Evidence map›Paper›PMID 41378898›Full record

ArticleMicrobiology spectrum2026

D-glucose uptake inhibits bovine alphaherpesvirus 1 post-binding cell process entry via inhibition of PLC-γ1 signaling in a glucose transporter 1-independent manner.

Xuan Li, Xiuyan Ding, Naifan Zhang, Xiaozhen Ma, Filomena Fiorito, Liqian Zhu

Abstract read
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Article in Microbiology spectrum, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

6 authors.

Xuan Li *College of Life Sciences, Hebei University, Baoding, China.
Xiuyan Ding *College of Life Sciences, Hebei University, Baoding, China.
Naifan ZhangCollege of Life Sciences, Hebei University, Baoding, China.
Xiaozhen MaCollege of Life Sciences, Hebei University, Baoding, China.ORCID 0009-0000-1294-4998
Filomena FioritoDepartment of Veterinary Medicine and Animal Production, University of Naples Federico II, Naples, Italy.
Liqian ZhuCollege of Life Sciences, Hebei University, Baoding, China.ORCID 0000-0002-9579-2252

Funding

Department of Science and Technology of Hebei Province 246Z2401GDepartment of Science and Technology of Shijia Zhuang 2514900302AHebei University DC2025361Hebei University HBU2025BS008National Natural Science Foundation of China 32373006
6 · The paper itself

Abstract

Bovine alphaherpesvirus 1 (BoAHV-1) is one of the most important viral pathogens responsible for severe economic losses in the cattle industry worldwide. We have previously shown that both phospholipase C gamma1 (PLC-γ1) and β-catenin signaling pathways play crucial roles in BoAHV-1 productive infection. In this study, we demonstrated that BoAHV-1 productive infection in bovine kidney (MDBK) cells and in bovine trigeminal ganglia neurons led to alteration of the protein expression and/or its subcellular localization glucose transporter 1 (GLUT1). In turn, GLUT1 signaling appeared to promote virus productive infection, partially by activating β-catenin-dependent transcriptional activity, as determined using GLUT1-specific small interfering RNAs or the GLUT1-specific inhibitor, BAY-876. Interestingly, D-glucose inhibited the virus post-binding cell entry process, partially through blocking PLC-γ1 signaling. Although GLUT1 is a key glucose transporter, the inhibitory effects of D-glucose on viral entry were independent of GLUT1. Moreover, we showed that D-glucose and the PLC-γ1-specific inhibitor U73122 synergistically inhibited virus cell entry. Collectively, for the first time, we revealed that D-glucose and its potential transporter GLUT1 had opposite effects on BoAHV-1 productive infection (inhibition vs promotion) via manipulation of different cell signaling pathways (PLC-γ1 vs β-catenin). These findings provide novel insights into the mechanisms underlying BoAHV-1 infection involving GLUT1 and glucose and highlight potential therapeutic targets for the development of antiviral strategies. IMPORTANCE: Virus entry is a complex process that involves the binding of viral glycoproteins to host cell receptors, and various host factors can influence this process. Here, for the first time, we found that D-glucose has the potential to block bovine alphaherpesvirus 1 (BoAHV-1) post-binding cell entry process, possibly through the inactivation of PLC-γ1 signaling. Interestingly, D-glucose regulated PLC-γ1 signaling with a GLUT1-independent mechanism, though D-glucose uptake was partially mediated by GLUT1. We also identified that β-catenin acts as a potential downstream target of GLUT1, which may represent a mechanism regarding how GLUT1 signaling contributes to BoAHV-1 productive infection. Moreover, a distinct GLUT1 staining in the pre-nuclear regions, likely corresponding to the nuclear membrane, was exclusively observed in trigeminal ganglia neurons of latently infected calves, indicating that it is also potentially involved in the virus latency, which deserves further clarification in future studies.

Indexed as

GlucoseGlucose Transporter Type 1Herpesvirus 1, BovinePhospholipase C gammaVirus InternalizationAnimalsbeta CateninCattleCell LineHerpesviridae InfectionsSignal Transductionbeta CateninGlucoseGlucose Transporter Type 1Phospholipase C gammaA549Bovine alphaherpesvirus 1GLUT1MDBKNeuro-2APLC-γ1TG

Identifiers

PMID41378898
PMCPMC12889056

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.