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Relative Expression Levels Rather Than Specific Activity Plays the Major Role in Determining In Vivo AKT Isoform Substrate Specificity

机译:相对表达水平而非特定活性在确定体内AKT同工型底物特异性中起主要作用

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摘要

The AKT protooncogene mediates many cellular processes involved in normal development and disease states such as cancer. The three structurally similar isoforms: AKT1, AKT2, and AKT3 exhibit both functional redundancy and isoform-specific functions; however the basis for their differential signalling remains unclear. Here we show that in vitro, purified AKT3 is ∼47-fold more active than AKT1 at phosphorylating peptide and protein substrates. Despite these marked variations in specific activity between the individual isoforms, a comprehensive analysis of phosphorylation of validated AKT substrates indicated only subtle differences in signalling via individual isoforms in vivo. Therefore, we hypothesise, at least in this model system, that relative tissue/cellular abundance, rather than specific activity, plays the dominant role in determining AKT substrate specificity in situ.
机译:AKT原癌基因介导许多参与正常发育和疾病状态(例如癌症)的细胞过程。三种结构相似的同工型:AKT1,AKT2和AKT3既显示功能冗余又显示特定于异构体的功能。然而,它们差分信号的基础仍不清楚。在这里,我们表明,在体外,纯化的AKT3在磷酸化肽和蛋白质底物上的活性比AKT1高约47倍。尽管各个同工型之间的比活存在明显变化,但对经过验证的AKT底物磷酸化的全面分析表明,体内各个同工型在信号转导方面仅存在细微差别。因此,我们至少在此模型系统中假设,相对的组织/细胞丰度而不是比活性在决定AKT底物原位特异性方面起着主导作用。

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