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联合蛋白质组学和代谢组学分析揭示生长抑素 DNA 疫苗在山羊中的全面调控作用。

Combined Proteomic and Metabolomic Analysis Reveals Comprehensive Regulation of Somatostatin DNA Vaccine in Goats.

机构信息

Chongqing Key Laboratory of Forage & Herbivore, Chongqing Engineering Research Centre for Herbivores Resource Protection and Utilization, College of Animal Science and Technology, Southwest University, Chongqing 400715, China.

出版信息

Int J Mol Sci. 2024 Jun 23;25(13):6888. doi: 10.3390/ijms25136888.

Abstract

Somatostatin (SS) plays crucial regulatory roles in animal growth and reproduction by affecting the synthesis and secretion of growth hormone (GH). However, the mechanism by which SS regulates growth and development in goats is still unclear. In order to investigate the regulatory networks of the hypothalamus and pituitary in goats affected by DNA vaccines, in this study, we used a previously established oral attenuated DNA vaccine, (ptCS/2SS-asd), to treat wethers. We analyzed the protein changes in hypothalamic and pituitary tissues using a TMT-based proteomics approach. Additionally, we examined the metabolic profiles of the serum of control and immunized wethers through untargeted metabolomics using liquid chromatography-mass spectrometry (LC-MS). Key signaling pathways were identified based on differentially expressed metabolites (DEMs) and differentially expressed proteins (DEPs). Furthermore, the effect of critical DEPs on signaling pathways was confirmed through Western blotting (WB) experiments, which elucidated the mechanism of active immunization in wethers. A proteomics analysis revealed that the expression of 58 proteins in the hypothalamus and 124 in the pituitary gland was significantly altered following vaccine treatment (fold change > 1.2 or < 0.83, < 0.05). In the hypothalamus, many DEPs were associated with gene ontology (GO) terms related to neuronal signaling. In contrast, most DEPs were associated with metabolic pathways. In the pituitary gland, the DEPs were largely related to immune and nutrient metabolism functions, with significant enrichment in KEGG pathways, particularly those involving the metabolic pathway, sphingolipid signaling, and the cGMP-PKG signaling pathway. A metabolomic analysis further showed that active immunization in wethers led to significant alterations in seven serum metabolites. Notably, the sphingolipid signaling pathway, secondary bile acid synthesis, sphingolipid metabolism, and lysine synthesis were significantly disrupted. vaccines induced marked changes in hypothalamic-pituitary proteins in wethers, facilitating alterations in their growth processes. This study not only provides insights into the mechanism of the gene in regulating GH secretion in wethers but also establishes a basis for hormone immunoregulation technology to enhance livestock production performance.

摘要

生长抑素(SS)通过影响生长激素(GH)的合成和分泌,在动物生长和繁殖中发挥着至关重要的调节作用。然而,SS 调节山羊生长和发育的机制尚不清楚。为了研究 DNA 疫苗影响山羊下丘脑和垂体的调节网络,本研究采用了先前建立的口服减毒 DNA 疫苗(ptCS/2SS-asd)来治疗公羊。我们使用基于 TMT 的蛋白质组学方法分析了下丘脑和垂体组织中的蛋白质变化。此外,我们通过液相色谱-质谱联用(LC-MS)非靶向代谢组学检测了对照和免疫公羊血清的代谢谱。根据差异表达代谢物(DEMs)和差异表达蛋白(DEPs)鉴定了关键信号通路。此外,通过 Western blot(WB)实验证实了关键 DEPs 对信号通路的影响,阐明了 DNA 疫苗在公羊中的主动免疫机制。蛋白质组学分析表明,疫苗治疗后下丘脑有 58 种蛋白质和垂体中有 124 种蛋白质的表达明显改变(倍数变化>1.2 或<0.83,<0.05)。在下丘脑,许多 DEPs 与神经元信号相关的基因本体(GO)术语有关。相比之下,大多数 DEPs 与代谢途径有关。在垂体中,DEPs 主要与免疫和营养代谢功能有关,KEGG 途径显著富集,特别是涉及代谢途径、鞘脂信号和 cGMP-PKG 信号途径的途径。代谢组学分析进一步表明,在绵羊中进行主动免疫会导致血清中七种代谢物的显著变化。值得注意的是,鞘脂信号通路、次级胆汁酸合成、鞘脂代谢和赖氨酸合成受到显著干扰。DNA 疫苗在绵羊中诱导了下丘脑-垂体蛋白的显著变化,促进了它们生长过程的改变。这项研究不仅提供了 SS 基因调节绵羊 GH 分泌的机制的见解,而且为激素免疫调节技术增强家畜生产性能奠定了基础。

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