4.4 Article

Developing Dual and Specific Inhibitors of Dimethylarginine Dimethylaminohydrolase-1 and Nitric Oxide Synthase: Toward a Targeted Polypharmacology To Control Nitric Oxide

Journal

BIOCHEMISTRY
Volume 48, Issue 36, Pages 8624-8635

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/bi9007098

Keywords

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Funding

  1. National Institutes of Health [GM69754, AI075509]
  2. American Cancer Society [RSG0506101GMC]
  3. Robert A. Welch Foundation [F-1572, F-1225]
  4. Texas Institute for Drug and Diagnostic Development [H-F-0032]
  5. College of Natural Sciences

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Molecules that block nitric oxide's (NO) biosynthesis are of significant interest. For example, nitric oxide synthase (NOS) inhibitors have been suggested as antitumor therapeutics, as have inhibitors of dimethylarginine dimethylaminohydrolase (DDAH), an enzyme that catabolizes endogenous NOS inhibitors. Dual-targeted inhibitors hold promise as more effective reagents to block NO biosynthesis than single-targeted compounds. In this study, a small set of known NOS inhibitors are surveyed as inhibitors of recombinant human DDAH-1. From these, an alkylamidine scaffold is selected for homologation. Stepwise lengthening of one substituent converts an NOS-selective inhibitor into a dual-targeted NOS/DDAH-1 inhibitor and then into a DDAH-1 selective inhibitor, as seen in the inhibition constants of N-5-(1-iminoethyl)-, N-5-(1-iminopropyl)-, N-5-(1-iminopentyl)- and N-5-(1-iminohexyl)-L-ornithine for neuronal NOS (1.7, 3, 20, > 1,900 mu M, respectively) and DDAH-1 (990, 52, 7.5, 110 mu M, respectively). A 1.9 angstrom X-ray crystal structure of the N-5-(1-iminopropyl)-L-ornithine:DDAH-1 complex indicates covalent bond formation between the inhibitor's amidino carbon and the active-site Cys274, and solution studies show reversible competitive inhibition, consistent with a reversible covalent mode of DDAH inhibition by alkylamidine inhibitors. These represent a versatile scaffold for the development of a targeted polypharmacological approach to control NO biosynthesis.

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