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Yeast as a powerful model system for the study of apoptosis regulation by protein kinase C isoforms

机译:酵母作为研究蛋白激酶C亚型调控细胞凋亡的强大模型系统

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Protein kinase C (PKC) is a family of serine/threonine kinases involved in the transduction of signals that control different cellular processes, such as cell death and proliferation. This family comprises at least 10 isoforms that regulate apoptosis in an isoformspecific manner. However, controversial data about the role of individual PKC isoforms in apoptosis regulation are frequently reported. The co-existence of several PKC isoforms in a same mammalian cell, the distinct expression profile of PKC isoforms in different cell types, and the different stimulus applied may explain such contradicting results. Therefore major advances in the understanding of the molecular mechanisms that regulate the function of PKC isoforms in apoptosis are still required. Yeast has proved to be a valuable research tool to investigate molecular aspects of apoptosis regulation. Additionally, the conservation in yeast of major functional and molecular properties of mammalian PKC isoforms favours the use of this simpler cell model to uncover relevant aspects of apoptosis regulation by this kinase family. In this review, we cover the current knowledge about the role of different PKC isoforms in apoptosis. Moreover, we discuss the contribution of yeast to unravel several controversial issues about apoptosis regulation by PKC isoforms. The exploitation of yeast cells expressing individual PKC isoforms towards the identification of isoform-specific PKC modulators is also discussed. The studies here summarised highlight that the yeast cell model system can provide valuable insights in the PKC research field.
机译:蛋白激酶C(PKC)是丝氨酸/苏氨酸激酶家族,参与控制不同细胞过程(例如细胞死亡和增殖)的信号转导。该家族包含至少10种以同工型特异性方式调节细胞凋亡的同工型。然而,有关单个PKC同工型在细胞凋亡调控中作用的争议性数据经常被报道。同一哺乳动物细胞中几种PKC亚型的共存,PKC亚型在不同细胞类型中的不同表达谱以及所施加的不同刺激可能解释了这种矛盾的结果。因此,仍然需要对调节PKC同工型在细胞凋亡中的功能的分子机制的理解取得重大进展。酵母已被证明是研究细胞凋亡调控分子方面的有价值的研究工具。另外,在酵母中保守哺乳动物PKC同工型的主要功能和分子特性有利于使用这种更简单的细胞模型来揭示该激酶家族对细胞凋亡调控的相关方面。在这篇综述中,我们涵盖了有关不同PKC同工型在细胞凋亡中的作用的当前知识。此外,我们讨论了酵母菌对PKC亚型调控细胞凋亡的若干争议性问题的贡献。还讨论了表达个体PKC同工型的酵母细胞的开发,以鉴定同工型特异性PKC调节剂。此处的研究总结表明,酵母细胞模型系统可以在PKC研究领域提供有价值的见解。

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