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The Yeast Saccharomyces cerevisiae as a Model for Understanding RAS Proteins and their Role in Human Tumorigenesis

机译:啤酒酵母作为了解RAS蛋白及其在人类肿瘤发生中的作用的模型

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The exploitation of the yeast Saccharomyces cerevisiae as a biological model for the investigation of complex molecular processes conserved in multicellular organisms, such as humans, has allowed fundamental biological discoveries. When comparing yeast and human proteins, it is clear that both amino acid sequences and protein functions are often very well conserved. One example of the high degree of conservation between human and yeast proteins is highlighted by the members of the RAS family. Indeed, the study of the signaling pathways regulated by RAS in yeast cells led to the discovery of properties that were often found interchangeable with RAS proto-oncogenes in human pathways, and vice versa. In this work, we performed an updated critical literature review on human and yeast RAS pathways, specifically highlighting the similarities and differences between them. Moreover, we emphasized the contribution of studying yeast RAS pathways for the understanding of human RAS and how this model organism can contribute to unveil the roles of RAS oncoproteins in the regulation of mechanisms important in the tumorigenic process, like autophagy.
机译:酵母酿酒酵母作为生物学模型的研究基础,可以研究诸如人之类的多细胞生物中保守的复杂分子过程,从而实现了基础生物学发现。比较酵母和人类蛋白质时,很明显氨基酸序列和蛋白质功能通常都非常保守。 RAS家族成员突显了人与酵母蛋白之间高度保守的一个例子。确实,对酵母细胞中RAS调控的信号通路的研究导致发现了在人类通路中常常与RAS原癌基因互换的特性,反之亦然。在这项工作中,我们对人和酵母RAS通路进行了更新的关键文献综述,特别强调了它们之间的异同。此外,我们强调了研究酵母RAS途径对理解人RAS的贡献,以及该模型有机体如何有助于揭示RAS癌蛋白在调节致癌过程中重要机制(如自噬)中的作用。

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