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蛋氨酸和色氨酸在鲈鱼先天免疫反应和细胞凋亡信号传导中的不同调节作用——一项研究。

Methionine and Tryptophan Play Different Modulatory Roles in the European Seabass () Innate Immune Response and Apoptosis Signaling-An Study.

机构信息

Centro Interdisciplinar de Investigação Marinha e Ambiental (CIIMAR), Matosinhos, Portugal.

Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, Porto, Portugal.

出版信息

Front Immunol. 2021 Mar 15;12:660448. doi: 10.3389/fimmu.2021.660448. eCollection 2021.

Abstract

The range of metabolic pathways that are dependent on a proper supply of specific amino acids (AA) unveils their importance in the support of health. AA play central roles in key pathways vital for immune support and individual AA supplementation has shown to be able to modulate fish immunity. trials are important tools to evaluate the immunomodulatory role of AA, and the present study was conceived to evaluate methionine and tryptophan roles in immune-related mechanisms aiming to understand their effects in leucocyte functioning and AA pathways. For that purpose, head-kidney leucocytes were isolated and a primary cell culture established. The effect of methionine or tryptophan surplus on cell viability was assessed. Medium L-15 10% FBS without AA addition (0.5mM of L-methionine, 0.1 mM of L-tryptophan) was used as control. To that, L-methionine or L-tryptophan were supplemented at 1 and 2 times (M1x or M2x, and T1x or T2x). Nitric oxide, ATP, total antioxidant capacity, and immune-related genes were evaluated in response to lipopolysaccharides extracted from subsp. or UV-inactivated bacteria). Moreover, caspase 3 activity and apoptosis-related genes were evaluated in response to the apoptosis-inducing protein, AIP56. Distinct roles in leucocytes' immune response were observed, with contrasting outcomes in the modulation of individual pathways. Methionine surplus improved cell viability, polyamine production, and methionine-related genes expression in response to an inflammatory agent. Also, methionine supplementation lowered signals of apoptosis by AIP56, presenting lower caspase 3 activity and higher and expression. Cells cultured in tryptophan supplemented medium presented signals of an attenuated inflammatory response, with decreased ATP and enhanced expression of anti-inflammatory and catabolism-related genes in macrophages. In response to AIP56, leucocytes cultured in a tryptophan-rich medium presented lower resilience to the toxin, higher caspase 3 activity and expression of caspase 8, and lower expression of several genes, including and . This study showed the ability of methionine surplus to improve leucocytes' response to an inflammatory agent and to lower signals of apoptosis by AIP56 induction, while tryptophan attenuated several cellular signals of the inflammatory response to UV-inactivated bacteria and lowered leucocyte resilience to AIP56.

摘要

依赖特定氨基酸(AA)适当供应的代谢途径范围揭示了它们在支持健康方面的重要性。AA 在支持免疫的关键途径中发挥核心作用,个别 AA 补充已被证明能够调节鱼类的免疫力。试验是评估 AA 免疫调节作用的重要工具,本研究旨在评估蛋氨酸和色氨酸在免疫相关机制中的作用,旨在了解它们对白细胞功能和 AA 途径的影响。为此,分离了头肾白细胞并建立了原代细胞培养。评估了蛋氨酸或色氨酸过剩对细胞活力的影响。使用不含 AA 的培养基 L-15 10% FBS(0.5mM L-蛋氨酸,0.1mM L-色氨酸)作为对照。在此基础上,补充 L-蛋氨酸或 L-色氨酸 1 倍(M1x 或 M2x)和 2 倍(T1x 或 T2x)。用 subsp. 提取的脂多糖或紫外线灭活的细菌)。此外,还评估了凋亡诱导蛋白 AIP56 诱导后 caspase 3 活性和凋亡相关基因的表达。在白细胞免疫反应中观察到不同的作用,在调节个别途径方面存在相反的结果。蛋氨酸过剩可提高细胞活力、多胺产生和对炎症因子的蛋氨酸相关基因表达。此外,蛋氨酸补充降低了 AIP56 诱导的细胞凋亡信号,降低了 caspase 3 活性,提高了 和 的表达。在富含色氨酸的培养基中培养的细胞表现出炎症反应减弱的信号,巨噬细胞中 ATP 减少,抗炎和分解代谢相关基因表达增强。在 AIP56 反应中,在富含色氨酸的培养基中培养的白细胞对毒素的抵抗力降低,caspase 3 活性和 caspase 8 的表达增加,包括 和 在内的几个基因的表达降低。本研究表明,蛋氨酸过剩能够提高白细胞对炎症因子的反应能力,并降低 AIP56 诱导的细胞凋亡信号,而色氨酸则减弱了紫外线灭活细菌引起的白细胞炎症反应的多个信号,并降低了白细胞对 AIP56 的抵抗力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd45/8005646/b224d7ccced4/fimmu-12-660448-g001.jpg

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