Misawa H, Ohtsubo M, Copeland N G, Gilbert D J, Jenkins N A, Yoshimura A
Institute of Life Science, Kurume University, Japan.
Biochem Biophys Res Commun. 1998 Mar 17;244(2):531-9. doi: 10.1006/bbrc.1998.8294.
Phosphoinositide 3-kinases (PI3Ks) have been shown to play critical roles in cell growth, differentiation, survival, and vesicular transport. Class II PI3Ks have been recently identified in mouse and human (PI3K-C2 alpha/m-p170/m-cpk and HsC2-PI3K) and in Drosophila (PI3K 68D/cpk) which contain C2 domain at the C-terminus. However, their physiological function is largely unknown. We report here cloning and characterization of murine PI3K-C2 gamma, a novel class II PI3K. The catalytic domain as well as C2 domain are highly conserved in the Class II PI3K family, while the N-terminal regions of these proteins share little similarity. Unlike other Class II PI3Ks, PI3K-C2 gamma exclusively expressed in the liver, and a N-terminal truncated form was found in lung and a certain hematopoietic cell line. Specific antiserum against PI3K-C2 gamma precipitated PI3K activity from the membrane fraction of mouse liver but not from heart. Recombinant PI3K-C2 gamma exhibited a restricted lipid substrate specificity; it phosphorylated phosphatidylinositol (PtdIns) and PtdIns4P but not PtdIns(4,5)P2. Deletion mutations revealed that both the N-terminal region and the C2 domain were critical for enzymatic activity. The murine PI3K-C2 gamma gene locus was mapped to the distal region of mouse chromosome 6 in a region of homology with human chromosome 12p, which is distinct from the position of HsC2-PI3K. Cloning and biochemical characterization of the third member of class II PI3Ks provide a new insight into the function of this subfamily of PI3Ks.
磷酸肌醇3激酶(PI3Ks)已被证明在细胞生长、分化、存活和囊泡运输中发挥关键作用。II类PI3Ks最近在小鼠和人类(PI3K-C2α/m-p170/m-cpk和HsC2-PI3K)以及果蝇(PI3K 68D/cpk)中被鉴定出来,它们在C末端含有C2结构域。然而,它们的生理功能在很大程度上尚不清楚。我们在此报告了小鼠PI3K-C2γ的克隆和特性分析,它是一种新型的II类PI3K。催化结构域以及C2结构域在II类PI3K家族中高度保守,而这些蛋白质的N末端区域相似度很低。与其他II类PI3Ks不同,PI3K-C2γ仅在肝脏中表达,在肺和某些造血细胞系中发现了一种N末端截短形式。针对PI3K-C2γ的特异性抗血清从小鼠肝脏的膜部分沉淀出PI3K活性,但未从心脏中沉淀出。重组PI3K-C2γ表现出有限的脂质底物特异性;它使磷脂酰肌醇(PtdIns)和磷脂酰肌醇4磷酸(PtdIns4P)磷酸化,但不使磷脂酰肌醇(4,5)二磷酸(PtdIns(4,5)P2)磷酸化。缺失突变表明N末端区域和C2结构域对酶活性都至关重要。小鼠PI3K-C2γ基因座被定位到小鼠染色体6的远端区域,该区域与人染色体12p同源,这与HsC2-PI3K的位置不同。II类PI3Ks第三个成员的克隆和生化特性分析为该PI3K亚家族的功能提供了新的见解。