Harhammer R, Nürnberg B, Spicher K, Schultz G
Institut für Pharmakologie, Universitätsklinikum Rudolf Virchow, Freie Universität Berlin, Germany.
Biochem J. 1994 Oct 1;303 ( Pt 1)(Pt 1):135-40. doi: 10.1042/bj3030135.
Significant amounts of G13, a member of the recently described G12-subfamily of heterotrimeric G-proteins, have been detected in rat brain membranes by specific antisera. The alpha-subunits of G13 (G alpha 13) were purified by using a combination of conventional and subunit-exchange chromatography. Purification was facilitated by the fact that the initial anion-exchange chromatography separated G13 from most of the other G-proteins, including Gq/11. Moreover, G alpha 13-enriched fractions obtained from this chromatographic step were devoid of beta gamma-dimers, despite the absence of G-protein-activating agents. Nevertheless, the purified G alpha 13 retained its ability to interact with beta gamma-dimers under appropriate conditions, i.e. the addition of Lubrol PX instead of cholate as detergent and the omission of ethylene glycol routinely used as a protecting additive. The interaction was demonstrated by (i) the binding of G alpha 13 to immobilized beta gamma-complexes and (ii) the formation of stable heterotrimers during sucrose-density-gradient centrifugation. Furthermore, our studies on G alpha 13 provide evidence for an extremely slow basal GDP/GTP exchange rate. The purified protein showed negligible binding of guanosine 5'-[gamma-[35S]thio]triphosphate (GTP[35S]). Accordingly, dissociation of G alpha 13 from immobilized beta gamma-complexes was achieved by AlF4-/Mg2+, but not by GTP[S]. These data indicate that G13 exhibits properties highly distinct from those of other G-proteins.
通过特异性抗血清已在大鼠脑膜中检测到大量的G13,它是最近描述的异源三聚体G蛋白G12亚家族的成员。利用传统色谱法和亚基交换色谱法相结合的方法纯化了G13的α亚基(Gα13)。初始阴离子交换色谱法将G13与包括Gq/11在内的大多数其他G蛋白分离,这一事实有助于纯化过程。此外,尽管没有G蛋白激活剂,但从该色谱步骤获得的富含Gα13的级分中没有βγ二聚体。然而,纯化的Gα13在适当条件下仍保留与βγ二聚体相互作用的能力,即添加Lubrol PX而非胆酸盐作为去污剂,并省略常规用作保护添加剂的乙二醇。这种相互作用通过以下方式得到证明:(i)Gα13与固定化的βγ复合物的结合;(ii)在蔗糖密度梯度离心过程中形成稳定的异源三聚体。此外,我们对Gα13的研究为极低的基础GDP/GTP交换速率提供了证据。纯化的蛋白显示出对鸟苷5'-[γ-[35S]硫代]三磷酸(GTP[35S])的结合可忽略不计。因此,Gα13与固定化的βγ复合物的解离是通过AlF4-/Mg2+实现的,而不是通过GTP[S]。这些数据表明G13具有与其他G蛋白截然不同的特性。