RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A novel method to produce synthetic murine CXCL10 for efficient screening of functional variants.
A novel method to produce synthetic murine CXCL10 for efficient screening of functional variants.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
抗肿瘤免疫应答依赖于效应T细胞对实体瘤的浸润,这一过程由趋化因子引导。特别是,趋化因子CXCL10已被证明在介导肿瘤中CXCR3+细胞溶解性T细胞和NK细胞的募集方面发挥关键作用,尽管其作为治疗药物的应用尚未被广泛探索。其中一个限制是由于CXCL10被二肽基肽酶4(DPP4)快速灭活,DPP4是一种广泛表达的酶,在血浆和其他体液中具有活性。
在本研究中,我们描述了一种产生对DPP4 N端截断具有抗性的合成CXCL10的新方法。使用Fmoc固相肽合成方法,产生了合成小鼠WT CXCL10,显示出与重组蛋白相似的生化和生物学特性。该合成方法支持产生CXCL10的天然(氨基酸替换、插入或缺失)和非天然(化学修饰)变体。结合评估DPP4介导的切割、CXCR3信号传导效力和趋化活性的功能性筛选级联,我们成功生成了20种小鼠CXCL10变体。其中,两种非天然变体分别具有N-甲基化Leu3(MeLeu3)和Pro2与Leu3之间还原的酰胺键(rLeu3),显示出对DPP4截断的抗性,但CXCR3信号传导和趋化活性降低。有趣的是,MeLeu3和rLeu3 CXCL10表现为DPP4抑制剂,阻止WT CXCL10的截断。
本研究强调了使用Fmoc固相化学结合生化和生物学表征来快速鉴定具有所需特性的CXCL10变体的潜力。这些新方法开启了开发抗DPP4的CXCL10变体以及其他趋化因子底物的机会,同时保持趋化特性。
Antitumor immune responses depend on the infiltration of solid tumors by effector T cells, a process guided by chemokines. In particular, the chemokine CXCL10 has been shown to play a critical role in mediating recruitment of CXCR3 + cytolytic T and NK cells in tumors, though its use as a therapeutic agent has not been widely explored. One of the limitations is due to the rapid inactivation of CXCL10 by dipeptidyl peptidase 4 (DPP4), a broadly expressed enzyme that is active in plasma and other bodily fluids. In the present study, we describe a novel method to produce synthetic CXCL10 that is resistant to DPP4 N-terminal truncation. Using a Fmoc solid-phase peptide synthesis approach, synthetic murine WT CXCL10 was produced, showing similar biochemical and biological properties to the recombinant protein.
This synthesis method supported production of natural (amino acid substitution, insertion or deletion) and non-natural (chemical modifications) variants of CXCL10. In association with a functional screening cascade that assessed DPP4-mediated cleavage, CXCR3 signaling potency and chemotactic activity, we successfully generated 20 murine CXCL10 variants.
Among those, two non-natural variants with N-methylated Leu3 (MeLeu3) and a reduced amide bond between Pro2 and Leu3 (rLeu3), respectively, showed resistance to DPP4 truncation but decreased CXCR3 signaling and chemotactic activity. Interestingly, MeLeu3 and rLeu3 CXCL10 behaved as DPP4 inhibitors, preventing the truncation of WT CXCL10.
This study highlights the potential of using Fmoc solid-phase chemistry in association with biochemical and biological characterization to rapidly identify CXCL10 variants with desired properties. These novel methods unlock the opportunity to develop DPP4 resistant CXCL10 variants, as well as other chemokine substrates, while maintaining chemotactic properties.
MEMBER ACCOUNT
登录成功会直接打开下一页。