Jin Wenxing, Wang Yi, Liu Chao-Pei, Yang Na, Jin Mingliang, Cong Yao, Wang Mingzhu, Xu Rui-Ming
National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Genes Dev. 2016 Nov 1;30(21):2391-2403. doi: 10.1101/gad.291377.116. Epub 2016 Nov 10.
Assembly of the spliceosomal small nuclear ribonucleoparticle (snRNP) core requires the participation of the multisubunit SMN (survival of motor neuron) complex, which contains SMN and several Gemin proteins. The SMN and Gemin2 subunits directly bind Sm proteins, and Gemin5 is required for snRNP biogenesis and has been implicated in snRNA recognition. The RNA sequence required for snRNP assembly includes the Sm site and an adjacent 3' stem-loop, but a precise understanding of Gemin5's RNA-binding specificity is lacking. Here we show that the N-terminal half of Gemin5, which is composed of two juxtaposed seven-bladed WD40 repeat domains, recognizes the Sm site. The tandem WD40 repeat domains are rigidly held together to form a contiguous RNA-binding surface. RNA-contacting residues are located mostly on loops between β strands on the apical surface of the WD40 domains. Structural and biochemical analyses show that base-stacking interactions involving four aromatic residues and hydrogen bonding by a pair of arginines are crucial for specific recognition of the Sm sequence. We also show that an adenine immediately 5' to the Sm site is required for efficient binding and that Gemin5 can bind short RNA oligos in an alternative mode. Our results provide mechanistic understandings of Gemin5's snRNA-binding specificity as well as valuable insights into the molecular mechanism of RNA binding by WD40 repeat proteins in general.
剪接体小核核糖核蛋白颗粒(snRNP)核心的组装需要多亚基SMN(运动神经元存活)复合体的参与,该复合体包含SMN和几种Gemin蛋白。SMN和Gemin2亚基直接结合Sm蛋白,而Gemin5是snRNP生物发生所必需的,并且与snRNA识别有关。snRNP组装所需的RNA序列包括Sm位点和相邻的3'茎环,但对Gemin5的RNA结合特异性缺乏精确的了解。在这里,我们表明,由两个并列的七叶WD40重复结构域组成的Gemin5的N端一半识别Sm位点。串联的WD40重复结构域紧密结合在一起,形成一个连续的RNA结合表面。RNA接触残基大多位于WD40结构域顶端表面β链之间的环上。结构和生化分析表明,涉及四个芳香族残基的碱基堆积相互作用以及一对精氨酸的氢键作用对于Sm序列的特异性识别至关重要。我们还表明,Sm位点5'端紧邻的一个腺嘌呤对于有效结合是必需的,并且Gemin5可以以另一种模式结合短RNA寡核苷酸。我们的结果提供了对Gemin5的snRNA结合特异性的机制理解,以及对一般WD40重复蛋白RNA结合分子机制的宝贵见解。