首页> 外文期刊>Analytical chemistry >Integrated Molecule-Format Bioluminescent Probe for Visualizing Androgenicity of Ligands Based on the Intramolecular Association of Androgen Receptor with Its Recognition Peptide
【24h】

Integrated Molecule-Format Bioluminescent Probe for Visualizing Androgenicity of Ligands Based on the Intramolecular Association of Androgen Receptor with Its Recognition Peptide

机译:基于雄激素受体与其识别肽的分子内结合,可视化配体雄激素性的分子形式生物发光探针。

获取原文
获取原文并翻译 | 示例
       

摘要

Ligand-induced conformational changes of nuclear hormonereceptors (NRs) are an important start-up of various hormone signaling. However, little is known of the bio-analytical use of the hormone-induced conformational changes of NRs. Here, we describe a generally applicable bioluminescence assay with a genetically encoded bioluminescent indicator to determine androgenicity of ligands based on the intramolecular association of the ligand binding domain of androgen receptor (AR LBD) with the "FQNLF" motif in the N-terminal domain of AR (AR NTD). Firefly luciferase (FLuc) was dissected into N-terminal (1-415 AA) and C-terminal (416-550 AA) fragments. The AR LBD and FQNLF motif of AR NTD were sand-wiched between the dissected fragments of FLuc to construct a single molecule-format bioluminescent probe. Androgens induce the association of AR LBD with the FQNLF motif in the NTD, and the subsequent complementation of N- and C-terminal fragments of FLuc partially restores the activities of FLuc. A 10~(-5) M solution of 5alpha-dihydroxytestosterone (DHT) induced a quick increase in the luminescence intensities from cervical carcinoma-derived HeLa cells carrying the genetic indicator, which reached a plateau in 9 min, whereas DHT withdrawal from the cells by a medium change decreased the luminescence with a slower time course, i.e., approx2 h until returning to the background luminescence. The present luminescent indicator was found to exhibit high agonist selectivity and reproducible recovery of the luminescence to a repeated androgen addition and withdrawal. This is the first contribution that cellular signaling steps can be imaged with bioluminescence using a single molecule-format bioluminescence probe (Simbi), in which all the components required for a signal sensing and visualization are integrated. Simbi is applicable to developing biotherapeutic agents effecting to the AR signaling, and for screening adverse chemicals that possibly influence the signal transduction of AR.
机译:配体诱导的核激素受体(NRs)构象变化是各种激素信号传导的重要启动。然而,对于激素诱导的NRs的构象变化的生物分析用途知之甚少。在这里,我们描述了一种具有遗传编码生物发光指示剂的普遍适用的生物发光测定法,用于基于雄激素受体(AR LBD)的配体结合域与N末端结构域中的“ FQNLF”基序的分子内关联来确定配体的雄激素性AR(AR NTD)。将萤火虫荧光素酶(FLuc)分为N端(1-415 AA)和C端(416-550 AA)片段。将AR NTD的AR LBD和FQNLF基序夹在FLuc的解剖片段之间,以构建单分子形式的生物发光探针。雄激素诱导NTL中AR LBD与FQNLF基序的缔合,随后FLuc的N和C末端片段的互补部分恢复了FLuc的活性。 10〜(-5)M5α-二羟基睾丸酮(DHT)溶液诱导带有遗传指示剂的宫颈癌HeLa细胞的发光强度快速增加,并在9分钟内达到平稳,而DHT从细胞中退出中等程度的变化会降低发光强度,同时会降低时间,即大约2小时,直到返回背景发光为止。发现本发明的发光指示剂表现出高的激动剂选择性和发光的可再现恢复,直至重复的雄激素添加和撤出。这是使用单分子格式生物发光探针(Simbi)可以利用生物发光对细胞信号传导步骤进行成像的第一个贡献,其中集成了信号感测和可视化所需的所有组件。 Simbi可用于开发影响AR信号传导的生物治疗剂,并用于筛选可能影响AR信号转导的不良化学物质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号