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组蛋白5与锌结合在促进存活细胞共生中发挥新作用。

A Novel Role for Histatin 5 in Combination with Zinc to Promote Commensalism in Survivor Cells.

作者信息

Norris Hannah L, Kumar Rohitashw, Edgerton Mira

机构信息

Department of Oral Biology, School of Dental Medicine, University at Buffalo, Buffalo, NY 14260, USA.

出版信息

Pathogens. 2021 Dec 10;10(12):1609. doi: 10.3390/pathogens10121609.

Abstract

is maintained as a commensal by immune mechanisms at the oral epithelia. Oral antifungal peptide Histatin 5 (Hst 5) may function in innate immunity, but the specific role Hst 5 plays in commensalism is unclear. Since Zn-binding potentiates the candidacidal activity of Hst 5, we hypothesized that Hst 5+Zn would elicit a unique fungal stress response to shape interactions between and oral epithelial cells (OECs). We found that Hst 5+Zn but not Hst 5 alone resulted in the activation of cell wall integrity (CWI) signaling, and deletion mutants were then used to determine that CWI-mediated chitin synthesis was protective against killing. Using flow cytometry, we confirmed that Hst 5+Zn-treated cells had significantly elevated levels of cell-wall chitin, mannan and β-1,3 glucan compared to Hst 5-treated cells. We then tested the activation of host signaling components involved in cell-wall recognition. The immunoblot assay of -exposed oral epithelial cells showed increased activation of EphA2 and NF-κB but not EGFR. Interestingly, treated with Hst 5+Zn induced the global suppression of pro-inflammatory cytokine release from OECs, but an increase in negative regulator IL-10. Hst 5+Zn-treated cells were more adherent but ultimately less invasive to OECs than control cells, thus indicating lowered virulence. Therefore, Hst 5+Zn-treated cells are discerned by epithelial monolayers, but are less virulent and promote anti-inflammatory signaling, suggesting that Hst 5+Zn in combination could play a role in regulating commensalism of oral through cell wall reorganization.

摘要

在口腔上皮细胞中,它通过免疫机制维持共生状态。口腔抗真菌肽组蛋白5(Hst 5)可能在固有免疫中发挥作用,但Hst 5在共生关系中所起的具体作用尚不清楚。由于锌结合增强了Hst 5的杀念珠菌活性,我们推测Hst 5+锌会引发独特的真菌应激反应,从而塑造其与口腔上皮细胞(OECs)之间的相互作用。我们发现,Hst 5+锌而非单独的Hst 5导致细胞壁完整性(CWI)信号激活,然后使用缺失突变体来确定CWI介导的几丁质合成对杀伤具有保护作用。通过流式细胞术,我们证实与Hst 5处理的细胞相比,Hst 5+锌处理的细胞中细胞壁几丁质、甘露聚糖和β-1,3-葡聚糖水平显著升高。然后我们测试了参与细胞壁识别的宿主信号成分的激活情况。对暴露于……的口腔上皮细胞进行免疫印迹分析显示,EphA2和NF-κB的激活增加,但EGFR未增加。有趣的是,用Hst 5+锌处理诱导OECs促炎细胞因子释放的整体抑制,但负调节因子IL-10增加。与对照细胞相比,Hst 5+锌处理的细胞对OECs的黏附性更强,但最终侵袭性更低,因此表明其毒力降低。因此,上皮单层可识别Hst 5+锌处理的……细胞,但它们的毒力较低并促进抗炎信号传导,这表明Hst 5+锌联合使用可能通过细胞壁重组在调节口腔共生关系中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84bf/8703888/177f4dc5069a/pathogens-10-01609-g001.jpg

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