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PMID: 19459681 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Inhibition of dynamin mediated endocytosis by the dynoles--synthesis and functional activity of a family of indoles.

Journal of medicinal chemistry ·Vol. 52 ·No. 12 ·2009-06-25 ·Pages 3762-73

Hill TA, Gordon CP, McGeachie AB, Venn-Brown B, Odell LR, Chau N, Quan A, Mariana A, Sakoff JA, Chircop M, Robinson PJ, McCluskey A

Abstract

Screening identified two bisindolylmaleimides as 100 microM inhibitors of the GTPase activity of dynamin I. Focused library approaches allowed development of indole-based dynamin inhibitors called dynoles. 100-Fold in vitro enhancement of potency was noted with the best inhibitor, 2-cyano-3-(1-(2-(dimethylamino)ethyl)-1H-indol-3-yl)-N-octylacrylamide (dynole 34-2), a 1.3 +/- 0.3 microM dynamin I inhibitor. Dynole 34-2 potently inhibited receptor mediated endocytosis (RME) internalization of Texas red-transferrin. The rank order of potency for a variety of dynole analogues on RME in U2OS cells matched their rank order for dynamin inhibition, suggesting that the mechanism of inhibition is via dynamin. Dynoles are the most active dynamin I inhibitors reported for in vitro or RME evaluations. Dynole 34-2 is 15-fold more active than dynasore against dynamin I and 6-fold more active against dynamin mediated RME (IC(50) approximately 15 microM; RME IC(50) approximately 80 microM). The dynoles represent a new series of tools to better probe endocytosis and dynamin-mediated trafficking events in a variety of cells.

MeSH Terms
Acrylamides/chemical synthesis,chemistry,pharmacology Animals Cell Line Cell Survival/drug effects Dose-Response Relationship, Drug Drug Evaluation, Preclinical Dynamin I/antagonists & inhibitors,metabolism Endocytosis/drug effects Enzyme Inhibitors/chemical synthesis,chemistry,pharmacology Humans Indoles/chemical synthesis,chemistry,pharmacology Mice Molecular Structure NIH 3T3 Cells Small Molecule Libraries Stereoisomerism Structure-Activity Relationship
Chemicals
2-cyano-N-octyl-3-(1-(3-dimethylaminopropyl)-1H-indol-3-yl)acrylamide Acrylamides Enzyme Inhibitors Indoles Small Molecule Libraries Dynamin I
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Hill Timothy A
Chemistry, School of Environmental and Life Sciences, The University of Newcastle, University Drive, Callaghan, NSW 2308, Australia.
Gordon Christopher P
McGeachie Andrew B
Venn-Brown Barbara
Odell Luke R
Chau Ngoc
Quan Annie
Mariana Anna
Sakoff Jennette A
Chircop Megan
Robinson Phillip J
McCluskey Adam
Article Info
Journal
Journal of medicinal chemistry
Abbr.
J Med Chem
ISSN
1520-4804
Published
2009-06-25
Pages
3762-73
Language
English
Region
United States
NLM ID
9716531
Subset
IM
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