Najib S, Martín-Romero C, González-Yanes C, Sánchez-Margalet V
Department of Medical Biochemistry and Molecular Biology, School of Medicine, Investigation Unit, Virgen Macarena University Hospital, Av. Sanchez Pizjuan 4, Seville 41009, Spain.
Cell Mol Life Sci. 2005 Jan;62(1):36-43. doi: 10.1007/s00018-004-4309-3.
Sam68, the substrate of Src in mitosis, belongs to the family of RNA binding proteins. Sam68 contains consensus sequences to interact with other proteins via specific domains. Thus, Sam68 has various proline-rich sequences to interact with SH3 domain-containing proteins. Moreover, Sam68 also has a C-terminal domain rich in tyrosine residues that is a substrate for tyrosine kinases. Tyrosine phosphorylation of Sam68 promotes its interaction with SH2 containing proteins. The association of Sam68 with SH3 domain-containing proteins, and its tyrosine phosphorylation may negatively regulate its RNA binding activity. The presence of these consensus sequences to interact with different domains allows this protein to participate in signal transduction pathways triggered by tyrosine kinases. Thus, Sam68 participates in the signaling of T cell receptors, leptin and insulin receptors. In these systems Sam68 is tyrosine phosphorylated and recruited to specific signaling complexes. The participation of Sam68 in signaling suggests that it may function as an adaptor molecule, working as a dock to recruit other signaling molecules. Finally, the connection between this role of Sam68 in protein-protein interaction with RNA binding activity may connect signal transduction of tyrosine kinases with the regulation of RNA metabolism.
Sam68是有丝分裂中Src的底物,属于RNA结合蛋白家族。Sam68含有通过特定结构域与其他蛋白质相互作用的共有序列。因此,Sam68有各种富含脯氨酸的序列与含SH3结构域的蛋白质相互作用。此外,Sam68还有一个富含酪氨酸残基的C末端结构域,它是酪氨酸激酶的底物。Sam68的酪氨酸磷酸化促进其与含SH2结构域的蛋白质相互作用。Sam68与含SH3结构域的蛋白质的结合及其酪氨酸磷酸化可能会负向调节其RNA结合活性。这些与不同结构域相互作用的共有序列的存在使该蛋白能够参与由酪氨酸激酶触发的信号转导途径。因此,Sam68参与T细胞受体、瘦素和胰岛素受体的信号传导。在这些系统中,Sam68被酪氨酸磷酸化并被招募到特定的信号复合物中。Sam68参与信号传导表明它可能作为一种衔接分子发挥作用,作为一个对接点来招募其他信号分子。最后,Sam68在蛋白质-蛋白质相互作用中的这一作用与RNA结合活性之间的联系可能将酪氨酸激酶的信号转导与RNA代谢的调节联系起来。