Rosskopf Dieter, Manthey Iris, Habich Christiane, Kielbik Marzena, Eisenhardt Andreas, Nikula Christiane, Urban Melanie, Kohnen Stefanie, Graf Eva, Ravens Ursula, Siffert Winfried
Institut für Pharmakologie, Universitätsklinikum Essen, D-45122 Essen, Germany.
Biochem J. 2003 Apr 1;371(Pt 1):223-32. doi: 10.1042/BJ20021208.
The T-allele of a polymorphism (C825T) in the gene for the G-protein beta 3 subunit (GNB3) is associated with cardiovascular and metabolic disorders, distinct cellular features and altered drug responses. The molecular mechanisms that give rise to this complex phenotype have been linked to the occurrence of G beta 3s, a splice variant of GNB3. G beta 3s is predominantly expressed in cells with the 825T-allele. In the present study we describe the identification and characterization of an additional G beta 3 splice variant referred to as G beta 3s2. Its mRNA is expressed in heart, blood cells and tumour tissue, and its expression is also tightly associated with the GNB3 825T-allele. G beta 3s2 is generated by alternative splicing using non-canonical splice sites. G beta subunits belong to the family of propeller proteins and consist of seven regular propeller blades. Transcripts for G beta 3s2 are lacking 129 bp of the coding sequence of the wild-type G beta 3 protein. Thus the predicted structure consists of only six propeller blades, which resembles the structure of G beta 3s. Co-immunoprecipitation analyses indicated that G beta 3s2 dimerizes with different G gamma subunits, e.g. G gamma 5, G gamma 8(C) and G gamma 12. In Sf9 insect cells, expression of G beta 3s2 together with G gamma 12 enhances receptor-stimulated activation of G alpha(i2). Expression of G beta 3s2 in mammalian cells activated the mitogen-activated protein kinase cascade. Together, these results suggest that G beta 3s2 is a biologically active G beta variant which may play a role in the manifestation of the complex phenotype associated with the 825T-allele.
G蛋白β3亚基(GNB3)基因多态性(C825T)的T等位基因与心血管和代谢紊乱、独特的细胞特征以及药物反应改变有关。导致这种复杂表型的分子机制与GNB3的剪接变体Gβ3s的出现有关。Gβ3s主要在具有825T等位基因的细胞中表达。在本研究中,我们描述了另一种Gβ3剪接变体Gβ3s2的鉴定和特征。其mRNA在心脏、血细胞和肿瘤组织中表达,其表达也与GNB3 825T等位基因紧密相关。Gβ3s2是通过使用非经典剪接位点的可变剪接产生的。Gβ亚基属于螺旋桨蛋白家族,由七个规则的螺旋桨叶片组成。Gβ3s2的转录本缺少野生型Gβ3蛋白编码序列的129 bp。因此,预测的结构仅由六个螺旋桨叶片组成,类似于Gβ3s的结构。免疫共沉淀分析表明,Gβ3s2与不同的Gγ亚基二聚化,例如Gγ5、Gγ8(C)和Gγ12。在Sf9昆虫细胞中,Gβ3s2与Gγ12一起表达增强了受体刺激的Gα(i2)激活。Gβ3s2在哺乳动物细胞中的表达激活了丝裂原活化蛋白激酶级联反应。总之,这些结果表明Gβ3s2是一种具有生物活性的Gβ变体,可能在与825T等位基因相关的复杂表型的表现中起作用。