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Genetically engineered two-warhead evasins provide a method to achieve precision targeting of disease-relevant chemokine subsets

机译:基因改造的两弹头evasins提供了一种方法可以实现精确靶向疾病相关的趋化因子亚群

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摘要

Both CC and CXC-class chemokines drive inflammatory disease. Tick salivary chemokine-binding proteins (CKBPs), or evasins, specifically bind subsets of CC- or CXC-chemokines, and could precisely target disease-relevant chemokines. Here we have used yeast surface display to identify two tick evasins: a CC-CKBP, P1243 from Amblyomma americanum and a CXC-CKBP, P1156 from Ixodes ricinus. P1243 binds 11 CC-chemokines with Kd < 10 nM, and 10 CC-chemokines with Kd between 10 and 100 nM. P1156 binds two ELR + CXC-chemokines with Kd < 10 nM, and four ELR + CXC-chemokines with Kd between 10 and 100 nM. Both CKBPs neutralize chemokine activity with IC50 < 10 nM in cell migration assays. As both CC- and CXC-CKBP activities are desirable in a single agent, we have engineered “two-warhead” CKBPs to create single agents that bind and neutralize subsets of CC and CXC chemokines. These results show that tick evasins can be linked to create non-natural proteins that target subsets of CC and CXC chemokines. We suggest that “two-warhead” evasins, designed by matching the activities of parental evasins to CC and CXC chemokines expressed in disease, would achieve precision targeting of inflammatory disease-relevant chemokines by a single agent.
机译:CC和CXC类趋化因子均可引起炎症性疾病。 ick唾液趋化因子结合蛋白(CKBP)或evasins特异性结合CC或CXC趋化因子的子集,并且可以精确地靶向与疾病相关的趋化因子。在这里,我们使用酵母表面展示技术来鉴定两个壁虱evasins:一个来自美国美洲mb的CC-CKBP,P1243和一个来自Ixodes ricinus的CXC-CKBP,P1156。 P1243结合11个CC趋化因子的Kd 10 nM,和10个CC趋化因子的Kd在10至100 nM之间。 P1156以Kd 10 nM结合两个ELR + CXC趋化因子,以Kd在10和100 nM之间结合四个ELR EL + CXC趋化因子。在细胞迁移测定中,两个CKBP均以IC50 10 ^ nM中和趋化因子活性。由于在单一药剂中都需要CC-和CXC-CKBP活性,因此我们设计了“双弹头” CKBP,以创建结合并中和CC和CXC趋化因子子集的单一药剂。这些结果表明壁虱evasins可以链接以创建针对CC和CXC趋化因子子集的非天然蛋白质。我们建议通过将父母的evasins的活性与疾病中表达的CC和CXC趋化因子相匹配而设计的“双弹头” evasins,可以通过单一药物精确靶向与炎症性疾病相关的趋化因子。

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