Biomoleculer Research Center, Boise State University, Boise, ID, 83725, USA.
Department of Chemistry and Biochemistry, Boise State University, 1910 University Dr., Boise, ID, 83725, USA.
Sci Rep. 2021 Aug 10;11(1):16174. doi: 10.1038/s41598-021-95424-6.
Oncostatin M (OSM) is a pleiotropic, interleukin-6 family inflammatory cytokine that plays an important role in inflammatory diseases, including inflammatory bowel disease, rheumatoid arthritis, and cancer progression and metastasis. Recently, elevated OSM levels have been found in the serum of COVID-19 patients in intensive care units. Multiple anti-OSM therapeutics have been investigated, but to date no OSM small molecule inhibitors are clinically available. To pursue a high-throughput screening and structure-based drug discovery strategy to design a small molecule inhibitor of OSM, milligram quantities of highly pure, bioactive OSM are required. Here, we developed a reliable protocol to produce highly pure unlabeled and isotope enriched OSM from E. coli for biochemical and NMR studies. High yields (ca. 10 mg/L culture) were obtained in rich and minimal defined media cultures. Purified OSM was characterized by mass spectrometry and circular dichroism. The bioactivity was confirmed by induction of OSM/OSM receptor signaling through STAT3 phosphorylation in human breast cancer cells. Optimized buffer conditions yielded H, N HSQC NMR spectra with intense, well-dispersed peaks. Titration of N OSM with a small molecule inhibitor showed chemical shift perturbations for several key residues with a binding affinity of 12.2 ± 3.9 μM. These results demonstrate the value of bioactive recombinant human OSM for NMR-based small molecule screening.
抑瘤素 M(OSM)是一种多功能的白细胞介素-6 家族炎症细胞因子,在炎症性疾病中发挥重要作用,包括炎症性肠病、类风湿关节炎以及癌症的进展和转移。最近,在重症监护病房 COVID-19 患者的血清中发现了升高的 OSM 水平。已经研究了多种抗 OSM 治疗方法,但迄今为止,临床上尚无 OSM 小分子抑制剂。为了采用高通量筛选和基于结构的药物发现策略来设计 OSM 的小分子抑制剂,需要毫克级的高纯度、生物活性 OSM。在这里,我们开发了一种从大肠杆菌中生产高纯度未标记和同位素标记 OSM 的可靠方案,用于生化和 NMR 研究。在丰富和最小定义培养基培养物中获得了高产率(约 10mg/L 培养物)。通过人乳腺癌细胞中 OSM/OSM 受体信号通过 STAT3 磷酸化的诱导,对纯化的 OSM 进行了质谱和圆二色性分析。优化的缓冲条件得到了 H、N HSQC NMR 图谱,具有强烈、分散良好的峰。小分子抑制剂对 N OSM 的滴定显示出几个关键残基的化学位移扰动,结合亲和力为 12.2±3.9μM。这些结果表明生物活性重组人 OSM 非常适合基于 NMR 的小分子筛选。