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灰树花来源的β-葡聚糖通过 dectin-1 受体有效递送入细胞的治疗性寡核苷酸,并减弱 TNFα 基因表达。

A β-glucan from Grifola frondosa effectively delivers therapeutic oligonucleotide into cells via dectin-1 receptor and attenuates TNFα gene expression.

机构信息

National Research Center for Carbohydrate Synthesis, College of Life Science, Jiangxi Normal University, Nanchang 330022, China; Jiangxi Provincial Key Lab of Protection and Utilization of Subtropical Plant Resources, Jiangxi Normal University, Nanchang 330022, China; College of Life Science, Jiangxi Normal University, Nanchang 330022, China.

College of Life Science, Jiangxi Normal University, Nanchang 330022, China.

出版信息

Int J Biol Macromol. 2020 Apr 15;149:801-808. doi: 10.1016/j.ijbiomac.2020.01.236. Epub 2020 Jan 23.

DOI:10.1016/j.ijbiomac.2020.01.236
PMID:31982530
Abstract

Grifola frondosa is an edible and medicinal mushroom with great nutritional values and bioactivities. In the present study, a soluble homogeneous β-glucan, GFPS, with high molecular mass of 5.42 × 10 Da was purified from the fruit bodies of Grifola frondosa using 5% cold NaOH. The structure of GFPS was determined with FT-IR, NMR, and monosaccharide composition analysis, and was identified to be a β-D-(1-3)-linked glucan backbone with a single β-D-(1-6)-linked glucopyranosyl residue branched at C-6 on every third residue. Our results indicated that GFPS had a triple helical structure and could form complex with polydeoxyadenylic acid (poly[A]). Further studies demonstrated that GFPS could interact with poly[A] moiety of a designed antisense oligonucleotide (ASO) targeting the primary transcript of proinflammatory cytokine TNFα (TNFα-A60). This GFPS-based complex could incorporate TNFα-A60 into the macrophage cells via dectin-1 receptor and attenuate lipopolysaccharide-induced secretion of TNFα. Our results suggested that GFPS could be applied to deliver therapeutic oligonucleotides for the treatment of diseases such as inflammation and cancers.

摘要

灰树花是一种具有巨大营养价值和生物活性的食用药用蘑菇。在本研究中,从灰树花子实体中用 5%冷 NaOH 提取出一种可溶性均一的β-葡聚糖 GFPS,其相对分子质量高达 5.42×10 Da。采用傅里叶变换红外光谱(FT-IR)、核磁共振(NMR)和单糖组成分析确定了 GFPS 的结构,鉴定为β-D-(1-3)-连接的葡聚糖主链,每隔第三个残基在 C-6 上有一个单一的β-D-(1-6)-连接的葡萄糖吡喃基支链。我们的结果表明 GFPS 具有三螺旋结构,能够与聚脱氧腺苷酸(poly[A])形成复合物。进一步的研究表明,GFPS 可以与针对促炎细胞因子 TNFα 前体转录物的设计反义寡核苷酸(ASO)的 poly[A]部分相互作用(TNFα-A60)。这种基于 GFPS 的复合物可以通过 dectin-1 受体将 TNFα-A60 纳入巨噬细胞,并减轻脂多糖诱导的 TNFα 分泌。我们的结果表明,GFPS 可用于递送治疗性寡核苷酸,用于治疗炎症和癌症等疾病。

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