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Designing the Furin-Cleavable Linker in Recombinant Immunotoxins Based on Pseudomonas Exotoxin A

机译:基于假单胞菌外毒素A的重组免疫毒素中弗林蛋白酶可切割的接头设计

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Recombinant immunotoxins (RITs) are fusion proteins that join antibodies to protein toxins for targeted cell killing. RITs aimed with Pseudomonas exotoxin A (PE) are undergoing clinical trials for the treatment of cancer. The current design of PE-based RITs joins an antibody fragment to the catalytic domain of PE using a polypeptide linker that is cleaved by the protease furin. Intracellular cleavage of native PE by furin is required for cytotoxicity, yet the PE cleavage site has been shown to be a poor furin substrate. Here we describe the rational design of more efficiently cleaved furin linkers in PE-based RITs, and experiments evaluating their effects on cleavage and cytotoxicity. We found that changes to the furin site could greatly influence both cleavage and cytotoxicity, but the two parameters were not directly correlated. Furthermore, the effects of alterations to the furin linker were not universal. Identical mutations in the anti-CD22 RIT HA22-LR often displayed different cytotoxicity from mutations in the anti-mesothelin RIT SS1-LR/GGS, underscoring the prominent role of the target site in their intoxication pathways. Combining several beneficial mutations in HA22-LR resulted in a variant (HA22-LR/FUR) with a remarkably enhanced cleavage rate and improved cytotoxicity against five B cell lines and similar or enhanced cytotoxicity in five out of six hairy cell leukemia patient samples. This result informs the design of protease-sensitive linkers and suggests that HA22-LR/FUR may be a candidate for further preclinical development.
机译:重组免疫毒素(RITs)是将抗体与蛋白毒素结合以进行靶向细胞杀伤的融合蛋白。针对假单胞菌外毒素A(PE)的RIT正在接受治疗癌症的临床试验。基于PE的RITs的当前设计使用被蛋白酶弗林蛋白酶切割的多肽接头将抗体片段连接到PE的催化结构域。细胞毒性需要弗林蛋白酶对天然PE进行细胞内裂解,但是PE裂解位点显示是不良的弗林蛋白酶底物。在这里,我们描述了基于PE的RITs中更有效裂解的弗林蛋白酶接头的合理设计,并评估了其对裂解和细胞毒性的影响的实验。我们发现弗林蛋白酶位点的变化可能极大地影响裂解和细胞毒性,但两个参数没有直接相关。此外,弗林蛋白酶接头改变的影响并不普遍。抗CD22 RIT HA22-LR中相同的突变通常显示出与抗间皮素RIT SS1-LR / GGS中的突变不同的细胞毒性,从而强调了靶位点在其中毒途径中的重要作用。结合HA22-LR中的几个有益突变,可得到一个变体(HA22-LR / FUR),其裂解率显着提高,并且针对五种B细胞系的细胞毒性得到改善,在六分之三的多毛细胞白血病患者样品中具有相似或增强的细胞毒性。该结果为蛋白酶敏感性接头的设计提供了依据,并表明HA22-LR / FUR可能是进一步临床前开发的候选者。

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