| Literature DB >> 31144814 |
Paolo Mellini1, Yukihiro Itoh1, Elghareeb E Elboray1,2, Hiroki Tsumoto3, Ying Li1, Miki Suzuki1, Yukari Takahashi1, Toshifumi Tojo1, Takashi Kurohara1, Yuka Miyake1, Yuri Miura3, Yuki Kitao1, Masayuki Kotoku1, Tetsuya Iida1, Takayoshi Suzuki1,4.
Abstract
The NAD+-dependent deacetylase SIRT2 represents an attractive target for drug development. Here, we designed and synthesized drug-like SIRT2-selective inhibitors based on an analysis of the putative binding modes of recently reported SIRT2-selective inhibitors and evaluated their SIRT2-inhibitory activity. This led us to develop a more drug-like diketopiperazine structure as a "hydrogen bond (H-bond) hunter" to target the substrate-binding site of SIRT2. Thioamide 53, a conjugate of diketopiperazine and 2-anilinobenzamide which is expected to occupy the "selectivity pocket" of SIRT2, exhibited potent SIRT2-selective inhibition. Inhibition of SIRT2 by 53 was mediated by the formation of a 53-ADP-ribose conjugate, suggesting that 53 is a mechanism-based inhibitor targeting the "selectivity pocket", substrate-binding site, and NAD+-binding site. Furthermore, 53 showed potent antiproliferative activity toward breast cancer cells and promoted neurite outgrowth of Neuro-2a cells. These findings should pave the way for the discovery of novel therapeutic agents for cancer and neurological disorders.Entities:
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Year: 2019 PMID: 31144814 DOI: 10.1021/acs.jmedchem.9b00255
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446