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16 620 (0,086s)

Result

Mechanistic studies of the modulation of cleavage activity of topoisomerase I by DNA adducts of mono- and bi-functional Pt-II complexes

DNA adducts of bifunctional antitumor cisplatin or monodentate [PtCl(dien)]Cl (dien = diethylenetriamine) inhibit eukaryotic topoisomerase 1 (top1) action, the adducts of cisplatin being more effective. Th...

BO - Biofyzika

  • 2009
  • Jx
Result

ELISA-like Analysis of Cisplatinated DNA Using Magnetic Separation

Cisplatin belongs to the most widely used cytostatic drugs. The determination of the presence of the DNA-cisplatin adducts may not only signal the guanine-rich regions on specific recognition of DNA-ci...

CE - Biochemie

  • 2015
  • Jx
  • Link
Result

Different affinity of nuclear factor-kappa B proteins to DNA modified by antitumor cisplatin and its clinically ineffective trans isomer

characterized the effects of DNA adducts of cisplatin and ineffective transplatin for cisplatin. The distinctive structural features of DNA adducts of the two platinum site-NF-B protein interacti...

BO - Biofyzika

  • 2014
  • Jx
  • Link
Result

Different recognition of DNA modified by antitumor cisplatin and its clinically ineffective trans isomer by tumor suppressor protein p53

that DNA adducts of cisplatin reduced binding affinity of the consensus DNA sequence conformational perturbances induced in DNA by cisplatin adducts. The resultsalso demonstrateDNA

BO - Biofyzika

  • 2001
  • Jx
Result

DNA binding by antitumor trans-[PtCl2(NH3)(thiazole)]. Protein recognition and nucleotide excision repair of monofunctional adducts.

shown that this adduct inhibits DNA synthesis and creates a local conformational of the monofunctional DNA adducts of the trans-platinum analogues in tumor cells may be similar to that of the major bifunctional

BO - Biofyzika

  • 2003
  • Jx
Result

Differential recognition by the tumor suppressor protein p53 of DNA modified by the novel antitumor trinuclear platinum drug BBR3464 and cisplatin

The results indicate that structurally different DNA adducts of antitumor trinuclear platinum compound BBR3464 and cisplatin exhibit a different efficiency to affect the binding affinity of the modified DNA to p53 ...

BO - Biofyzika

  • 2004
  • Jx
Result

DNA modification with cisplatin affects sequence-specific DNA binding of p53 and p73 proteins in a target site-dependent manner

DNA modification with the antitumor drug cisplatin inhibits the p53 binding to a synthetic p53CON. Effects of DNA modification with cisplatin on binding of the p53 binding towards the cisplatin DNA

BO - Biofyzika

  • 2006
  • Jx
Result

DNA adducts of the enantiomers of the Pt(II) complexes of the ahaz ligand (ahaz=3-aminohexahydroazepine) and recognition of these adducts by HMG domain proteins

as it does tothe adduct of antitumor cisplatin, and to the adduct formed by the S to the ahaz adducts than to the cisplatin adducts formed at the TGGT sequenceThe bending, unwinding, and structur...

BO - Biofyzika

  • 2005
  • Jx
Result

DNA Adducts of cisplatin, transplatin and platinum-intercalating drugs.

Annotation not available...

BO - Biofyzika

  • 1994
  • D
Result

Superhelical torsion controls formation of DNA adducts of antitumor cisplatin.

Annotation not available...

BO - Biofyzika

  • 1996
  • D
  • 1 - 10 out of 16 620