Weber Janine, Bao Han, Hartlmüller Christoph, Wang Zhiqin, Windhager Almut, Janowski Robert, Madl Tobias, Jin Peng, Niessing Dierk
Institute of Structural Biology, Helmholtz Zentrum München - German Research Center for Environmental Health, Neuherberg, Germany.
Department of Human Genetics, Emory University, Atlanta, United States.
Elife. 2016 Jan 8;5:e11297. doi: 10.7554/eLife.11297.
The neuronal DNA-/RNA-binding protein Pur-alpha is a transcription regulator and core factor for mRNA localization. Pur-alpha-deficient mice die after birth with pleiotropic neuronal defects. Here, we report the crystal structure of the DNA-/RNA-binding domain of Pur-alpha in complex with ssDNA. It reveals base-specific recognition and offers a molecular explanation for the effect of point mutations in the 5q31.3 microdeletion syndrome. Consistent with the crystal structure, biochemical and NMR data indicate that Pur-alpha binds DNA and RNA in the same way, suggesting binding modes for tri- and hexanucleotide-repeat RNAs in two neurodegenerative RNAopathies. Additionally, structure-based in vitro experiments resolved the molecular mechanism of Pur-alpha's unwindase activity. Complementing in vivo analyses in Drosophila demonstrated the importance of a highly conserved phenylalanine for Pur-alpha's unwinding and neuroprotective function. By uncovering the molecular mechanisms of nucleic-acid binding, this study contributes to understanding the cellular role of Pur-alpha and its implications in neurodegenerative diseases.
神经元DNA/RNA结合蛋白Pur-alpha是一种转录调节因子和mRNA定位的核心因子。Pur-alpha缺陷型小鼠出生后因多效性神经元缺陷而死亡。在此,我们报道了Pur-alpha的DNA/RNA结合结构域与单链DNA复合物的晶体结构。它揭示了碱基特异性识别,并为5q31.3微缺失综合征中的点突变效应提供了分子解释。与晶体结构一致,生化和核磁共振数据表明Pur-alpha以相同方式结合DNA和RNA,提示了两种神经退行性RNA病中三核苷酸和六核苷酸重复RNA的结合模式。此外,基于结构的体外实验解析了Pur-alpha解旋酶活性的分子机制。在果蝇中进行的体内分析补充实验证明了一个高度保守的苯丙氨酸对Pur-alpha解旋和神经保护功能的重要性。通过揭示核酸结合的分子机制,本研究有助于理解Pur-alpha在细胞中的作用及其在神经退行性疾病中的意义。