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基于 Alphacoronavirus 的 Parasporin-2 和刺突蛋白的活性肽的计算研究、合成与评估及其对结直肠癌细胞的作用。

Computational study, synthesis and evaluation of active peptides derived from Parasporin-2 and spike protein from Alphacoronavirus against colorectal cancer cells.

机构信息

Universidad de Santander, Facultad de Ciencias Médicas y de la Salud, Instituto de Investigación Masira, Bucaramanga, Colombia.

Department of Pathology and Medical Biology, University of Groningen, University medical Center Groningen, Groningen, Netherlands.

出版信息

Biosci Rep. 2021 Dec 22;41(12). doi: 10.1042/BSR20211964.

Abstract

Parasporin-2Aa1 (PS2Aa1) is a toxic protein of 37 KDa (30 kDa, activated form produced by proteolysis) that was shown to be cytotoxic against specific human cancer cells, although its mechanism of action has not been elucidated yet. In order to study the role of some native peptide fragments of proteins on anticancer activity, here we investigated the cytotoxic effect of peptide fragments from domain-1 of PS2Aa1 and one of the loops present in the binding region of the virus spike protein from Alphacoronavirus (HCoV-229E), the latter according to scientific reports, who showed interaction with the human APN (h-APN) receptor, evidence corroborated through computational simulations, and thus being possible active against colon cancer cells. Peptides namely P264-G274, Loop1-PS2Aa, and Loop2-PS2Aa were synthesized using the Fmoc solid-phase synthesis and characterized by mass spectrometry (MS). Additionally, one region from loop 1 of HCoV-229E, Loop1-HCoV-229E, was also synthesized and characterized. The A4W-GGN5 anticancer peptide and 5-fluorouracil (5-FU) were taken as a control in all experiments. Circular dichroism revealed an α-helix structure for the peptides derived from PS2Aa1 (P264-G274, Loop1-PS2Aa, and Loop2-PS2Aa) and β-laminar structure for the peptide derived from Alphacoronavirus spike protein Loop1-HCoV-229E. Peptides showed a hemolysis percentage of less than 20% at 100 µM concentration. Besides, peptides exhibited stronger anticancer activity against SW480 and SW620 cells after exposure for 48 h. Likewise, these compounds showed significantly lower toxicity against normal cells CHO-K1. The results suggest that native peptide fragments from Ps2Aa1 may be optimized as a novel potential cancer-therapeutic agents.

摘要

副杀菌肽-2Aa1(PS2Aa1)是一种 37 kDa 的毒性蛋白(30 kDa,通过蛋白水解产生的激活形式),已被证明对特定的人类癌细胞具有细胞毒性,尽管其作用机制尚未阐明。为了研究蛋白质的一些天然肽片段在抗癌活性中的作用,我们在这里研究了 PS2Aa1 结构域 1 的肽片段和甲型冠状病毒(HCoV-229E)刺突蛋白结合区的一个环的细胞毒性效应,后者据科学报道,与人类 APN(h-APN)受体相互作用,通过计算模拟得到了证据支持,因此可能对结肠癌细胞有效。肽段,即 P264-G274、Loop1-PS2Aa 和 Loop2-PS2Aa,使用 Fmoc 固相合成法合成,并通过质谱(MS)进行了表征。此外,还合成并表征了甲型冠状病毒 229E 的 Loop1 中的一个区域,即 Loop1-HCoV-229E。A4W-GGN5 抗癌肽和 5-氟尿嘧啶(5-FU)作为所有实验的对照。圆二色性分析表明,PS2Aa1 衍生的肽段(P264-G274、Loop1-PS2Aa 和 Loop2-PS2Aa)具有α-螺旋结构,而源自甲型冠状病毒刺突蛋白 Loop1-HCoV-229E 的肽段具有β-层状结构。在 100 µM 浓度下,肽段的溶血率低于 20%。此外,这些肽段在暴露 48 小时后对 SW480 和 SW620 细胞表现出更强的抗癌活性。同样,这些化合物对正常细胞 CHO-K1 的毒性明显较低。结果表明,Ps2Aa1 的天然肽片段可以作为一种新型潜在的癌症治疗剂进行优化。

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