AVPI 类似物和共轭物:分子对接研究和体外生物学评估

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Current Research in Biotechnology Pub Date : 2024-01-01 DOI:10.1016/j.crbiot.2024.100246
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引用次数: 0

摘要

近年来,小肽和非肽AVPI-/Smac-模拟物已被开发为IAP拮抗剂,并正在进行临床试验,以克服各种癌症类型的细胞凋亡抵抗。在本研究中,我们介绍了一组 AVPI-模拟物的分子建模研究和体外生物学评估,包括母体 AVPI、四肽 AVPI-模拟物和 AVPI-共轭物。分子建模研究与 HYDE 分析相结合,为 cIAP1-BIR3 和 XIAP-BIR3 结构域结合位点内蛋白质与配体的相互作用提供了宝贵的信息,结果表明这两个结构域(cIAP1- 和 XIAP-BIR3)的结合部分均由 22 个氨基酸残基组成,其活性部分由 11 个 AA 组成。此外,两个靶标共有 5 个氨基酸,即 Lys299、Gly306、Leu307、Trp310 和 Trp323。根据观察到的对接模型,cIAP1-BIR3 的 6 个氨基酸残基和 XIAP-BIR3 的 5 个氨基酸残基被认为积极参与了与相应配体形成 H 键。氨基酸序列 308(cIAP1-BIR3 中为 Arg308,XIAP-BIR3 中为 Thr308)同时形成两个氢键,似乎在提高结合亲和力方面起着关键作用。除了对接结果外,还利用细胞生物学(MTT 试验)和平行人工膜渗透性试验(PAMPA)对合成的一组 AVPI-模拟物进行了体外测试。结果表明,通过用 Hyp3 取代 Pro3 对 AVPI 进行双重修饰,以及通过与 RGD 类似物共轭拉长 AVPI 的 C 端,与母体 AVPI 肽相比,AVPI-共轭物在所有测试的癌细胞系(MDA-MB-231、MCF-7、HepG2 和 HT-29 细胞)中的抗增殖效果都有显著提高。SARs 分析表明,这种修饰有利于提高 AVPI 拟效物的整体生物活性,并指出 AVHypI-AgbGD 是活性最高的共轭物,对 MDA-MB-231 细胞的 IC50 值为 348 µM,对 MCF-7 细胞的 IC50 值为 457 µM,对 HepG2 细胞的 IC50 值为 399 µM,对 HT-29 细胞的 IC50 值为 578 µM。虽然计算出的 IC50 值仍然很高,但我们认为 AVHypI-AgbGD 肽为进一步改造奠定了良好的基础。此外,PAMPA 结果表明,与母体分子相比,用 Hyp 取代 Pro 提高了 AVHypI 肽的 BBB 通透性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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AVPI analogs and conjugates: Molecular docking studies and in vitro biological evaluation

In recent years, small peptide and non-peptide AVPI-/Smac-mimetics have been developed as IAP antagonists and are in clinical trials to overcome resistance to apoptosis in various cancer types. In this study, we present molecular modeling studies and in vitro biological evaluation of a set of AVPI-mimetics, including parent AVPI, tetrapeptide AVPI-mimetics and AVPI-conjugates.

Combined molecular modeling studies and HYDE analyses provided valuable information regarding the protein–ligand interactions within the binding site of cIAP1-BIR3 and XIAP-BIR3 domains, showing that the binding part of both domains (cIAP1- and XIAP-BIR3) are formed from 22 amino acid residues, and their active part of 11 AAs. Moreover, 5 amino acids are defined common for both targets, namely Lys299, Gly306, Leu307, Trp310, and Trp323. Based on the observed docking models, six amino acid residues for cIAP1-BIR3 and five amino acids for XIAP-BIR3 are recognized actively involved in the formation of H-bonds with the respective ligand. The amino acid sequence 308 (Arg308 in cIAP1-BIR3, Thr308 in XIAP-BIR3), simultaneously forming two H-hydrogen bonds, seems to plays a key role in improvement of binding affinity.

Apart from docking results the synthesized set of AVPI-mimetics was tested in vitro using cell biology (MTT assay) and parallel artificial membrane permeability assay (PAMPA). The results showed that the double modification of AVPI via substitution of Pro3 with Hyp3, as well as elongation of AVPI’s C-terminus by its conjugation with RGD-analogs, significantly increase the antiproliferative effects of AVPI-conjugates on all tested cancer cell lines (MDA-MB-231, MCF-7, HepG2 and HT-29 cells) compared to the parent AVPI peptide. SARs analysis defined this modification beneficial for the overall biological activity of the AVPI-mimetics and pointed out AVHypI-AgbGD as the most active conjugate with an IC50 of 348 µM for MDA-MB-231, 457 µM for MCF-7, 399 µM for HepG2, and 578 µM for HT-29 cells. Though the calculated IC50 values were still high, we consider AVHypI-AgbGD peptide as a good basis for further modifications. In addition, PAMPA results showed that substitution of Pro with Hyp improved the BBB permeability of AVHypI peptide compared to its parent molecule.

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来源期刊
Current Research in Biotechnology
Current Research in Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
6.70
自引率
3.60%
发文量
50
审稿时长
38 days
期刊介绍: Current Research in Biotechnology (CRBIOT) is a new primary research, gold open access journal from Elsevier. CRBIOT publishes original papers, reviews, and short communications (including viewpoints and perspectives) resulting from research in biotechnology and biotech-associated disciplines. Current Research in Biotechnology is a peer-reviewed gold open access (OA) journal and upon acceptance all articles are permanently and freely available. It is a companion to the highly regarded review journal Current Opinion in Biotechnology (2018 CiteScore 8.450) and is part of the Current Opinion and Research (CO+RE) suite of journals. All CO+RE journals leverage the Current Opinion legacy-of editorial excellence, high-impact, and global reach-to ensure they are a widely read resource that is integral to scientists' workflow.
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