From the Department of Pharmacology and Experimental Therapy, Institute of Experimental and Clinical Pharmacology and Toxicology, Eberhard Karls University Hospitals and Clinics and Interfaculty Centre of Pharmacogenomics and Pharmaceutical Research, University of Tübingen, 72074 Tübingen, Germany.
J Biol Chem. 2013 Oct 25;288(43):31059-68. doi: 10.1074/jbc.M113.508234. Epub 2013 Sep 6.
Class IB phosphoinositide 3-kinase γ (PI3Kγ) comprises a single catalytic p110γ subunit, which binds to two non-catalytic subunits, p87 or p101, and controls a plethora of fundamental cellular responses. The non-catalytic subunits are assumed to be redundant adaptors for Gβγ enabling G-protein-coupled receptor-mediated regulation of PI3Kγ. Growing experimental data provide contradictory evidence. To elucidate the roles of the non-catalytic subunits in determining the specificity of PI3Kγ, we tested the impact of p87 and p101 in heterodimeric p87-p110γ and p101-p110γ complexes on the modulation of PI3Kγ activity in vitro and in living cells. RT-PCR, biochemical, and imaging data provide four lines of evidence: (i) specific expression patterns of p87 and p101, (ii) up-regulation of p101, providing the basis to consider p87 as a protein forming a constitutively and p101 as a protein forming an inducibly expressed PI3Kγ, (iii) differences in basal and stimulated enzymatic activities, and (iv) differences in complex stability, all indicating apparent diversity within class IB PI3Kγ. In conclusion, expression and activities of PI3Kγ are modified differently by p87 and p101 in vitro and in living cells, arguing for specific regulatory roles of the non-catalytic subunits in the differentiation of PI3Kγ signaling pathways.
I 类磷酸肌醇 3-激酶 γ(PI3Kγ)由单一的催化 p110γ 亚基组成,它与两个非催化亚基 p87 或 p101 结合,并控制着大量基本的细胞反应。非催化亚基被认为是 Gβγ 的冗余衔接子,能够使 G 蛋白偶联受体调节 PI3Kγ。越来越多的实验数据提供了相互矛盾的证据。为了阐明非催化亚基在确定 PI3Kγ 特异性中的作用,我们测试了 p87 和 p101 在异二聚体 p87-p110γ 和 p101-p110γ 复合物中对体外和活细胞中 PI3Kγ 活性的调节作用。RT-PCR、生化和成像数据提供了四条证据:(i)p87 和 p101 的特异性表达模式,(ii)p101 的上调,为考虑 p87 作为一种组成性表达的蛋白质和 p101 作为一种诱导性表达的 PI3Kγ 提供了基础,(iii)基础和刺激酶活性的差异,以及(iv)复合物稳定性的差异,所有这些都表明 I 类 PI3Kγ 存在明显的多样性。总之,p87 和 p101 在体外和活细胞中对 PI3Kγ 的表达和活性的修饰不同,这表明非催化亚基在 PI3Kγ 信号通路的分化中具有特定的调节作用。