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Discovery of HDAC Inhibitors That Lack an Active Site Zn(2+)-Binding Functional Group.


ABSTRACT: Natural and synthetic histone deacetylase (HDAC) inhibitors generally derive their strong binding affinity and high potency from a key functional group that binds to the Zn(2+) ion within the enzyme active site. However, this feature is also thought to carry the potential liability of undesirable off-target interactions with other metalloenzymes. As a step toward mitigating this issue, here, we describe the design, synthesis, and structure-activity characterizations of cyclic ?3?-tetrapeptide HDAC inhibitors that lack the presumed indispensable Zn(2+)-binding group. The lead compounds (e.g., 15 and 26) display good potency against class 1 HDACs and are active in tissue culture against various human cancer cell lines. Importantly, enzymological analysis of 26 indicates that the cyclic ?3?-tetrapeptide is a fast-on/off competitive inhibitor of HDACs 1-3 with K i values of 49, 33, and 37 nM, respectively. Our proof of principle study supports the idea that novel classes of HDAC inhibitors, which interact at the active-site opening, but not with the active site Zn(2+), can have potential in drug design.

SUBMITTER: Vickers CJ 

PROVIDER: S-EPMC4025844 | biostudies-other | 2012 Jun

REPOSITORIES: biostudies-other

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Discovery of HDAC Inhibitors That Lack an Active Site Zn(2+)-Binding Functional Group.

Vickers Chris J CJ   Olsen Christian A CA   Leman Luke J LJ   Ghadiri M Reza MR  

ACS medicinal chemistry letters 20120426 6


Natural and synthetic histone deacetylase (HDAC) inhibitors generally derive their strong binding affinity and high potency from a key functional group that binds to the Zn(2+) ion within the enzyme active site. However, this feature is also thought to carry the potential liability of undesirable off-target interactions with other metalloenzymes. As a step toward mitigating this issue, here, we describe the design, synthesis, and structure-activity characterizations of cyclic α3β-tetrapeptide HD  ...[more]

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