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Chemical Synthesis of TFF3 Reveals Novel Mechanistic Insights and a Gut-Stable Metabolite

机译:TFF3 的化学合成揭示了新的机理见解和肠道稳定的代谢物

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摘要

TFF3 regulates essential gastro- and neuroprotective functions, but its molecular mode of action remains poorly understood. Synthetic intractability and lack of reliable bioassays and validated receptors are bottlenecks for mechanistic and structure-activity relationship studies. Here, we report the chemical synthesis of TFF3 and its homodimer via native chemical ligation followed by oxidative folding. Correct folding was confirmed by NMR and circular dichroism, and TFF3 and its homodimer were not cytotoxic or hemolytic. TFF3, its homodimer, and the trefoil domain (TFF3(10-50)) were susceptible to gastrointestinal degradation, revealing a gut-stable metabolite (TFF3(7-54); t(1/2) > 24 h) that retained its trefoil structure and antiapoptotic bioactivity. We tried to validate the putative TFF3 receptors CXCR4 and LINGO2, but neither TFF3 nor its homodimer displayed any activity up to 10 mu M. The discovery of a gut-stable bioactive metabolite and reliable synthetic accessibility to TFF3 and its analogues are cornerstones for future molecular probe development and structure-activity relationship studies.
机译:TFF3调节基本的胃和神经保护功能,但其分子作用模式仍然知之甚少。合成的棘手性以及缺乏可靠的生物测定法和经过验证的受体是机理和构效关系研究的瓶颈。在这里,我们报告了TFF3及其同型二聚体的化学合成,通过天然化学连接,然后氧化折叠。通过核磁共振和圆二色性证实了正确的折叠,TFF3及其同型二聚体没有细胞毒性或溶血性。TFF3、其同源二聚体和三叶草结构域(TFF3(10-50))易受胃肠道降解,揭示了肠道稳定的代谢物(TFF3(7-54);t(1/2)>24 h),保留了其三叶草结构和抗凋亡生物活性。我们试图验证假定的 TFF3 受体 CXCR4 和 LINGO2,但 TFF3 及其同型二聚体均未显示出高达 10 μ M 的任何活性。肠道稳定的生物活性代谢物的发现和TFF3及其类似物的可靠合成可及性是未来分子探针开发和构效关系研究的基石。

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