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金头鲷肝脏整合蛋白质组学和代谢组学分析揭示了不同生存途径在代谢适应应激中的调控作用。

Gilthead Seabream Liver Integrative Proteomics and Metabolomics Analysis Reveals Regulation by Different Prosurvival Pathways in the Metabolic Adaptation to Stress.

机构信息

Centre of Marine Sciences (CCMAR), Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.

Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.

出版信息

Int J Mol Sci. 2022 Dec 6;23(23):15395. doi: 10.3390/ijms232315395.

Abstract

The study of the molecular mechanisms of stress appraisal on farmed fish is paramount to ensuring a sustainable aquaculture. Stress exposure can either culminate in the organism's adaptation or aggravate into a metabolic shutdown, characterized by irreversible cellular damage and deleterious effects on fish performance, welfare, and survival. Multiomics can improve our understanding of the complex stressed phenotype in fish and the molecular mediators that regulate the underlying processes of the molecular stress response. We profiled the stress proteome and metabolome of responding to different challenges common to aquaculture production, characterizing the disturbed pathways in the fish liver, i.e., the central organ in mounting the stress response. Label-free shotgun proteomics and untargeted metabolomics analyses identified 1738 proteins and 120 metabolites, separately. Mass spectrometry data have been made fully accessible via ProteomeXchange, with the identifier PXD036392, and via MetaboLights, with the identifier MTBLS5940. Integrative multivariate statistical analysis, performed with data integration analysis for biomarker discovery using latent components (DIABLO), depicted the 10 most-relevant features. Functional analysis of these selected features revealed an intricate network of regulatory components, modulating different signaling pathways related to cellular stress, e.g., the mTORC1 pathway, the unfolded protein response, endocytosis, and autophagy to different extents according to the stress nature. These results shed light on the dynamics and extent of this species' metabolic reprogramming under chronic stress, supporting future studies on stress markers' discovery and fish welfare research.

摘要

研究应激评估的分子机制对于确保水产养殖业的可持续发展至关重要。应激暴露要么导致生物体适应,要么恶化成代谢关闭,表现为不可逆的细胞损伤,并对鱼类的性能、福利和生存产生有害影响。多组学可以提高我们对鱼类复杂应激表型的理解,以及调节分子应激反应潜在过程的分子介质。我们对 响应水产养殖生产中常见的不同挑战的应激蛋白质组和代谢组进行了分析,描绘了鱼类肝脏中失调的途径,即应激反应的中心器官。无标记shotgun 蛋白质组学和非靶向代谢组学分析分别鉴定出 1738 种蛋白质和 120 种代谢物。质谱数据已通过 ProteomeXchange 以标识符 PXD036392 以及通过 MetaboLights 以标识符 MTBLS5940 完全公开。使用潜在成分(DIABLO)进行生物标志物发现的数据集成分析进行的综合多变量统计分析,描绘了 10 个最相关的特征。对这些选定特征的功能分析揭示了一个调节组件的复杂网络,调节与细胞应激相关的不同信号通路,例如 mTORC1 通路、未折叠蛋白反应、内吞作用和自噬,根据应激的性质,其调节程度不同。这些结果揭示了该物种在慢性应激下代谢重编程的动态和程度,为应激标志物的发现和鱼类福利研究提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc4d/9741202/46d6261b4e77/ijms-23-15395-g001.jpg

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