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Should individual PI3 kinase isoforms be targeted in cancer?

机译:个体PI3激酶同工型是否应作为癌症的靶标?

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Activation of the phosphoinositide-3-kinase (PI3K) signaling pathway is frequently found in common human cancers, brought about by oncogenic receptor tyrosine kinases (RTKs) acting upstream, PTEN loss, or activating mutations of PI3K itself. Recent studies have delineated distinct but overlapping functions in cell signaling and tumorigenesis for p110alpha and p110beta, the two major catalytic subunits of PI3K expressed in the tissues of origin for the common tumor types. In most cell types studied, p110alpha carries the majority of the PI3K signal in classic RTK signal transduction, while p110beta responds to GPCRs. Both p110alpha and p110beta function in cellular transformation induced by alterations in components of PI3K pathway. Specifically, p110alpha is essential for the signaling and growth of tumors driven by PIK3CA mutations and/or oncogenic RTKs/Ras, whereas p110beta is the major isoform in mediating PTEN-deficient tumorigenesis. While pan-PI3K inhibitors are currently being tested in the clinic, p110 isoform-specific inhibition holds promise as a therapeutic strategy.
机译:磷酸肌醇-3-激酶(PI3K)信号传导通路的激活在常见的人类癌症中经常发现,这是由上游的致癌受体酪氨酸激酶(RTK),PTEN缺失或激活的PI3K自身突变引起的。最近的研究已经描述了p110alpha和p110beta在细胞信号传导和肿瘤发生中的独特但​​重叠的功能,p110alpha和p110beta是常见肿瘤类型在起源组织中表达的PI3K的两个主要催化亚基。在大多数研究的细胞类型中,p110alpha携带经典RTK信号转导中的大部分PI3K信号,而p110beta响应GPCR。 p110alpha和p110beta均在PI3K途径组分改变引起的细胞转化中起作用。具体而言,p110alpha对于由PIK3CA突变和/或致癌RTKs / Ras驱动的肿瘤的信号传导和生长至关重要,而p110beta是介导PTEN缺陷型肿瘤发生的主要同工型。尽管目前正在临床上测试pan-PI3K抑制剂,但p110亚型特异性抑制仍有望作为一种治疗策略。

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