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对海月水母(Aurelia coerulea)运动系统分子结构-功能推断的比较蛋白质组学分析。

Comparative proteomic analysis of Aurelia coerulea for its locomotion system molecular structure-function inference.

机构信息

College of Basic Medicine, Second Military Medical University, Shanghai 200433, China.

College of Traditional Chinese Medicine, Jilin Agricultural University, Changchun 130118, China; Faculty of Naval Medicine, Second Military Medical University, Shanghai 200433, China.

出版信息

J Proteomics. 2019 Oct 30;209:103509. doi: 10.1016/j.jprot.2019.103509. Epub 2019 Aug 31.

Abstract

BACKGROUND

Rhythmic contraction and autonomous movement play a key role in the predation, production and displacement of jellyfish.

METHODS

Four independent body parts of the jellyfish Aurelia coerulea, including Bell, Tentacle, Oral arm and Gastric pouch were extracted and have been carried out a compared proteomics by liquid chromatography-mass spectrometry/mass-spectrometry (LC-MS/MS). ResultsA total of 13,429 peptides and 1916 proteins with molecular weights in the range of 10.6-980.9 kDa were identified, where 1916, 1562, 1474 and 1441 proteins were matched in the Gastric pouch, Tentacle, Oral arm and Bell, respectively. Gene Ontology (GO) analysis showed that translation, cytoplasma and ATP binding occupy the top differential terms of the three subdomains Biological process, Cellular Component and Molecular Function. A total of 326 pathways were successfully mapped that are mainly associated with intracellular synthesis, metabolism as well as intracellular functions. Moreover, a total of 27 contractile machinery associated proteins including 22 myosin, 3 actin and 2 tropomyosin were identified.

CONCLUSIONS

Our results provide a composition profile in the four independent body parts of the jellyfish A. coerulea, of which the identified muscular proteins will greatly help in the understanding of the structural and functional relationship, as well as their operating mechanisms in the jellyfish locomotion system.

SIGNIFICANCE

Omics studies have gained a new overall insight into the function of gene and protein networks during the development of motor systems in both bilateral and radial symmetrical animals. A compared proteomics using the label-free method of nano-LC-MS/MS has been performed through the four independent body parts of the moon jellyfish A. coerulea, including Bell, Tentacle, Oral arm and Gastric pouch. In addition to conventional bioinformatics analyses such as GO and KEGG, we have scanned the locomotion-related components, aligned their sequences, simulated three dimensional structures as well as did the molecular phylogenetic analyses. Our investigation provides a composition profile in the four independent body parts of the jellyfish A. coerulea, of which the identified muscular proteins will greatly help in the understanding of the structural and functional relationship, as well as their operating mechanisms in the jellyfish locomotion system.

摘要

背景

有节奏的收缩和自主运动在水母的捕食、繁殖和迁移中起着关键作用。

方法

从海月水母的四个独立身体部位(包括伞部、触手、口腕和胃囊)中提取样本,并通过液相色谱-质谱/质谱(LC-MS/MS)进行了比较蛋白质组学分析。结果共鉴定出分子量在 10.6-980.9 kDa 范围内的 13429 个肽段和 1916 个蛋白质,其中胃囊、触手、口腕和伞部分别匹配到 1916、1562、1474 和 1441 个蛋白质。基因本体(GO)分析显示,翻译、细胞质和 ATP 结合占据了三个亚区生物过程、细胞成分和分子功能的顶级差异术语。共成功映射了 326 条途径,这些途径主要与细胞内合成、代谢以及细胞内功能有关。此外,还鉴定到总共 27 种与收缩机制相关的蛋白,包括 22 种肌球蛋白、3 种肌动蛋白和 2 种原肌球蛋白。

结论

本研究提供了海月水母四个独立身体部位的组成谱,其中鉴定到的肌肉蛋白将极大地帮助理解水母运动系统的结构和功能关系及其运行机制。

意义

对生物系统的基因组学和蛋白质组学的研究已经获得了关于动物运动系统发育中基因和蛋白质网络功能的全新整体认识,包括两侧对称动物和辐射对称动物。本研究使用无标记的纳升级 LC-MS/MS 方法对海月水母的四个独立身体部位(包括伞部、触手、口腕和胃囊)进行了比较蛋白质组学分析。除了传统的生物信息学分析,如 GO 和 KEGG,我们还扫描了与运动相关的成分,对齐了它们的序列,模拟了三维结构,并进行了分子系统发育分析。我们的研究提供了海月水母四个独立身体部位的组成谱,其中鉴定到的肌肉蛋白将极大地帮助理解水母运动系统的结构和功能关系及其运行机制。

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