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人细胞表达的无标签 rhMFG-E8 作为一种有效的辐射缓解剂。

Human cell-expressed tag-free rhMFG-E8 as an effective radiation mitigator.

机构信息

TheraSource LLC, 350 Community Drive, Manhasset, NY, USA.

Center for Immunology and Inflammation, Feinstein Institutes for Medical Research, 350 Community Drive, Manhasset, NY, 11030, USA.

出版信息

Sci Rep. 2023 Dec 13;13(1):22186. doi: 10.1038/s41598-023-49499-y.

Abstract

Human milk fat globule epidermal growth factor-factor VIII (MFG-E8) functions as a bridging molecule to promote the removal of dying cells by professional phagocytes. E. coli-expressed histidine-tagged recombinant human MFG-E8 (rhMFG-E8) is protective in various disease conditions. However, due to improper recombinant protein glycosylation, misfolding and the possibility of antigenicity, E. coli-expressed histidine-tagged rhMFG-E8 is unsuitable for human therapy. Therefore, we hypothesize that human cell-expressed, tag-free rhMFG-E8 will have suitable structural and functional properties to be developed as a safe and effective novel biologic to treat inflammatory diseases including radiation injury. We produced a new tag-free rhMFG-E8 protein by cloning the human MFG-E8 full-length coding sequence without any fusion tag into a mammalian vector and expressed it in HEK293-derived cells. The construct includes the leader sequence of cystatin S to maximize secretion of rhMFG-E8 into the culture medium. After purification and confirmation of the protein identity, we first evaluated its biological activity in vitro. We then determined its efficacy in vivo utilizing an experimental rodent model of radiation injury, i.e., partial body irradiation (PBI). HEK293 cell supernatant containing tag-free rhMFG-E8 protein was concentrated, purified, and rhMFG-E8 was verified by SDS-PAGE with the standard human MFG-E8 loaded as control and, mass spectrometry followed by analysis using MASCOT for peptide mass fingerprint. The biological activity of human cell-expressed tag-free rhMFG-E8 was superior to that of E. coli-expressed His-tagged rhMFG-E8. Toxicity, stability, and pharmacokinetic studies indicate that tag-free rhMFG-E8 is safe, highly stable after lyophilization and long-term storage, and with a terminal elimination half-life in circulation of at least 1.45 h. In the 15 Gy PBI model, a dose-dependent improvement of the 30-day survival rate was observed after tag-free rhMFG-E8 treatment with a 30-day survival of 89%, which was significantly higher than the 25% survival in the vehicle group. The dose modification factor (DMF) of tag-free rhMFG-E8 calculated using probit analysis was 1.058. Tag-free rhMFG-E8 also attenuated gastrointestinal damage after PBI suggesting it as a potential therapeutic candidate for a medical countermeasure for radiation injury. Our new human cell-expressed tag-free rhMFG-E8 has proper structural and functional properties to be further developed as a safe and effective therapy to treat victims of severe acute radiation injury.

摘要

人乳脂肪球表皮生长因子因子 VIII(MFG-E8)作为一种桥连分子,可促进专业吞噬细胞清除垂死的细胞。大肠杆菌表达的组氨酸标记的重组人 MFG-E8(rhMFG-E8)在各种疾病状态下具有保护作用。然而,由于重组蛋白糖基化不当、错误折叠和可能的抗原性,大肠杆菌表达的组氨酸标记的 rhMFG-E8 不适合人体治疗。因此,我们假设人细胞表达的、无标签的 rhMFG-E8 将具有合适的结构和功能特性,可开发为一种安全有效的新型生物制剂,用于治疗炎症性疾病,包括辐射损伤。我们通过将人 MFG-E8 全长编码序列克隆到哺乳动物载体中,而不使用任何融合标签,从而产生了一种新的无标签 rhMFG-E8 蛋白。该构建体包含半胱氨酸蛋白酶抑制剂 S 的信号肽,以最大限度地将 rhMFG-E8 分泌到培养基中。在纯化并确认蛋白质的身份后,我们首先在体外评估其生物学活性。然后,我们利用辐射损伤的实验啮齿动物模型,即部分身体照射(PBI),来确定其体内疗效。含有无标签 rhMFG-E8 蛋白的 HEK293 细胞上清液经过浓缩、纯化,并用 SDS-PAGE 进行验证,标准人 MFG-E8 作为对照加载,并通过质谱分析和 MASCOT 进行肽质量指纹图谱分析。与人细胞表达的无标签 rhMFG-E8 相比,大肠杆菌表达的 His 标记 rhMFG-E8 的生物学活性更高。毒性、稳定性和药代动力学研究表明,无标签 rhMFG-E8 是安全的,冻干后和长期储存后高度稳定,在循环中的终末消除半衰期至少为 1.45 小时。在 15GyPBI 模型中,在用无标签 rhMFG-E8 治疗后观察到 30 天生存率的剂量依赖性改善,30 天生存率为 89%,明显高于载体组的 25%生存率。用概率分析计算的无标签 rhMFG-E8 的剂量修正因子(DMF)为 1.058。无标签 rhMFG-E8 还减轻了 PBI 后的胃肠道损伤,这表明它可能是辐射损伤医疗对策的潜在治疗候选药物。我们新的人细胞表达的无标签 rhMFG-E8 具有适当的结构和功能特性,可进一步开发为安全有效的治疗严重急性辐射损伤受害者的疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/460f/10719321/c63c3df3e5b5/41598_2023_49499_Fig1_HTML.jpg

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