Nanomolar Small Molecule Inhibitors for αvβ6, αvβ5, and αvβ3 Integrins
Маломолекулярные ингибиторы интегринов αvβ6, αvβ5 и αvβ3 с наномолярной активностью
2002-01-31
SCID: 54.1/dvbqe6sa
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Nanomolar activityNonpeptidic compoundsPeptidomimetic inhibitorsRGD-dependent integrinsαvβ6 integrin inhibitors
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Abstract (AI)
Integrin adhesion receptors frequently recognize a core amino acid sequence, Arg-Gly-Asp, in their target ligands. Inhibitors with the ability to inhibit one or a small subset of such RGD-dependent integrins have been invaluable in defining their biological function. Here, we have characterized low molecular weight inhibitors for their ability to specifically inhibit alphav(beta)6 integrin, a fibronectin/tenascin receptor. As of yet, no nonpeptidic inhibitor of alphav(beta)6 was known. New peptidomimetic and nonpeptidic compounds were examined in isolated integrin binding assays and in cell adhesion assays for their ability to block alphav(beta)6, alphav(beta)3, alphav(beta)5, and alphalIb(beta)3 integrins. The compounds are based on an aromatically substituted beta amino acid or glutaric acid derivative as an acidic center and an aminopyridyl or guanidyl residue as a basic mimetic. We found several classes of inhibitors with different selectivities, especially mono- or biselectivity on the alpha(v)-integrins alphav(beta)6 and alphav(beta)3, and nanomolar activity. Furthermore, nearly all compounds are inactive on alphaIIb(beta)3. Compound 11 is the first specific, peptidomimetic inhibitor of the alphav(beta)6 integrin receptor.
Key Findings
1
It identifies the first specific peptidomimetic inhibitor of αvβ6, compound 11.
2
Nearly all tested compounds are inactive against αIIbβ3, supporting selective inhibition of selected αv integrins.
3
Several inhibitor classes show nanomolar activity with distinct mono- or biselectivity, particularly between αvβ6 and αvβ3.
4
The compounds use an aromatically substituted β-amino acid or glutaric acid derivative as an acidic center, paired with aminopyridyl or guanidyl basic mimetics.
5
The study characterizes low-molecular-weight inhibitors targeting the RGD-dependent integrins αvβ6, αvβ5, αvβ3, and αIIbβ3.
Research Object
αvβ6, αvβ5, αvβ3, and αIIbβ3 integrin adhesion receptors and their low-molecular-weight inhibitors
Research Subject
Inhibitory potency and selectivity of peptidomimetic and nonpeptidic compounds, including nanomolar blockade of αvβ6, αvβ5, and αvβ3 integrins
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2002-01-31
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