| Literature DB >> 29545311 |
Nobumichi Ohoka1, Yoko Morita2, Katsunori Nagai2, Kenichiro Shimokawa2, Osamu Ujikawa2, Ikuo Fujimori2, Masahiro Ito2, Youji Hayase2, Keiichiro Okuhira1, Norihito Shibata1, Takayuki Hattori1, Tomoya Sameshima2, Osamu Sano2, Ryokichi Koyama2, Yasuhiro Imaeda2, Hiroshi Nara2, Nobuo Cho2, Mikihiko Naito3.
Abstract
Aberrant expression of proteins often underlies many diseases, including cancer. A recently developed approach in drug development is small molecule-mediated, selective degradation of dysregulated proteins. We have devised a protein-knockdown system that utilizes chimeric molecules termed specific and nongenetic IAP-dependent protein erasers (SNIPERs) to induce ubiquitylation and proteasomal degradation of various target proteins. SNIPER(ER)-87 consists of an inhibitor of apoptosis protein (IAP) ligand LCL161 derivative that is conjugated to the estrogen receptor α (ERα) ligand 4-hydroxytamoxifen by a PEG linker, and we have previously reported that this SNIPER efficiently degrades the ERα protein. Here, we report that derivatization of the IAP ligand module yields SNIPER(ER)s with superior protein-knockdown activity. These improved SNIPER(ER)s exhibited higher binding affinities to IAPs and induced more potent degradation of ERα than does SNIPER(ER)-87. Further, they induced simultaneous degradation of cellular inhibitor of apoptosis protein 1 (cIAP1) and delayed degradation of X-linked IAP (XIAP). Notably, these reengineered SNIPER(ER)s efficiently induced apoptosis in MCF-7 human breast cancer cells that require IAPs for continued cellular survival. We found that one of these molecules, SNIPER(ER)-110, inhibits the growth of MCF-7 tumor xenografts in mice more potently than the previously characterized SNIPER(ER)-87. Mechanistic analysis revealed that our novel SNIPER(ER)s preferentially recruit XIAP, rather than cIAP1, to degrade ERα. Our results suggest that derivatized IAP ligands could facilitate further development of SNIPERs with potent protein-knockdown and cytocidal activities against cancer cells requiring IAPs for survival.Entities:
Keywords: ERalpha; SNIPER; X-linked inhibitor of apoptosis protein (XIAP); estrogen receptor; proteasome; protein knockdown; tumor therapy; ubiquitin
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Year: 2018 PMID: 29545311 PMCID: PMC5936811 DOI: 10.1074/jbc.RA117.001091
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157