-DNA Chemistry; Tullis, T. D., Ed.; ACS Symposium Series 402; American Chemical Society: Washington, DC, 1989. (d) Pyle, A. M.; Barton, J. K. Prog. Inorg. Chem. 1990, 38, 413. (e) Turro, N. J.; Barton, J. K.; Tamalia, D. A. Acc. Chem. Res. 1991, 24, 332. (f) Sigman, D. S.; Mazumder, A.; Perrin, D. M. Chem. Rev. 1993, 93, 2295. (g) Murphy, C. J.; Barton, J. K. Methods Enzymol. 1993, 226, 576.
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2542642053
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note
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5-9 Thus, although the two complexes investigated in the present study provide a good opportunity to compare directly the binding of isosteric intercalating species of +2 and +3 charge to DNA, such a comparison could not be made.
-
-
-
-
55
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85087582179
-
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3b
-
3b
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85087581677
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note
-
-1, a value that is close to the one obtained by the absorption titration method.
-
-
-
-
59
-
-
2542643624
-
-
note
-
3+ (irradiated or not) were ethanol precipitated prior to loading onto the gel suggesting that DNA binding by this complex involves noncovalent interactions.
-
-
-
-
60
-
-
2542581316
-
-
note
-
3+, 0.7. Further studies that inquire into the mechanism of DNA cleavage by these complexes using various "inhibitors" are currently in progress.
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