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Cellular Metabolic Profiling of CrFK Cells Infected with Feline Infectious Peritonitis Virus Using Phenotype Microarrays

机译:表型微阵列感染猫传染性腹膜炎病毒的CrFK细胞的细胞代谢谱。

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摘要

Feline infectious peritonitis (FIP) is a fatal feline immune-mediated disease caused by feline infectious peritonitis virus (FIPV). Little is known about the biological pathways associated in FIP pathogenesis. This is the first study aiming to determine the phenotypic characteristics on the cellular level in relation to specific metabolic pathways of importance to FIP pathogenesis. Methods: The internalization of type II FIPV WSU 79-1146 in Crandell-Rees Feline Kidney (CrFK) cells was visualized using a fluorescence microscope, and optimization prior to phenotype microarray (PM) study was performed. Then, four types of Biolog Phenotype MicroArray™ plates (PM-M1 to PM-M4) precoated with different carbon and nitrogen sources were used to determine the metabolic profiles in FIPV-infected cells. Results: The utilization of palatinose was significantly low in FIPV-infected cells; however, there were significant increases in utilizing melibionic acid, L-glutamine, L-glutamic acid and alanyl-glutamine (Ala-Gln) compared to non-infected cells. Conclusion: This study has provided the first insights into the metabolic profiling of a feline coronavirus infection in vitro using PMs and deduced that glutamine metabolism is one of the essential metabolic pathways for FIPV infection and replication. Further studies are necessary to develop strategies to target the glutamine metabolic pathway in FIPV infection.
机译:猫传染性腹膜炎(FIP)是由猫传染性腹膜炎病毒(FIPV)引起的致命的猫免疫介导的疾病。关于FIP发病机理的生物学途径知之甚少。这是第一项旨在确定与FIP发病机理重要的特定代谢途径相关的细胞水平表型特征的研究。方法:使用荧光显微镜观察II型FIPV WSU​​ 79-1146在Crandell-Rees猫肾(CrFK)细胞中的内在化,并在表型微阵列(PM)研究之前进行优化。然后,使用预先涂有不同碳和氮源的四种类型的Biolog Phenotype MicroArray™板(PM-M1至PM-M4)确定FIPV感染细胞中的代谢谱。结果:在被FIPV感染的细胞中,帕拉金糖的利用率明显较低;然而,与未感染的细胞相比,利用巯基酸,L-谷氨酰胺,L-谷氨酸和丙氨酰-谷氨酰胺(Ala-Gln)的数量显着增加。结论:这项研究提供了对使用PM在体外对猫冠状病毒感染进行代谢谱分析的初步见解,并推论出谷氨酰胺代谢是FIPV感染和复制的重要代谢途径之一。需要进一步的研究来开发针对FIPV感染中谷氨酰胺代谢途径的策略。

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