Glutamine-glutamate centered metabolism as the potential therapeutic target against Japanese encephalitis virus-induced encephalitis.

IF 6.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Mengyuan Li, Hang Yuan, Xiaofei Yang, Yingfeng Lei, Jianqi Lian
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引用次数: 0

Abstract

Background: Japanese encephalitis (JE) induced by Japanese encephalitis virus (JEV) infection is the most prevalent diagnosed epidemic viral encephalitis globally. The underlying pathological mechanisms remain largely unknown. Given that viruses are obligate intracellular parasites, cellular metabolic reprogramming triggered by viral infection is intricately related to the establishment of infection and progression of disease. Therefore, uncovering and manipulating the metabolic reprogramming that underlies viral infection will help elucidate the pathogenic mechanisms and develop novel therapeutic strategies.

Methods: Metabolomics analysis was performed to comprehensively delineate the metabolic profiles in JEV-infected mice brains and neurons. Metabolic flux analysis, quantitative real-time PCR, western blotting and fluorescence immunohistochemistry were utilized to describe detailed glutamine-glutamate metabolic profiles during JEV infection. Exogenous addition of metabolites and associated compounds and RNA interference were employed to manipulate glutamine-glutamate metabolism to clarify its effects on viral replication. The survival rate, severity of neuroinflammation, and levels of viral replication were assessed to determine the efficacy of glutamine supplementation in JEV-challenged mice.

Results: Here, we have delineated a novel perspective on the pathogenesis of JE by identifying an aberrant low flux in glutamine-glutamate metabolism both in vivo and in vitro, which was critical in the establishment of JEV infection and progression of JE. The perturbed glutamine-glutamate metabolism induced neurotransmitter imbalance and created an immune-inhibitory state with increased gamma-aminobutyric acid/glutamate ratio, thus facilitating efficient viral replication both in JEV-infected neurons and the brain of JEV-infected mice. In addition, viral infection restrained the utilization of glutamine via the glutamate-α-ketoglutaric acid axis in neurons, thus avoiding the adverse effects of glutamine oxidation on viral propagation. As the conversion of glutamine to glutamate was inhibited after JEV infection, the metabolism of glutathione (GSH) was simultaneously impaired, exacerbating oxidative stress in JEV-infected neurons and mice brains and promoting the progression of JE. Importantly, the supplementation of glutamine in vivo alleviated the intracranial inflammation and enhanced the survival of JEV-challenged mice.

Conclusion: Altogether, our study highlights an aberrant glutamine-glutamate metabolism during JEV infection and unveils how this facilitates viral replication and promotes JE progression. Manipulation of these metabolic alterations may potentially be exploited to develop therapeutic approaches for JEV infection.

谷氨酰胺-谷氨酸中心代谢作为日本脑炎病毒诱导的脑炎的潜在治疗靶点。
背景:由乙型脑炎病毒(JEV)感染引起的流行性乙型脑炎(JE)是全球诊断最普遍的流行性病毒性脑炎。潜在的病理机制在很大程度上仍然未知。鉴于病毒是专性细胞内寄生虫,病毒感染引发的细胞代谢重编程与感染的建立和疾病的进展有着复杂的关系。因此,发现和操纵病毒感染背后的代谢重编程将有助于阐明致病机制和开发新的治疗策略。方法:采用代谢组学分析方法,全面描述乙脑病毒感染小鼠大脑和神经元的代谢谱。利用代谢通量分析、实时荧光定量PCR、western blotting和荧光免疫组化技术描述乙脑病毒感染期间谷氨酰胺-谷氨酸代谢谱。通过外源添加代谢物及相关化合物和RNA干扰来操纵谷氨酰胺-谷氨酸代谢,以阐明其对病毒复制的影响。评估了存活率、神经炎症的严重程度和病毒复制水平,以确定补充谷氨酰胺对乙脑攻击小鼠的疗效。结果:通过在体内和体外发现谷氨酰胺-谷氨酸代谢异常低通量,我们为乙脑的发病机制描绘了一个新的视角,这在乙脑感染的建立和乙脑的进展中至关重要。谷氨酰胺-谷氨酸代谢紊乱导致神经递质失衡,产生免疫抑制状态,γ -氨基丁酸/谷氨酸比值增加,从而促进病毒在感染jev的小鼠神经元和大脑中的高效复制。此外,病毒感染通过谷氨酸-α-酮戊二酸轴抑制神经元对谷氨酰胺的利用,从而避免了谷氨酰胺氧化对病毒繁殖的不利影响。由于乙脑感染后谷氨酰胺向谷氨酸的转化受到抑制,同时谷胱甘肽(GSH)的代谢受损,加剧了乙脑感染神经元和小鼠大脑的氧化应激,促进了乙脑的进展。重要的是,在体内补充谷氨酰胺可以减轻乙脑病毒感染小鼠的颅内炎症,提高其存活率。结论:总的来说,我们的研究强调了乙脑感染期间谷氨酰胺-谷氨酸代谢的异常,并揭示了这如何促进病毒复制和促进乙脑进展。操纵这些代谢改变可能被用来开发乙脑病毒感染的治疗方法。
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来源期刊
Cell and Bioscience
Cell and Bioscience BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.70
自引率
0.00%
发文量
187
审稿时长
>12 weeks
期刊介绍: Cell and Bioscience, the official journal of the Society of Chinese Bioscientists in America, is an open access, peer-reviewed journal that encompasses all areas of life science research.
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索莱宝
Protein Phosphatase Inhibitor
索莱宝
Dehydrogenase (α-KGDH) Activity Assay Kit
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