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用肽配体靶向Ship2-Sam:多学科方法的新见解。

Targeting Ship2-Sam with peptide ligands: Novel insights from a multidisciplinary approach.

作者信息

Vincenzi Marian, Anna Mercurio Flavia, Di Natale Concetta, Palumbo Rosanna, Pirone Luciano, La Manna Sara, Marasco Daniela, Maria Pedone Emilia, Leone Marilisa

机构信息

Institute of Biostructures and Bioimaging (CNR), Naples, Italy.

Istituto Italiano di Tecnologia, IIT@CRIB, Naples, Italy; Centro di Ricerca Interdipartimentale sui Biomateriali CRIB, University of Naples Federico II, Naples, Italy.

出版信息

Bioorg Chem. 2022 May;122:105680. doi: 10.1016/j.bioorg.2022.105680. Epub 2022 Feb 26.

DOI:10.1016/j.bioorg.2022.105680
PMID:35248981
Abstract

The lipid phosphatase Ship2 binds the EphA2 receptor through a heterotypic Sam-Sam (Sterile alpha motif) interaction. Inhibitors of the Ship2-Sam/EphA2-Sam complex hold a certain potential as novel anticancer agents. The previously reported "KRI3" peptide binds Ship2-Sam working as a weak antagonist of the EphA2-Sam/Ship2-Sam interaction. Herein, the design and functional evaluation of KRI3 analogues, both linear and cyclic, are described. A multidisciplinary study was conducted through computational docking techniques, and conformational analyses by CD and NMR spectroscopies. The ability of new peptides to bind Ship2-Sam was analysed by NMR, MST and SPR assays. Studies on linear KRI3 analogues pointed out that aromatic interactions through tyrosines are important for the association with Ship2-Sam whereas, an increase of the net positive charge of the sequence or peptide cyclization through a disulfide bridge can favour unspecific interactions without a substantial improvement of the binding affinity to Ship2-Sam. Interestingly, preliminary cell-based assays demonstrated KRI3 cellular uptake even without the conjugation to a cell penetrating sequence with a main cytosolic localization. This work highlights important features of the KRI3 peptide that can be further exploited to design analogues able to hamper Sam-Sam interactions driven by electrostatic contacts.

摘要

脂质磷酸酶Ship2通过异型Sam-Sam(无活性α基序)相互作用与EphA2受体结合。Ship2-Sam/EphA2-Sam复合物的抑制剂作为新型抗癌药物具有一定潜力。先前报道的“KRI3”肽与Ship2-Sam结合,作为EphA2-Sam/Ship2-Sam相互作用的弱拮抗剂。本文描述了线性和环状KRI3类似物的设计和功能评估。通过计算对接技术以及CD和NMR光谱进行的构象分析开展了一项多学科研究。通过NMR、MST和SPR分析检测新肽与Ship2-Sam结合的能力。对线性KRI3类似物的研究指出,通过酪氨酸的芳香族相互作用对于与Ship2-Sam的结合很重要,而序列净正电荷的增加或通过二硫键的肽环化会有利于非特异性相互作用,而不会显著提高对Ship2-Sam的结合亲和力。有趣的是,初步的基于细胞的分析表明,即使没有与主要定位于胞质的细胞穿透序列偶联,KRI3也能被细胞摄取。这项工作突出了KRI3肽的重要特征,可进一步利用这些特征来设计能够阻碍由静电接触驱动的Sam-Sam相互作用的类似物。

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Targeting Ship2-Sam with peptide ligands: Novel insights from a multidisciplinary approach.用肽配体靶向Ship2-Sam:多学科方法的新见解。
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引用本文的文献

1
Exploring a Potential Optimization Route for Peptide Ligands of the Sam Domain from the Lipid Phosphatase Ship2.探索脂质磷酸酶 Ship2 的 Sam 结构域肽配体的潜在优化途径。
Int J Mol Sci. 2024 Oct 2;25(19):10616. doi: 10.3390/ijms251910616.
2
Hunting for Novel Routes in Anticancer Drug Discovery: Peptides against Sam-Sam Interactions.寻找抗癌药物发现的新途径:针对 Sam-Sam 相互作用的肽。
Int J Mol Sci. 2022 Sep 8;23(18):10397. doi: 10.3390/ijms231810397.