Guerry Paul, Duong Viet Dung, Herrmann Torsten
Institut des Sciences Analytiques, Centre de RMN à très Hauts Champs, Université de Lyon (UMR 5280 CNRS, Ecole Normale Supérieure de Lyon, Université Claude Bernard Lyon 1), 5 rue de la Doua, 69100, Villeurbanne, France.
J Biomol NMR. 2015 Aug;62(4):473-80. doi: 10.1007/s10858-015-9934-7. Epub 2015 Apr 28.
UNIO is a comprehensive software suite for protein NMR structure determination that enables full automation of all NMR data analysis steps involved--including signal identification in NMR spectra, sequence-specific backbone and side-chain resonance assignment, NOE assignment and structure calculation. Within the framework of the second round of the community-wide stringent blind NMR structure determination challenge (CASD-NMR 2), we participated in two categories of CASD-NMR 2, namely using either raw NMR spectra or unrefined NOE peak lists as input. A total of 15 resulting NMR structure bundles were submitted for 9 out of 10 blind protein targets. All submitted UNIO structures accurately coincided with the corresponding blind targets as documented by an average backbone root mean-square deviation to the reference proteins of only 1.2 Å. Also, the precision of the UNIO structure bundles was virtually identical to the ensemble of reference structures. By assessing the quality of all UNIO structures submitted to the two categories, we find throughout that only the UNIO-ATNOS/CANDID approach using raw NMR spectra consistently yielded structure bundles of high quality for direct deposition in the Protein Data Bank. In conclusion, the results obtained in CASD-NMR 2 are another vital proof for robust, accurate and unsupervised NMR data analysis by UNIO for real-world applications.
UNIO是一个用于蛋白质核磁共振结构测定的综合软件套件,它能使所有涉及的核磁共振数据分析步骤实现完全自动化,包括核磁共振谱中的信号识别、序列特异性主链和侧链共振归属、核Overhauser效应(NOE)归属以及结构计算。在第二轮全社区严格的盲法核磁共振结构测定挑战(CASD-NMR 2)框架内,我们参与了CASD-NMR 2的两类项目,即以原始核磁共振谱或未精炼的NOE峰列表作为输入。对于10个盲法蛋白质靶点中的9个,共提交了15个最终的核磁共振结构束。如文档所示,所有提交的UNIO结构与相应的盲法靶点精确吻合,与参考蛋白质的平均主链均方根偏差仅为1.2 Å。此外,UNIO结构束的精度与参考结构集合几乎相同。通过评估提交到这两类项目的所有UNIO结构的质量,我们始终发现,只有使用原始核磁共振谱的UNIO-ATNOS/CANDID方法始终能产生高质量的结构束,可直接存入蛋白质数据库。总之,在CASD-NMR 2中获得的结果是UNIO在实际应用中进行强大、准确且无监督的核磁共振数据分析的又一重要证据。