首页> 外文期刊>Applied Microbiology >A Recombinant Fungal Chitin Deacetylase Produces Fully Defined Chitosan Oligomers with Novel Patterns of Acetylation
【24h】

A Recombinant Fungal Chitin Deacetylase Produces Fully Defined Chitosan Oligomers with Novel Patterns of Acetylation

机译:重组真菌甲状腺蛋白脱乙酰酶产生完全定义的壳聚糖低聚物,具有新颖的乙酰化模式

获取原文
获取外文期刊封面目录资料

摘要

Partially acetylated chitosan oligosaccharides (paCOS) are potent biologics with many potential applications, and their bioactivities are believed to be dependent on their structure, i.e., their degrees of polymerization and acetylation, as well as their pattern of acetylation. However, paCOS generated via chemical N -acetylation or de- N -acetylation of GlcN or GlcNAc oligomers, respectively, typically display random patterns of acetylation, making it difficult to control and predict their bioactivities. In contrast, paCOS produced from chitin deacetylases (CDAs) acting on chitin oligomer substrates may have specific patterns of acetylation, as shown for some bacterial CDAs. However, compared to what we know about bacterial CDAs, we know little about the ability of fungal CDAs to produce defined paCOS with known patterns of acetylation. Therefore, we optimized the expression of a chitin deacetylase from the fungus Puccinia graminis f. sp. tritici in Escherichia coli . The best yield of functional enzyme was obtained as a fusion protein with the maltose-binding protein (MBP) secreted into the periplasmic space of the bacterial host. We characterized the MBP fusion protein from P. graminis ( Pgt CDA) and tested its activity on different chitinous substrates. Mass spectrometric sequencing of the products obtained by enzymatic deacetylation of chitin oligomers, i.e., tetramers to hexamers, revealed that Pgt CDA generated paCOS with specific acetylation patterns of A-A-D-D, A-A-D-D-D, and A-A-D-D-D-D, respectively (A, GlcNAc; D, GlcN), indicating that Pgt CDA cannot deacetylate the two GlcNAc units closest to the oligomer's nonreducing end. This unique property of Pgt CDA significantly expands the so far very limited library of well-defined paCOS available to test their bioactivities for a wide variety of potential applications.IMPORTANCE We successfully achieved heterologous expression of a fungal chitin deacetylase gene from the basidiomycete Puccinia graminis f. sp. tritici in the periplasm of E. coli as a fusion protein with the maltose-binding protein; this strategy allows the production of these difficult-to-express enzymes in sufficient quantities for them to be characterized and optimized through protein engineering. Here, the recombinant enzyme was used to produce partially acetylated chitosan oligosaccharides from chitin oligomers, whereby the pronounced regioselectivity of the enzyme led to the production of defined products with novel patterns of acetylation. This approach widens the scope for both the production and functional analysis of chitosan oligomers and thus will eventually allow the detailed molecular structure-function relationships of biologically active chitosans to be studied, which is essential for developing applications for these functional biopolymers for a circular bioeconomy, e.g., in agriculture, medicine, cosmetics, and food sciences.
机译:部分乙酰化壳聚糖寡糖(PACOS)是具有许多潜在应用的有效的生物学,并且其生物活体被认为取决于它们的结构,即它们的聚合程度和乙酰化,以及它们的乙酰化模式。然而,PACOS通过Chemical N-乙酰化或Glcn或Glcnac低聚物的脱乙酰化或脱乙酰化,通常显示乙酰化随机图案,使得难以控制和预测其生物活性。相反,由几丁质脱乙酰酶(CDAs)产生的PACOS作用于几丁质低聚物底物,可以具有特定的乙酰化图案,如某些细菌CDA所示。然而,与我们对细菌CDA的了解相比,我们对真菌CDA的能力几乎没有用已知的乙酰化模式制备所定义的PACO。因此,我们优化了从真菌蛋白克酰胺酸克甘氨酸F的甲壳素脱乙酰酶的表达。 sp。大肠杆菌的Tritici。用麦芽糖结合蛋白(MBP)作为融合蛋白作为融合蛋白分泌到细菌宿主的周质空间中的最佳产量。我们以P. Graminis(PGT CDA)的特征为MBP融合蛋白,并在不同的胆小基质上测试了其活性。通过酶促脱乙酰化获得的产物的质谱序列,即四聚体至六烷烃,表明PGT CDA分别产生具有αADD,AADDD和AADDDD的特异性乙酰化图案的PARO(A,GLCNAC; D,GLCN),表明该PGT CDA不能脱乙酰化最接近低聚物的未加入端的GLCNAC单元。 PGT CDA的这种独特性质显着扩展到目前为止的明确定义PACOS库,可用于测试其生物活像以获得各种潜在应用的生物活跃。传染性我们从底霉素普昔宫麦克林尼斯F成功实现了真菌蛋白脱乙酰酶基因的异源表达。 sp。在大肠杆菌的周质中作为晶体结合蛋白的融合蛋白的细胞蛋白;该策略允许通过蛋白质工程制备这些难以表达的酶以足够的数量来进行表征和优化。这里,重组酶用于从甲壳素低聚物产生部分乙酰化壳聚糖寡糖,从而酶的显着区域选择性导致具有具有新颖乙酰化模式的所定义的产品。这种方法扩大了壳聚糖低聚物的生产和功能分析的范围,因此最终允许研究生物活性炭壳多糖的详细分子结构功能关系,这对于开发这些功能性生物聚合物的应用是必不可少的,例如,农业,医学,化妆品和食品科学。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号