Skip NavigationSkip to Content

Human topoisomerase I inhibition: Docking camptothecin and derivatives into a structure-based active site model

  1. Author:
    Laco, G. S.
    Collins, J. R.
    Luke, B. T.
    Kroth, H.
    Sayer, J. M.
    Jerina, D. M.
    Pommier, Y.
  2. Author Address

    NCI, Div Basic Sci, Mol Pharmacol Lab, NIH, Bethesda, MD 20892 USA. NCI, Div Basic Sci, Mol Pharmacol Lab, NIH, Bethesda, MD 20892 USA. NIDDKD, Bioorgan Chem Lab, NIH, Bethesda, MD 20892 USA. NCI, Frederick SAIC, Adv Biomed Comp Ctr, Frederick, MD 21702 USA. Pommier Y NCI, Div Basic Sci, Mol Pharmacol Lab, NIH, Bethesda, MD 20892 USA.
    1. Year: 2002
  1. Journal: Biochemistry
    1. 41
    2. 5
    3. Pages: 1428-1435
  2. Type of Article: Article
  1. Abstract:

    Human topoisomerase I (top 1) is an important target for anti- cancer drugs, which include camptothecin (CPT) and its derivatives. To elucidate top 1 inhibition in vitro, we made a series of duplex DNA substrates containing a deoxyadenosine stereospecifically modified by a covalent adduct of benzo[a]pyrene (BaP) diol epoxide [Pommier, Y., et al. (2000) Proc. Natl. Acad. Sci. U.S.A. 97, 10739-10744]. The known orientation of the hydrocarbon adduct in the DNA duplex relative to the top 1 cleavage site, in combination with a top 1/DNA crystal structure [Redinbo, M. R., et al. (1998) Science 279, 1504-1513], was used to construct a structure-based model to explain the in vitro top 1 inhibition results obtained with adducted DNA duplexes. Here we experimentally determined that the lactone form of CPT was stabilized by an irreversible top 1/DNA covalent complex. We removed the BaP moiety from the DNA in the published model, and docked the lactone forms of CPT and derivatives into the top 1/DNA active site cavity. The docked ligands were minimized, and interaction energy scores between the ligands and the top 1/DNA complex were determined. CPT docks perpendicular to the DNA backbone, projects outward 7 from the major groove, and makes a network of potential H-bonds with the active site DNA and top 1 residues, including Arg364, Lys532, and Asn722. The results are consistent with the known structureactivity relationships of CPT and derivatives. In addition, the model proposed a novel top 1/N352A "resistance" mutation for 10-OH derivatives of CPT. The in vitro biochemical characterization of the top 1/N352A mutant supported the model.

    See More

External Sources

  1. No sources found.

Library Notes

  1. No notes added.
NCI at Frederick

You are leaving a government website.

This external link provides additional information that is consistent with the intended purpose of this site. The government cannot attest to the accuracy of a non-federal site.

Linking to a non-federal site does not constitute an endorsement by this institution or any of its employees of the sponsors or the information and products presented on the site. You will be subject to the destination site's privacy policy when you follow the link.

ContinueCancel