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高效的大、无序蛋白质主链和侧链分配方案:49.2 kDa 微管相关蛋白 2c 的瞬态二级结构分析。

Efficient protocol for backbone and side-chain assignments of large, intrinsically disordered proteins: transient secondary structure analysis of 49.2 kDa microtubule associated protein 2c.

机构信息

Faculty of Science, NCBR, and CEITEC, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.

出版信息

J Biomol NMR. 2013 Aug;56(4):291-301. doi: 10.1007/s10858-013-9761-7. Epub 2013 Jul 23.

Abstract

Microtubule-associated proteins (MAPs) are abundantly present in axons and dendrites, and have been shown to play crucial role during the neuronal morphogenesis. The period of main dendritic outgrowth and synaptogenesis coincides with high expression levels of one of MAPs, the MAP2c, in rats. The MAP2c is a 49.2 kDa intrinsically disordered protein. To achieve an atomic resolution characterization of such a large protein, we have developed a protocol based on the acquisition of two five-dimensional (13)C-directly detected NMR experiments. Our previously published 5D CACONCACO experiment (Nováček et al. in J Biomol NMR 50(1):1-11, 2011) provides the sequential assignment of the backbone resonances, which is not interrupted by the presence of the proline residues in the amino acid sequence. A novel 5D HC(CC-TOCSY)CACON experiment facilitates the assignment of the aliphatic side chain resonances. To streamline the data analysis, we have developed a semi-automated procedure for signal assignments. The obtained data provides the first atomic resolution insight into the conformational state of MAP2c and constitutes a model for further functional studies of MAPs.

摘要

微管相关蛋白(MAPs)在轴突和树突中大量存在,并已被证明在神经元形态发生过程中发挥关键作用。大鼠中主要树突生长和突触发生的时期与 MAP2c 的高表达水平相吻合,MAP2c 是一种 49.2kDa 的固有无序蛋白。为了实现对如此大的蛋白质进行原子分辨率的表征,我们开发了一种基于获取两个五维(13)C 直接检测 NMR 实验的方案。我们之前发表的 5D CACONCACO 实验(Nováček 等人,J Biomol NMR 50(1):1-11, 2011)提供了骨架共振的顺序分配,该分配不会被氨基酸序列中脯氨酸残基的存在打断。一种新的 5D HC(CC-TOCSY)CACON 实验有助于分配脂肪侧链共振。为了简化数据分析,我们开发了一种用于信号分配的半自动程序。获得的数据首次提供了 MAP2c 构象状态的原子分辨率见解,并为进一步研究 MAPs 的功能提供了模型。

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