Department of Biochemistry, School of Medicine, University of Crete Heraklion, Greece.
Front Oncol. 2013 Mar 1;3:40. doi: 10.3389/fonc.2013.00040. eCollection 2013.
Class IA PI3Ks consists of three isoforms of the p110 catalytic subunit designated p110α, p110β, and p110δ which are encoded by three separate genes. Gain-of-function mutations on PIK3CA gene encoding for p110α isoform have been detected in a wide variety of human cancers whereas no somatic mutations of genes encoding for p110β or p110δ have been reported. Unlike p110α and p110β which are ubiquitously expressed, p110δ is highly enriched in leukocytes and thus the p110δ PI3K pathway has attracted more attention for its involvement in immune disorders. However, findings have been accumulated showing that the p110δ PI3K plays a seminal role in the development and progression of some hematologic malignancies. A wealth of knowledge has come from studies showing the central role of p110δ PI3K in B-cell functions and B-cell malignancies. Further data have documented that wild-type p110δ becomes oncogenic when overexpressed in cell culture models and that p110δ is the predominant isoform expressed in some human solid tumor cells playing a prominent role in these cells. Genetic inactivation of p110δ in mice models and highly-selective inhibitors of p110δ have demonstrated an important role of this isoform in differentiation, growth, survival, motility, and morphology with the inositol phosphatase PTEN to play a critical role in p110δ signaling. In this review, we summarize our understanding of the p110δ PI3K signaling pathway in hematopoietic cells and malignancies, we highlight the evidence showing the oncogenic potential of p110δ in cells of non-hematopoietic origin and we discuss perspectives for potential novel roles of p110δ PI3K in cancer.
IA 类 PI3Ks 由三个编码 p110α、p110β 和 p110δ 的催化亚基同工型组成,这三个基因分别编码。在各种人类癌症中已经检测到编码 p110α 同工型的 PIK3CA 基因突变,而没有报道编码 p110β 或 p110δ 的基因的体细胞突变。与广泛表达的 p110α 和 p110β 不同,p110δ 在白细胞中高度富集,因此 p110δ PI3K 途径因其参与免疫紊乱而受到更多关注。然而,已经积累了大量的研究结果表明,p110δ PI3K 在一些血液恶性肿瘤的发生和发展中起着重要作用。大量的研究表明 p110δ PI3K 在 B 细胞功能和 B 细胞恶性肿瘤中的核心作用。进一步的数据表明,野生型 p110δ 在细胞培养模型中过表达时具有致癌性,并且 p110δ 是一些人类实体肿瘤细胞中表达的主要同工型,在这些细胞中发挥重要作用。在小鼠模型中 p110δ 的基因失活和对 p110δ 的高选择性抑制剂的研究表明,该同工型在分化、生长、存活、迁移和形态方面发挥重要作用,而磷酸肌醇 3-激酶磷酸酶(PTEN)在 p110δ 信号转导中发挥关键作用。在这篇综述中,我们总结了我们对造血细胞和恶性肿瘤中 p110δ PI3K 信号通路的理解,强调了表明 p110δ 在非造血细胞起源的细胞中具有致癌潜能的证据,并讨论了 p110δ PI3K 在癌症中可能具有潜在新作用的观点。