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Journal ArticleDOI

Selective class IIa histone deacetylase inhibition via a nonchelating zinc-binding group

TLDR
The discovery of inhibitors that fill this void with an unprecedented metal-binding group, trifluoromethyloxadiazole (TFMO), which circumvents the selectivity and pharmacologic liabilities of hydroxamates is reported.
Abstract
In contrast to studies on class I histone deacetylase (HDAC) inhibitors, the elucidation of the molecular mechanisms and therapeutic potential of class IIa HDACs (HDAC4, HDAC5, HDAC7 and HDAC9) is impaired by the lack of potent and selective chemical probes. Here we report the discovery of inhibitors that fill this void with an unprecedented metal-binding group, trifluoromethyloxadiazole (TFMO), which circumvents the selectivity and pharmacologic liabilities of hydroxamates. We confirm direct metal binding of the TFMO through crystallographic approaches and use chemoproteomics to demonstrate the superior selectivity of the TFMO series relative to a hydroxamate-substituted analog. We further apply these tool compounds to reveal gene regulation dependent on the catalytic active site of class IIa HDACs. The discovery of these inhibitors challenges the design process for targeting metalloenzymes through a chelating metal-binding group and suggests therapeutic potential for class IIa HDAC enzyme blockers distinct in mechanism and application compared to current HDAC inhibitors.

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The effect of metalloprotein inhibitors on cellular metal ion content and distribution.

TL;DR: An important, original data set indicating that metal ion homeostasis is not notably perturbed by MPi is provided, which should encourage the development of and aid in designing new MPi, guide MBP selection, and clarify the effect of MPi on the 'metallome'.
Journal ArticleDOI

Trifluoromethyloxadiazoles: inhibitors of histone deacetylases for control of Asian soybean rust.

TL;DR: Fungal class II HDACs fungicides would offer the potential to control fungal isolates that show reduced sensitivity towards existing commercial fungicides, in particular Asian soybean rust.
Journal ArticleDOI

OUP accepted manuscript

TL;DR: In this paper , a PAOA (pimeloylanilide o-aminoanilide) derivative, called NKL54, was shown to support MEF2-dependent transcription through several actions, including potentiation of chromatin binding.
Journal ArticleDOI

HDAC9 is an epigenetic repressor of kidney angiotensinogen establishing a sex difference

TL;DR: Investigation of sex differences of systemic, hepatic, and intrarenal AGT levels in Sprague-Dawley rats indicates that HDAC9 is a novel suppressing factor involved in AGT regulation in PTC, leading to low levels of intrarenals AGT in females.
References
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Journal ArticleDOI

The Cambridge Structural Database: a quarter of a million crystal structures and rising

TL;DR: The Cambridge Structural Database now contains data for more than a quarter of a million small-molecule crystal structures, and projections concerning future accession rates indicate that the CSD will contain at least 500,000 crystal structures by the year 2010.
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Lysine Acetylation Targets Protein Complexes and Co-Regulates Major Cellular Functions

TL;DR: A proteomic-scale analysis of protein acetylation suggests that it is an important biological regulatory mechanism and the regulatory scope of lysine acetylations is broad and comparable with that of other major posttranslational modifications.
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Substrate and Functional Diversity of Lysine Acetylation Revealed by a Proteomics Survey

TL;DR: This study reveals previously unappreciated roles for lysine acetylation in the regulation of diverse cellular pathways outside of the nucleus, including many longevity regulators and metabolism enzymes.
Journal ArticleDOI

Epigenetic protein families: a new frontier for drug discovery

TL;DR: The key protein families that mediate epigenetic signalling through the acetylation and methylation of histones are reviewed, including histone deacetylases, protein methyltransferases, lysine demethylases, bromodomain-containing proteins and proteins that bind to methylated histones.
Journal ArticleDOI

Class II Histone Deacetylases Act as Signal-Responsive Repressors of Cardiac Hypertrophy

TL;DR: It is shown that class II HDACs are substrates for a stress-responsive kinase specific for conserved serines that regulate MEF2-HDAC interactions, and act as signal-responsive suppressors of the transcriptional program governing cardiac hypertrophy and heart failure.
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