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溶菌酶对含有N-未取代葡糖胺残基的肽聚糖的作用。聚糖片段的分离及其对溶菌酶的敏感性。

The action of lysozyme on peptidoglycan with N-unsubstituted glucosamine residues. Isolation of glycan fragments and their susceptibility to lysozyme.

作者信息

Amano K, Hayashi H, Araki Y, Ito E

出版信息

Eur J Biochem. 1977 Jun 1;76(1):299-307. doi: 10.1111/j.1432-1033.1977.tb11596.x.

Abstract
  1. A peptidoglycan preparation N-acetylated at about 30% of glucosamine residues was obtained by the treatment of the lysozyme-resistant cell wall paptidoglycan of Bacillus cereus with acetic anhydride at pH 7. Fractionation of dialyzable material resulting from lysozyme digestion of the glycan component of this peptidoglycan preparation yielded five oligosaccharides designated as S1 to S5 besides the disaccharide GlcNAc-MurAc. 2. Oligosaccharide S3, which accounted for about 30% of the disaccharide units recovered as disaccharides and oligosaccharides, was identified as GlcN-MurAc-GlcNAc-MurAc. Oligosaccharide S1, accounting for about 20% of the disaccharide units recovered, was characterized as GlcN-MurAc-GlcN-MurAc-GlcNAc-MurAc, while oligosaccharide S2, present in a smaller amount, as GlcNAc-MurAc-GlcN-MurAc-glcNAc-MurAc. Oligosaccharides S4, and S5, present in small amounts, were identified as GlcNAc-MurAc-GlcNAc-MurAc and MurAc-GlcNAc-MurAc, respectively. 3. Oligosaccharides S1, S3 and S5 proved to be completely insusceptible to lysozyme, whereas S2 was digsted by lysozyme to produce GlcNAc-MurAc and S3. S1 was found to act as a more potent inhibitor than S3 in lysozyme-catalyzed digestion of polysaccharides. 4. The results obtained show that the lysozyme-catalyzed hydrolysis of peptidoglycan oligosaccharides had an obligatory requirement for the N-acetyl group on the glucosamine residue located in subsite C in the enzyme-substrate complex.
摘要
  1. 通过在pH 7条件下用乙酸酐处理蜡状芽孢杆菌的溶菌酶抗性细胞壁肽聚糖,获得了一种约30%的葡糖胺残基被N-乙酰化的肽聚糖制剂。对该肽聚糖制剂的聚糖成分进行溶菌酶消化后得到的可透析物质进行分级分离,除了二糖GlcNAc-MurAc外,还产生了五种寡糖,分别命名为S1至S5。2. 寡糖S3约占以二糖和寡糖形式回收的二糖单元的30%,被鉴定为GlcN-MurAc-GlcNAc-MurAc。寡糖S1约占回收的二糖单元的20%,其特征为GlcN-MurAc-GlcN-MurAc-GlcNAc-MurAc,而含量较少的寡糖S2为GlcNAc-MurAc-GlcN-MurAc-glcNAc-MurAc。少量存在的寡糖S4和S5分别被鉴定为GlcNAc-MurAc-GlcNAc-MurAc和MurAc-GlcNAc-MurAc。3. 寡糖S1、S3和S5被证明对溶菌酶完全不敏感,而S2被溶菌酶消化产生GlcNAc-MurAc和S3。发现在溶菌酶催化的多糖消化中,S1比S3是更有效的抑制剂。4. 所得结果表明,溶菌酶催化的肽聚糖寡糖水解对酶-底物复合物中亚位点C处葡糖胺残基上的N-乙酰基有强制性要求。

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