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无标签光探针的设计与合成,用于鉴定新型 Rho/MKL1/SRF 信号通路抑制剂 CCG-1423 的分子靶标。

Design and synthesis of tag-free photoprobes for the identification of the molecular target for CCG-1423, a novel inhibitor of the Rho/MKL1/SRF signaling pathway.

机构信息

Vahlteich Medicinal Chemistry Core, Department of Medicinal Chemistry, College of Pharmacy, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Beilstein J Org Chem. 2013 May 21;9:966-73. doi: 10.3762/bjoc.9.111. Print 2013.

Abstract

CCG-1423 and related analogues represent a new class of inhibitors of Rho/MKL1/SRF-mediated gene transcription, a pathway that has been implicated in both cancer and fibrosis. The molecular target for these compounds is unknown. To facilitate its identification, a series of tag-free photoaffinity probes was designed and synthesized, each one containing a photoactivatable group and an acetylenic end group for subsequent attachment to a fluorescent tag using click chemistry. All were confirmed to maintain biological activity in a cell-based assay for inhibition of SRE-Luc expression. The functional activity of the most potent probe 24 was further confirmed in an assay for PC-3 cell migration. Photolysis of 24 in intact PC-3 cells followed by cell lysis, click ligation of a fluorescent dye, and gel electrophoresis revealed specific labeling of a single 24 kDa band that could be blocked with an active competitor. Future work will focus on identifying the labeled protein(s).

摘要

CCG-1423 和相关类似物代表了一类新的 Rho/MKL1/SRF 介导的基因转录抑制剂,该途径与癌症和纤维化都有关联。这些化合物的分子靶标尚不清楚。为了促进其鉴定,设计并合成了一系列无标签的光亲和探针,每个探针都包含一个光活化基团和一个炔基末端基团,用于随后使用点击化学连接到荧光标记物上。所有探针在基于细胞的 SRE-Luc 表达抑制测定中均证实保持生物活性。最有效的探针 24 的功能活性在 PC-3 细胞迁移测定中进一步得到证实。对完整的 PC-3 细胞进行 24 的光解,然后进行细胞裂解、荧光染料的点击连接和凝胶电泳,揭示了可被活性竞争物阻断的特异性标记的单个 24 kDa 条带。未来的工作将集中于鉴定标记的蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/489b/3678708/197cede000bd/Beilstein_J_Org_Chem-09-966-g002.jpg

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