首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Lignin-rich Enzyme Lignin (LREL) a Cellulase-treated Lignin-Carbohydrate Derived from Plants Activates Myeloid Dendritic Cells via Toll-like Receptor 4 (TLR4)
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Lignin-rich Enzyme Lignin (LREL) a Cellulase-treated Lignin-Carbohydrate Derived from Plants Activates Myeloid Dendritic Cells via Toll-like Receptor 4 (TLR4)

机译:富含木质素的酶木质素(LREL)是一种纤维素酶处理的植物木质素碳水化合物其通过Toll样受体4(TLR4)激活髓样树突状细胞。

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摘要

Lignin-carbohydrates, one of the major cell wall components, are believed to be the structures that form chemical linkage between lignin and cell wall polysaccharides. Due to the molecular complexity of lignin-containing substances, their isolation and the assignment of their biological activities have so far remained a difficult task. Here, we extracted two lignin-containing carbohydrates, lignin-rich enzyme lignin (LREL) and pure enzyme lignin (PEL), from barley husk and demonstrated that they act as immune stimulators of dendritic cells (DCs), which are particularly important in linking innate and adaptive immunity. Thioacidolysis, acid hydrolysis, and mild alkali hydrolysis of both LREL and PEL revealed that their immunostimulatory activities depended on the lignin structure and/or content, neutral sugar content (especially the characteristic distribution of galactose and mannose), and presence of an ester bond. Furthermore, we showed that the immunostimulatory potency of the lignin-carbohydrate depended on its molecular weight and degree of polymerization. We also demonstrated that the LREL-induced activation of DCs was mediated via TLR4. Thus, LREL-induced increases in the expression levels of several cell surface marker proteins, production of inflammatory cytokines IL-12p40 and TNF-α, and activation and nuclear translocation of transcription factors, as was observed in the WT DCs, were completely abrogated in DCs derived from the TLR4−/− mice but not in DCs derived from the TLR2−/−, TLR7−/−, and TLR9−/− mice. We further demonstrated that LRELs isolated from other plant tissues also activated DCs. These immunostimulatory activities of lignin-carbohydrates, extracted from edible plant tissues, could have potential relevance in anti-infectious immunity and vaccine adjuvants.
机译:木质素碳水化合物是细胞壁的主要成分之一,被认为是在木质素和细胞壁多糖之间形成化学键的结构。由于含木质素的物质的分子复杂性,迄今为止,将它们分离和分配其生物活性仍然是一项艰巨的任务。在这里,我们从大麦壳中提取了两种含木质素的碳水化合物,即富含木质素的酶木质素(LREL)和纯酶木质素(PEL),并证明它们充当树突状细胞(DC)的免疫刺激剂,这在连接过程中特别重要天生和适应性免疫。 LREL和PEL的硫代酸解,酸水解和轻度碱水解表明它们的免疫刺激活性取决于木质素的结构和/或含量,中性糖含量(尤其是半乳糖和甘露糖的特征分布)以及酯键的存在。此外,我们表明木质素碳水化合物的免疫刺激能力取决于其分子量和聚合度。我们还证明了LREL诱导的DC激活是通过TLR4介导的。因此,在WT DC中观察到,完全消除了LREL诱导的几种细胞表面标志物蛋白表达水平的增加,炎性细胞因子IL-12p40和TNF-α的产生以及转录因子的激活和核易位。来自TLR4 -/-小鼠的DC,但不是来自TLR2 -/-,TLR7 -/-和TLR9 < sup>-/-小鼠。我们进一步证明,从其他植物组织中分离出的LRELs也激活了DC。从食用植物组织中提取的木质素碳水化合物的这些免疫刺激活性可能与抗感染免疫力和疫苗佐剂具有潜在的相关性。

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