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LUX评分:脂质组同源性的一种度量指标。

The LUX Score: A Metric for Lipidome Homology.

作者信息

Marella Chakravarthy, Torda Andrew E, Schwudke Dominik

机构信息

Division of Bioanalytical Chemistry, Research Center Borstel, Leibniz-Center for Medicine and Biosciences, Borstel, SH, Germany; National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore, KA, India.

Centre for Bioinformatics, University of Hamburg, Hamburg, Germany.

出版信息

PLoS Comput Biol. 2015 Sep 22;11(9):e1004511. doi: 10.1371/journal.pcbi.1004511. eCollection 2015.

Abstract

A lipidome is the set of lipids in a given organism, cell or cell compartment and this set reflects the organism's synthetic pathways and interactions with its environment. Recently, lipidomes of biological model organisms and cell lines were published and the number of functional studies of lipids is increasing. In this study we propose a homology metric that can quantify systematic differences in the composition of a lipidome. Algorithms were developed to 1. consistently convert lipids structure into SMILES, 2. determine structural similarity between molecular species and 3. describe a lipidome in a chemical space model. We tested lipid structure conversion and structure similarity metrics, in detail, using sets of isomeric ceramide molecules and chemically related phosphatidylinositols. Template-based SMILES showed the best properties for representing lipid-specific structural diversity. We also show that sequence analysis algorithms are best suited to calculate distances between such template-based SMILES and we adjudged the Levenshtein distance as best choice for quantifying structural changes. When all lipid molecules of the LIPIDMAPS structure database were mapped in chemical space, they automatically formed clusters corresponding to conventional chemical families. Accordingly, we mapped a pair of lipidomes into the same chemical space and determined the degree of overlap by calculating the Hausdorff distance. We named this metric the 'Lipidome jUXtaposition (LUX) score'. First, we tested this approach for estimating the lipidome similarity on four yeast strains with known genetic alteration in fatty acid synthesis. We show that the LUX score reflects the genetic relationship and growth temperature better than conventional methods although the score is based solely on lipid structures. Next, we applied this metric to high-throughput data of larval tissue lipidomes of Drosophila. This showed that the LUX score is sufficient to cluster tissues and determine the impact of nutritional changes in an unbiased manner, despite the limited information on the underlying structural diversity of each lipidome. This study is the first effort to define a lipidome homology metric based on structures that will enrich functional association of lipids in a similar manner to measures used in genetics. Finally, we discuss the significance of the LUX score to perform comparative lipidome studies across species borders.

摘要

脂质组是指特定生物体、细胞或细胞区室中的脂质集合,该集合反映了生物体的合成途径及其与环境的相互作用。最近,生物模式生物和细胞系的脂质组已被公布,脂质功能研究的数量也在不断增加。在本研究中,我们提出了一种同源性度量方法,该方法可以量化脂质组组成中的系统差异。我们开发了一些算法来:1. 一致地将脂质结构转化为SMILES;2. 确定分子物种之间的结构相似性;3. 在化学空间模型中描述脂质组。我们使用一组异构神经酰胺分子和化学相关的磷脂酰肌醇详细测试了脂质结构转化和结构相似性度量。基于模板的SMILES在表示脂质特异性结构多样性方面表现出最佳特性。我们还表明,序列分析算法最适合计算此类基于模板的SMILES之间的距离,并且我们判定莱文斯坦距离是量化结构变化的最佳选择。当LIPIDMAPS结构数据库中的所有脂质分子映射到化学空间中时,它们自动形成对应于传统化学家族的簇。因此,我们将一对脂质组映射到同一化学空间中,并通过计算豪斯多夫距离来确定重叠程度。我们将此度量方法命名为“脂质组并列(LUX)分数”。首先,我们在四种脂肪酸合成具有已知遗传改变的酵母菌株上测试了这种估计脂质组相似性的方法。我们表明,尽管LUX分数仅基于脂质结构,但它比传统方法能更好地反映遗传关系和生长温度。接下来,我们将此度量方法应用于果蝇幼虫组织脂质组的高通量数据。这表明,尽管每个脂质组潜在结构多样性的信息有限,但LUX分数足以对组织进行聚类并以无偏方式确定营养变化的影响。本研究是首次基于结构定义脂质组同源性度量方法的尝试,该方法将以与遗传学中使用的度量类似的方式丰富脂质的功能关联。最后,我们讨论了LUX分数在跨物种进行比较脂质组研究中的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14f4/4578897/357487ab837e/pcbi.1004511.g001.jpg

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