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聚谷氨酸通过诱导 CD14 依赖性 I 型干扰素反应的抗病毒活性,聚谷氨酸是由芽孢杆菌属分泌的一种多肽。

The antiviral activity of poly-γ-glutamic acid, a polypeptide secreted by Bacillus sp., through induction of CD14-dependent type I interferon responses.

机构信息

Department of Biotechnology and Center for Protein Function Control, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.

出版信息

Biomaterials. 2013 Dec;34(37):9700-8. doi: 10.1016/j.biomaterials.2013.08.067. Epub 2013 Sep 6.

Abstract

Poly-γ-glutamic acid (γ-PGA) is an anionic polypeptide secreted by Bacillus sp. that has been shown to activate immune cells through interactions with toll-like receptor 4 (TLR4). However, its ability to induce the type I interferon (IFN) response has not yet been characterized. Here, we demonstrate that γ-PGA induces type I IFN signaling pathway via the TLR4 signaling pathway. The induction required both myeloid differentiation factor 2 (MD2) and the pattern-recognition receptor CD14, which are two TLR4-associated accessory proteins. The γ-PGA with high molecular weights (2000 and 5000 kDa) was able to activate the subsequent signals through TLR4/MD2 to result in dimerization of IRF-3, a transcription factor required for IFN gene expression, leading to increases in mRNA levels of the type I IFN-response genes, 2'-5' OAS and ISG56. Moreover, γ-PGA (2000 kDa) displayed an antiviral activity against SARS coronavirus and hepatitis C virus. Our results identify high-molecular weight γ-PGA as a TLR4 ligand and demonstrate that γ-PGA requires both CD14 and MD2 for the activation of type I IFN responses. Our results suggest that the microbial biopolymer γ-PGA may have therapeutic potential against a broad range of viruses sensitive to type I IFNs.

摘要

聚γ-谷氨酸(γ-PGA)是一种由芽孢杆菌分泌的阴离子多肽,已被证明通过与 Toll 样受体 4(TLR4)相互作用来激活免疫细胞。然而,其诱导 I 型干扰素(IFN)反应的能力尚未得到表征。在这里,我们证明 γ-PGA 通过 TLR4 信号通路诱导 I 型 IFN 信号通路。这种诱导需要髓样分化因子 2(MD2)和模式识别受体 CD14,它们是两种 TLR4 相关的辅助蛋白。具有高分子量(2000 和 5000 kDa)的 γ-PGA 能够通过 TLR4/MD2 激活后续信号,导致 IFN 基因表达所需转录因子 IRF-3 的二聚化,从而导致 I 型 IFN 反应基因 2'-5' OAS 和 ISG56 的 mRNA 水平增加。此外,γ-PGA(2000 kDa)对 SARS 冠状病毒和丙型肝炎病毒显示出抗病毒活性。我们的结果将高分子量 γ-PGA 鉴定为 TLR4 配体,并证明 γ-PGA 需要 CD14 和 MD2 来激活 I 型 IFN 反应。我们的结果表明,微生物生物聚合物 γ-PGA 可能具有针对广泛对 I 型 IFNs 敏感的病毒的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e65f/7112489/b5557aef3d6d/gr1_lrg.jpg

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