Paganini Simona, Guidetti Gianni Francesco, Catricalà Silvia, Trionfini Piera, Panelli Simona, Balduini Cesare, Torti Mauro
Center of Excellence for Applied Biology, Department of Biochemistry, University of Pavia, via Bassi 21, 27100 Pavia, Italy.
Biochimie. 2006 Mar-Apr;88(3-4):285-95. doi: 10.1016/j.biochi.2005.08.007. Epub 2005 Sep 21.
The Rap family of small GTP-binding proteins is composed by four different members: Rap1A, Rap1B, Rap2A and Rap2B. In this work we report the identification and characterization of a fifth member of this family of small GTPases. This new protein is highly homologous to Rap2A and Rap2B, binds labeled GTP on nitrocellulose, and is recognized by a specific anti-Rap2 antibody, but not by an anti-Rap1 antibody. The protein has thus been named Rap2C. Binding of GTP to recombinant purified Rap2C was Mg(2+)-dependent. However, accurate comparison of the kinetics of nucleotide binding and release revealed that Rap2C bound GTP less efficiently and possessed slower rate of GDP release compared to the highly homologous Rap2B. Moreover, in the presence of Mg(2+), the relative affinity of Rap2C for GTP was only about twofold higher than that for GDP, while, under the same conditions, Rap2B was able to bind GTP with about sevenfold higher affinity than GDP. When expressed in eukaryotic cells, Rap2C localized at the plasma membrane, as dictated by the presence of a CAAX motif at the C-terminus. We found that Rap2C represented the predominant Rap2 protein expressed in circulating mononuclear leukocytes, but was not present in platelets. Importantly, Rap2C was found to be expressed in human megakaryocytes, suggesting that the protein may be down-regulated during platelets generation. This work demonstrates that Rap2C is a new member of the Rap2 subfamily of proteins, able to bind guanine nucleotides with peculiar properties, and differently expressed by various hematopoietic subsets. This new protein may therefore contribute to the still poorly clarified cellular events regulated by this subfamily of GTP-binding proteins.
小GTP结合蛋白Rap家族由四个不同成员组成:Rap1A、Rap1B、Rap2A和Rap2B。在本研究中,我们报告了该小GTP酶家族第五个成员的鉴定与特性。这种新蛋白与Rap2A和Rap2B高度同源,能在硝酸纤维素膜上结合标记的GTP,并被特异性抗Rap2抗体识别,但不被抗Rap1抗体识别。因此,该蛋白被命名为Rap2C。GTP与重组纯化的Rap2C的结合是Mg(2+)依赖性的。然而,对核苷酸结合和释放动力学的精确比较显示,与高度同源的Rap2B相比,Rap2C结合GTP的效率较低,GDP释放速率较慢。此外,在Mg(2+)存在的情况下,Rap2C对GTP的相对亲和力仅比对GDP高约两倍,而在相同条件下,Rap2B结合GTP的亲和力比对GDP高约七倍。当在真核细胞中表达时,由于C末端存在CAAX基序,Rap2C定位于质膜。我们发现Rap2C是循环单核白细胞中表达的主要Rap2蛋白,但在血小板中不存在。重要的是,发现Rap2C在人巨核细胞中表达,这表明该蛋白可能在血小板生成过程中被下调。这项工作表明,Rap2C是Rap2亚家族蛋白的一个新成员,能够以特殊特性结合鸟嘌呤核苷酸,并在不同造血亚群中差异表达。因此,这种新蛋白可能有助于解释这个GTP结合蛋白亚家族所调控的仍未完全阐明的细胞事件。