Nannochloropsis gaditana as a Source of Novel Antitumor Compounds

Rafael Carrasco-Reinado, Almudena Escobar-Niño, F. J. Fernández‐Acero
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Abstract

During the last decades, proteomics approaches has become in a fundamental tool to unravel the proteins dynamic of biological processes, being an essential technique for basic and applied research [1-4]. Diverse bioinformatic tools are required to manage and explore the huge amount of information obtained from a single proteomics experiment.  To gain insight into potential applications of the identified proteins, a novel approach named "Applied Proteomics" has been developed by comparing the obtained protein information with the existing patents database. The development of massive sequencing technology and MS/MS improvements has allowed the application of proteomic of non-model microorganisms, which have been deeply described as a novel source of metabolites [5-8]. Between them, Nannochloropsis gaditana that has been pointed out as an alternative source of biomolecules [9-13]. Recently, our research group has reported the first complete proteome analysis of this microalga [14], which was analysed using the applied proteomics concept with the identification of 488 proteins with potential industrial applications. To validate our approach, we select UCA01 protein from prohibitin family. The recombinant protein showed its antitumor activity against two tumor cell lines, Caco2 (colon adenocarcinoma) and HepG-2 (hepatocellular carcinoma), proving that proteome data has been transformed into relevant biotechnological information. In summary, the framework of the European Union “Blue growth” politicies, the revalorization of microalgae biomass is crucial point. From Nannochloropsis gaditana has been developed a new tool against cancer, the protein named UCA01. This protein has selective effect inhibiting the growth of tumour cells, while does not show any effect over control cells. This approach describes the first practical approach to transform proteome information in a potential industrial application, named “applied proteomics”. It is based in a novel bio-algorism, which is able to identified proteins with potential industrial applications. From hundreds of proteins described in the proteome of N. gaditana, the bio-algorism identified over 400 proteins with potential use; one of them was selected as UCA01, “in vitro” and its potential prove it against cancer. The potential applications from this approach are unpredictable.
纳米绿藻作为新型抗肿瘤化合物的来源
在过去的几十年里,蛋白质组学方法已经成为揭示生物过程中蛋白质动态的基本工具,是基础研究和应用研究的重要技术[1-4]。需要多种生物信息学工具来管理和探索从单个蛋白质组学实验中获得的大量信息。为了深入了解鉴定蛋白质的潜在应用,通过将获得的蛋白质信息与现有专利数据库进行比较,开发了一种名为“应用蛋白质组学”的新方法。大规模测序技术的发展和质谱/质谱的改进使得非模式微生物的蛋白质组学得以应用,非模式微生物已被深入描述为代谢物的新来源[5-8]。其中,Nannochloropsis gaditana被认为是生物分子的另一种来源[9-13]。近年来,课题组首次对微藻[14]进行了完整的蛋白质组学分析,利用应用蛋白质组学概念对其进行了分析,鉴定出488个具有工业应用潜力的蛋白质。为了验证我们的方法,我们选择了禁止蛋白家族的UCA01蛋白。重组蛋白对Caco2(结肠腺癌)和HepG-2(肝细胞癌)两种肿瘤细胞系显示出抗肿瘤活性,证明蛋白质组学数据已转化为相关的生物技术信息。综上所述,在欧盟“蓝色增长”政策框架下,微藻生物量的重估是关键点。从纳米绿藻中已经开发出一种新的抗癌工具,这种蛋白质被命名为UCA01。该蛋白具有选择性抑制肿瘤细胞生长的作用,而对对照细胞无任何影响。这种方法描述了在潜在的工业应用中转换蛋白质组信息的第一种实用方法,称为“应用蛋白质组学”。它基于一种新的生物算法,能够识别具有潜在工业应用价值的蛋白质。利用生物算法,从棘天牛蛋白质组中描述的数百种蛋白质中,鉴定出400多种具有潜在利用价值的蛋白质;其中一种被选为UCA01,“在体外”证明其抗癌潜力。这种方法的潜在应用是不可预测的。
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