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营养限制下的病毒细胞资源操纵

Virocell resource manipulation under nutrient limitation.

作者信息

Lindback Morgan M, Howard-Varona Cristina, Fudyma Jane, Tfaily Malak, Sullivan Matthew B, Duhaime Melissa B

机构信息

Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, Michigan, USA.

Department of Microbiology, The Ohio State University, Columbus, Ohio, USA.

出版信息

mSystems. 2025 Jul 22;10(7):e0052125. doi: 10.1128/msystems.00521-25. Epub 2025 Jun 24.

Abstract

Virus-infected cells, called virocells, impact host metabolic functions, resources, and ecosystem processes, but the effects of nutrient limitation remain less well understood. Here, we leverage transcriptomic, proteomic, and endo- and exo-metabolomic data from two virocells independently infected by unrelated dsDNA viruses, PSA-HS2 (HS2-virocells) and PSA-HP1 (HP1-virocells), to examine how phosphate limitation affects virocell resource manipulation intra- and extracellularly. Intracellularly, we find that (i) HP1-virocells boost amino acid production toward the end of the infection cycle but deplete amino acid pools relative to HS2-virocells; (ii) both virocells dampen the production of nucleotide synthesis proteins; (iii) HS2-virocells switch from synthesis to recycling of phospholipids, whereas HP1-virocells decrease both activities; (iv) all cells (virocells and uninfected cells), but HP1-virocells especially, increase membrane fluidity; and (v) both virocells increase iron storage. Extracellularly, (i) polyphenols, a stress marker, increased in all cells, particularly in HP1-virocells, and (ii) only HP1-virocells showed elevated unsaturated hydrocarbons and oxygen-rich metabolites, which are likely byproducts of intracellular metabolic activity. These findings advance our understanding of how environmental conditions shape virocell activities in ecologically relevant nutrient-limited conditions and reveal distinct responses of virocells to infection by unrelated viruses.IMPORTANCEThis study addresses a knowledge gap in understanding how nutrient limitation shapes virus-infected bacterial cell (virocell) metabolism and its ecosystem footprints. Using multi-omics approaches, we examined how two different viruses (PSA-HP1 and PSA-HS2) independently infecting the same marine heterotrophic bacterium () respond to phosphorus limitation. Building upon our previous work, we show how virocell metabolic reprogramming manipulates cellular resources and alters the extracellular environment. Intracellularly, while both virocells reprogram similar metabolic pathways, they manipulate key resources (nucleotides, amino acids, lipids, and iron) distinctly under nutrient limitation. Extracellularly, each virocell generates unique dissolved organic matter metabolites, with a differential expression of stress markers under phosphorus limitation, indicating environment-specific ecosystem footprints. These results provide fundamental insights into how virocell metabolic reprogramming and resource manipulation combine to produce ecosystem-scale metabolic outputs.

摘要

被病毒感染的细胞,即病毒感染细胞,会影响宿主的代谢功能、资源和生态系统过程,但营养限制的影响仍不太为人所知。在这里,我们利用来自两个分别被不相关双链DNA病毒PSA - HS2(HS2 - 病毒感染细胞)和PSA - HP1(HP1 - 病毒感染细胞)独立感染的病毒感染细胞的转录组学、蛋白质组学以及细胞内和细胞外代谢组学数据,来研究磷酸盐限制如何在细胞内和细胞外影响病毒感染细胞的资源操纵。在细胞内,我们发现:(i)HP1 - 病毒感染细胞在感染周期接近尾声时会提高氨基酸产量,但相对于HS2 - 病毒感染细胞而言会消耗氨基酸库;(ii)两种病毒感染细胞都会抑制核苷酸合成蛋白的产生;(iii)HS2 - 病毒感染细胞从磷脂合成转变为磷脂循环利用,而HP1 - 病毒感染细胞则降低这两种活动;(iv)所有细胞(病毒感染细胞和未感染细胞),尤其是HP1 - 病毒感染细胞,会增加膜流动性;(v)两种病毒感染细胞都会增加铁储存。在细胞外,(i)作为应激标志物的多酚在所有细胞中都有所增加,尤其是在HP1 - 病毒感染细胞中,并且(ii)只有HP1 - 病毒感染细胞显示出不饱和烃和富氧代谢物升高,这些可能是细胞内代谢活动的副产物。这些发现推进了我们对环境条件如何在生态相关的营养限制条件下塑造病毒感染细胞活动的理解,并揭示了病毒感染细胞对不相关病毒感染的不同反应。

重要性

本研究填补了在理解营养限制如何塑造病毒感染的细菌细胞(病毒感染细胞)代谢及其生态系统足迹方面的知识空白。我们使用多组学方法,研究了两种不同的病毒(PSA - HP1和PSA - HS2)独立感染同一海洋异养细菌时对磷限制的反应。基于我们之前的工作,我们展示了病毒感染细胞的代谢重编程如何操纵细胞资源并改变细胞外环境。在细胞内,虽然两种病毒感染细胞都对相似的代谢途径进行重编程,但在营养限制下它们对关键资源(核苷酸、氨基酸、脂质和铁)的操纵方式明显不同。在细胞外,每个病毒感染细胞都会产生独特的溶解有机物代谢物,在磷限制下应激标志物的表达存在差异,这表明了特定环境下的生态系统足迹。这些结果为病毒感染细胞的代谢重编程和资源操纵如何共同产生生态系统规模的代谢输出提供了基本见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c9d/12282109/b55aade47787/msystems.00521-25.f001.jpg

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