Vitali Francesca, Henning Anke, Oberstrass Florian C, Hargous Yann, Auweter Sigrid D, Erat Michèle, Allain Frédéric H-T
Institute for Molecular Biology and Biophysics, Swiss Federal Institute of Technology Zurich, ETH-Hönggerberg, Zürich, Switzerland.
EMBO J. 2006 Jan 11;25(1):150-62. doi: 10.1038/sj.emboj.7600911. Epub 2005 Dec 15.
The polypyrimidine tract binding protein (PTB) is a 58 kDa protein involved in many aspects of RNA metabolism. In this study, we focused our attention on the structure of the two C-terminal RNA recognition motifs (RRM3 and RRM4) of PTB. In a previous study, it was found that the two RRMs are independent in the free state. We recently determined the structure of the same fragment in complex with RNA and found that the two RRMs interact extensively. This difference made us re-evaluate in detail the free protein structure and in particular the interdomain interface. We used a combination of NMR spectroscopy and segmental isotopic labeling to unambiguously study and characterize the interdomain interactions. An improved segmental isotopic labeling protocol was used, enabling us to unambiguously identify 130 interdomain NOEs between the two RRMs and to calculate a very precise structure. The structure reveals a large interdomain interface, resulting in a very unusual positioning of the two RRM domains relative to one another.
多嘧啶序列结合蛋白(PTB)是一种58 kDa的蛋白质,参与RNA代谢的多个方面。在本研究中,我们将注意力集中在PTB两个C端RNA识别基序(RRM3和RRM4)的结构上。在之前的一项研究中,发现这两个RRM在游离状态下是独立的。我们最近确定了与RNA结合的同一片段的结构,发现这两个RRM广泛相互作用。这种差异促使我们详细重新评估游离蛋白的结构,特别是结构域间的界面。我们结合使用核磁共振光谱和片段同位素标记来明确研究和表征结构域间的相互作用。使用了一种改进的片段同位素标记方案,使我们能够明确识别两个RRM之间的130个结构域间NOE,并计算出非常精确的结构。该结构揭示了一个大的结构域间界面,导致两个RRM结构域相对于彼此处于非常不寻常的位置。