首页> 外文期刊>Journal of proteome research >Consecutive Queries to Assess Biological Correlation in NMR Metabolomics: Performance of Comprehensive Search of Multiplets over Typical 1D H-1 NMR Database Search
【24h】

Consecutive Queries to Assess Biological Correlation in NMR Metabolomics: Performance of Comprehensive Search of Multiplets over Typical 1D H-1 NMR Database Search

机译:连续查询评估NMR代谢组的生物相关性:典型1D H-1 NMR数据库搜索的全面搜索的综合搜索

获取原文
获取原文并翻译 | 示例
       

摘要

NMR-based metabolomics requires proper identification of metabolites to draw conclusions from the system under study. Normally, multivariate data analysis is performed using 1D H-1 NMR spectra, and identification of peaks (and then compounds) relevant to the classification is accomplished using database queries as a first step. 1D H-1 NMR spectra of complex mixtures often suffer from peak overlap. To overcome this issue, several studies employed the projections of the (tilted and symmetrized) 2D H-1 J-resolved (JRES) spectra, p-JRES, which are similar to 1D H-1 decoupled spectra. Nonetheless, there are no public databases available that allow searching for chemical shift spectral data for multiplets. We present the Chemical Shift Multiplet Database (CSMDB), built utilizing JRES spectra obtained from the Birmingham Metabolite Library. The CSMDB provides scoring accounting for both matched and unmatched peaks from a query list and the database hits. This input list is generated from a projection of a 2D statistical correlation analysis on the JRES spectra, p-(JRES-STOCSY), being able to compare the multiplets for the matched peaks, in essence, the f1 traces from the JRES-STOCSY spectrum and from the database hit. The inspection of the unmatched peaks for the database hit allows the retrieval of peaks in the query list that have a decreased correlation coefficient due to low intensities. The CSMDB is coupled to "ConQuer ABC", which permits the assessment of biological correlation by means of consecutive queries with the unmatched peaks in the first and subsequent queries.
机译:基于NMR的代谢组学需要适当地鉴定代谢物,从研究中的系统得出结论。通常,使用1D H-1 NMR光谱进行多变量数据分析,并且使用数据库查询作为第一步,完成与分类相关的峰值(然后是化合物)的识别。 1D H-1复合混合物的NMR光谱经常遭受峰值重叠。为了克服这个问题,有几项研究采用了(倾斜和对称)2D H-1 J-分辨(JRES)光谱,P-JRES的突出物,其类似于1D H-1分离光谱。尽管如此,没有可用的公共数据库,允许搜索用于多重的化学转换谱数据。我们介绍了化学移位多重数据库(CSMDB),利用从伯明翰代谢物库获得的JRES光谱。 CSMDB为来自查询列表和数据库命中的匹配和无匹配的峰值提供评分计费。该输入列表是从JRES谱的2D统计相关分析的投影生成的,P-(JRES-STOCSY)能够与JRES-STOCSY频谱的F1迹线精确地比较匹配的峰的多重峰值从数据库中击中。对数据库命中的无与伦比的峰的检查允许在查询列表中检索峰值,该峰值由于低强度而具有降低的相关系数。 CSMDB耦合到“征收ABC”,这允许通过在第一和后续查询中的无与伦比的峰值进行连续查询来评估生物学相关性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号