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具有改善的蛋白水解稳定性的全烃订书钉α-螺旋肽的锥虫硫醇还原酶抑制作用和抗利什曼原虫活性。

Trypanothione reductase inhibition and anti-leishmanial activity of all-hydrocarbon stapled α-helical peptides with improved proteolytic stability.

作者信息

Ruiz-Santaquiteria Marta, de Castro Sonia, Toro Miguel A, de Lucio Héctor, Gutiérrez Kilian Jesús, Sánchez-Murcia Pedro A, Jiménez María Ángeles, Gago Federico, Jiménez-Ruiz Antonio, Camarasa María-José, Velázquez Sonsoles

机构信息

Instituto de Química Médica (IQM-CSIC), E-28006 Madrid, Spain.

Departamento de Biología de Sistemas, Universidad de Alcalá, E-28805 Alcalá de Henares, Madrid, Spain.

出版信息

Eur J Med Chem. 2018 Apr 10;149:238-247. doi: 10.1016/j.ejmech.2018.02.071. Epub 2018 Feb 24.

Abstract

Trypanothione reductase (TryR) is a well-established target in the search for novel antitrypanosomal and antileishmanial agents. We have previously identified linear and lactam-bridged 13-residue peptides derived from an α-helical region making up part of the dimeric interface of Leishmania infantum TryR (Li-TryR) which prevent trypanothione reduction by disrupting enzyme dimerization. We now show that i,i + 4 side-chain cross-linking with an all-hydrocarbon staple stabilizes the helical structure of these peptides and significantly improves their resistance to protease cleavage relative to previous linear and cyclic lactam analogues. Interestingly, replacement of the amide bridge by the hydrocarbon staple at the same cyclization positions generates derivatives (2 and 3) that similarly inhibit oxidoreductase activity of the enzyme but unexpectedly stabilize the TryR homodimer. The most proteolytically stable peptide 2 covalently linked to oligoarginines displayed potent in vitro leishmanicidal activity against L. infantum parasites.

摘要

锥虫硫醇还原酶(TryR)是寻找新型抗锥虫和抗利什曼原虫药物时一个已明确的靶点。我们之前已鉴定出源自婴儿利什曼原虫TryR(Li-TryR)二聚体界面一部分的α-螺旋区域的线性和内酰胺桥连的13个残基的肽,这些肽通过破坏酶的二聚化来阻止锥虫硫醇的还原。我们现在表明,用全碳氢化合物钉进行i,i + 4侧链交联可稳定这些肽的螺旋结构,并相对于之前的线性和环状内酰胺类似物显著提高它们对蛋白酶切割的抗性。有趣的是,在相同的环化位置用碳氢化合物钉取代酰胺桥会产生衍生物(2和3),它们同样抑制该酶的氧化还原酶活性,但出乎意料地稳定了TryR同型二聚体。与寡聚精氨酸共价连接的蛋白水解稳定性最高的肽2对婴儿利什曼原虫寄生虫表现出强大的体外杀利什曼原虫活性。

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