Multiple Synthetic Routes to the Mini-Protein Omomyc and Coiled-Coil Domain Truncations

被引:20
作者
Brown, Zachary Z. [1 ]
Mapelli, Claudio [1 ]
Farasat, Iman [2 ]
Shoultz, Alycia, V [2 ]
Johnson, Scott A. [3 ]
Orvieto, Federica [4 ]
Santoprete, Alessia [4 ]
Bianchi, Elisabetta [4 ]
McCracken, Amy Bittner [1 ]
Chen, Kuanchang [1 ]
Zhu, Xiaohong [1 ]
Demma, Mark J. [5 ]
Lacey, Brian M. [6 ]
Canada, Keith A. [2 ]
Garbaccio, Robert M. [1 ]
O'Neil, Jennifer [5 ,7 ]
Walji, Abbas [1 ]
机构
[1] Merck & Co Inc, Discovery Chem, 2000 Galloping Hill Rd, Kenilworth, NJ 07033 USA
[2] Merck & Co Inc, Prot Engn, 126 East Lincoln Ave, Rahway, NJ 07065 USA
[3] Merck & Co Inc, Discovery Chem, 33 Ave Louis Pasteur, Boston, MA 02115 USA
[4] IRBM SpA, Peptide Chem, Via Pontina Km 30 600, I-00071 Pomezia, RM, Italy
[5] Merck & Co Inc, Oncol Discovery, 33 Ave Louis Pasteur, Boston, MA 02115 USA
[6] Merck & Co Inc, Pharmacol, 33 Ave Louis Pasteur, Boston, MA 02115 USA
[7] Akrevia Therapeut, 610 Main St, Cambridge, MA 02139 USA
关键词
MYC; DESIGN; STRATEGIES;
D O I
10.1021/acs.joc.9b02467
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The Myc transcription factor represents an "undruggable" target of high biological interest due to its central role in various cancers. An abbreviated form of the c-Myc protein, called Omomyc, consists of the Myc DNA-binding domain and a coiled-coil region to facilitate dimerization of the 90 amino acid polypeptide. Here we present our results to evaluate the synthesis of Omomyc using three complementary strategies: linear Fmoc solid-phase peptide synthesis (SPPS) using several advancements for difficult sequences, native chemical ligation from smaller peptide fragments, and a high-throughput bacterial expression and assay platform for rapid mutagenesis. This multifaceted approach allowed access to up to gram quantities of the mini-protein and permitted in vitro and in vivo SAR exploration of this modality. DNA-binding results and cellular activity confirm that Omomyc and analogues presented here, are potent binders of the E-box DNA engaged by Myc for transcriptional activation and that this 90-amino acid mini-protein is cell permeable and can inhibit proliferation of Myc-dependent cell lines. We also present additional results on covalent homodimerization through disulfide formation of the full-length mini-protein and show the coiled-coil region can be truncated while preserving both DNA binding and cellular activity. Altogether, our results highlight the ability of advanced peptide synthesis to achieve SAR tractability in a challenging synthetic modality.
引用
收藏
页码:1466 / 1475
页数:10
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