Hippe Hans-Joerg, Lutz Susanne, Cuello Friederike, Knorr Katrin, Vogt Achim, Jakobs Karl H, Wieland Thomas, Niroomand Feraydoon
Innere Medizin III-Kardiologie, Universität Heidelberg, Bergheimer Strasse 58, D-69115 Heidelberg, Germany.
J Biol Chem. 2003 Feb 28;278(9):7227-33. doi: 10.1074/jbc.M210305200. Epub 2002 Dec 16.
Formation of GTP by nucleoside diphosphate kinase (NDPK) can contribute to G protein activation in vitro. To study the effect of NDPK on G protein activity in living cells, the NDPK isoforms A and B were stably expressed in H10 cells, a cell line derived from neonatal rat cardiomyocytes. Overexpression of either NDPK isoform had no effect on cellular GTP and ATP levels, basal cAMP levels, basal adenylyl cyclase activity, and the expression of G(s)alpha and G(i)alpha proteins. However, co-expression of G(s)alpha led to an increase in cAMP synthesis that was largely enhanced by the expression of NDPK B, but not NDPK A, and that was confirmed by direct measurement of adenylyl cyclase activity. Cells expressing an inactive NDPK B mutant (H118N) exhibited a decreased cAMP formation in response to G(s)alpha. Co-immunoprecipitation studies demonstrated a complex formation of the NDPK with Gbetagamma dimers. The overexpression of NDPK B, but not its inactive mutant or NDPK A, increased the phosphorylation of Gbeta subunits. In summary, our data demonstrate a specific NDPK B-mediated activation of a G protein in intact cells, which is apparently caused by formation of NDPK B.Gbetagamma complexes and which appears to contribute to the receptor-independent activation of heterotrimeric G proteins.
核苷二磷酸激酶(NDPK)催化生成GTP在体外可促进G蛋白激活。为研究NDPK对活细胞中G蛋白活性的影响,将NDPK同工型A和B稳定表达于H10细胞,该细胞系源自新生大鼠心肌细胞。任一NDPK同工型的过表达对细胞内GTP和ATP水平、基础cAMP水平、基础腺苷酸环化酶活性以及G(s)α和G(i)α蛋白的表达均无影响。然而,G(s)α的共表达导致cAMP合成增加,NDPK B的表达可显著增强这一效应,而NDPK A则无此作用,通过直接检测腺苷酸环化酶活性得以证实。表达无活性NDPK B突变体(H118N)的细胞在受到G(s)α刺激时cAMP生成减少。免疫共沉淀研究表明NDPK与Gβγ二聚体形成复合物。NDPK B的过表达而非其无活性突变体或NDPK A的过表达增加了Gβ亚基的磷酸化。总之,我们的数据表明在完整细胞中存在由NDPK B介导的G蛋白特异性激活,这显然是由NDPK B.Gβγ复合物的形成所致,且似乎有助于异源三聚体G蛋白的非受体依赖性激活。