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A protein scaffold, engineered SPINK2, for generation of inhibitors with high affinity and specificity against target proteases

机译:一种蛋白质支架,工程脱落2,用于产生具有高亲和力和对靶蛋白酶的特异性的抑制剂

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Proteases are one of attractive therapeutic targets to play key roles in pharmacological action. There are many protease inhibitors in nature, and most of them structurally have cystine knot motifs. Their structures are favorable for recognition of active pockets of proteases, leading to the potent inhibition. However, they also have drawbacks, such as broad cross-reactivity, on the therapeutic application. To create therapeutic proteins derived from a disulfide-rich scaffold, we selected human serine protease inhibitor Kazal type 2 (SPINK2) through a scaffold screening, as a protein scaffold with requirements for therapeutic proteins. We then constructed a diverse library of the engineered SPINK2 by introducing random mutations into its flexible loop region with the designed method. By phage panning against four serine proteases, we isolated potent inhibitors against each target with picomolar KsubD/sub and sub-nanomolar Ksubi/sub values. Also, they exhibited the desired specificities against target proteases without inhibiting non-target proteases. The crystal structure of kallikrein related peptidase 4 (KLK4)-engineered SPINK2 complex revealed the interface with extensive conformational complementarity. Our study demonstrates that engineered SPINK2 can serve as a scaffold to generate therapeutic molecules against target proteins with groove structures.
机译:蛋白酶是在药理作用中发挥关键作用的有吸引力的治疗靶标之一。本质上有许多蛋白酶抑制剂,并且它们中的大部分结构具有胱氨酸结基板。它们的结构有利于识别蛋白酶的活性袋,导致有效的抑制。然而,在治疗应用上,它们还具有缺点,例如广泛的交叉反应性。为了产生富含二硫化二硫化的支架的治疗蛋白,我们通过支架筛选选择人丝氨酸蛋白酶抑制剂kazal型2(Spink2),作为蛋白质支架,具有治疗蛋白质的要求。然后,我们通过用设计方法将随机突变引入其柔性环区域的随机突变来构建工程爆炸2的多样化库。通过对四种丝氨酸蛋白酶的噬菌体,我们用PICOMOLAR k D 和亚纳米醇k 值,将有效抑制剂分离针对每个靶标。此外,它们表现出对靶蛋白酶的所需特异性而不抑制非靶蛋白酶。 Kallikrein相关肽酶4(KLK4)的晶体结构 - 突出的Spink2复合物揭示了具有广泛构象互补性的界面。我们的研究表明,工程化的Spink2可以用作具有凹槽结构的针对靶蛋白的治疗分子的支架。

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