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A Genetically Encoded, Phage-Displayed Cyclic-Peptide Library

机译:遗传编码的噬菌体显示的环肽文库

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摘要

Superior to linear peptides in biological activities, cyclic peptides are considered to have great potential as therapeutic agents. To identify cyclic-peptide ligands for therapeutic targets, phage-displayed peptide libraries in which cyclization is achieved by the covalent conjugation of cysteines have been widely used. To resolve drawbacks related to cysteine conjugation, we have invented a phage-display technique in which its displayed peptides are cyclized through a proximity-driven Michael addition reaction between a cysteine and an amber-codon-encoded N-epsilon-acryloyl-lysine (AcrK). Using a randomized 6-mer library in which peptides were cyclized at two ends through a cysteine-AcrK linker, we demonstrated the successful selection of potent ligands for TEV protease and HDAC8. All selected cyclic peptide ligands showed 4- to 6-fold stronger affinity to their protein targets than their linear counterparts. We believe this approach will find broad applications in drug discovery.
机译:优于生物活性的线性肽,循环肽被认为具有巨大的潜力作为治疗剂。 为了鉴定用于治疗靶标的环肽配体,噬菌体显示的肽文库,其中通过共价缀合的半胱氨酸缀合来实现环化。 为了解决与半胱氨酸缀合有关的缺点,我们发明了一种噬菌体显示技术,其中其显示的肽通过半胱氨酸和琥珀密码子编码的N-EPSILON-丙烯酰基 - 赖氨酸(ACRK)之间的接近驱动的迈克尔加成反应来环化 )。 使用随机的6-MER文库,其中通过半胱氨酸 - ACRK接头在两端将肽环化,我们证明了TEV蛋白酶和HDAC8的效力配体的成功选择。 所有选定的循环肽配体与它们的蛋白质靶标表达4-至6倍,而不是其线性对应物。 我们认为这种方法将在药物发现中找到广泛的应用。

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