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Purification and Structural Determination of a Native Biofilm Obtained from Copper Pipes of a Hospital - Chemical Sequence and Partial Folding

机译:从医院铜管获得的生物膜纯化和结构测定 - 化学序列和部分折叠

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For the first time the chemical structures of the matrix of a native biofilmisolated from a microbially induced copper corrosion process has been analysed quantitatively by means of MALDI-TOF-mass-spectroscopy techniques and partially sequenced, revealing a polysaccharide backbone of cross-linked oligosaccharides, mainly hexoses, (95%) and approx. 5% of a linkage between serine or threonine to the polysaccharide chain. In addition some pyruvyl residues have also been determined including the total content of α-oxo acids being present in the matrix of the biofilm through covalent linkages. The matrix of the biofilm investigated is an ionic polysaccharide consisting (tentatively) partly of linear β-glucosidic and mannosidic like backbone (1 → 4) cross-linked to β-D-mannosidic residues, and galactose-or mannosidic residues resulting in a three-sugar side chain linkage attached to every third or fourth linkage of mannose (galactose) of the polysaccharide backbone. The O-glycosidic nature of the linkages between the prosthetic disaccharide and hydroxyl groups of L-(+)-serine and L-(+)-threonine residues has been established according to the chemical sequence. The strong alkali-lability of the sugar component and peptide linkages was attributed to a β-elimination mechanism on part of the sugar component, and the stoichiometric conversion of serine to dehydro-alanine and of threonine to α-crotonic acid was shown for the alkali-treated matrix of the biofilm. Serine and threonine residues of the peptide are most likely involved within these O-glycosidic linkages in equimolar proportion. Preliminary light scattering experiments of the native matrix of the biofilm and cleaved forms of this exopolymer yielded weight average molecular weights of 0.70 x 10~5 to 23.0 x 10~5, depending on chemical and enzymatic treatment of the matrix. The radii of gyration and second virial coefficients were found to be dependent on molecular weights, but show a behaviour which is consistent with that of semiflexible chains of the matrix of the biofilm. Some of the physical data obtained, particularly those of the high molecular fractions are also consistent with the view that this matrix can exist in aqueous solutions at low ionic strengths as double-stranded helical chains, which is also supported by optical rotary measurements as a function of temperature. On the basis of the molecular weight distribution and the chemical analysis a tentative model was proposed to encompass all data obtained by physical and MALDI-TOF-MS experiments.
机译:首次通过MALDI-TOF-质谱技术定量分析来自微生物诱导的铜腐蚀过程的天然生物膜的基质的化学结构并部分地进行分析,揭示交联寡糖的多糖骨架,主要是Hexoses,(95%)和约。丝氨酸或苏氨酸与多糖链之间的连杆5%。此外,还确定了一些丙酮残基,包括通过共价键入的生物膜基质中存在的α-氧代酸的总含量。研究的生物膜的基质是由线性β-葡糖苷和甘油基和甘烷(1→4)部分组成的离子多糖,与β-D-甘露乳酸残基交联,半乳糖 - 或甘露糖尿病残留物导致三个-ugar侧链连接到多糖骨架的甘露糖(半乳糖)的每三个或第四连杆。根据化学序列建立了L - (+) - 丝氨酸和L - (+) - 苏氨酸残留物的假体二糖和羟基之间的o-糖苷性质。糖组分和肽键的强碱耐碱性归因于一部分糖组分的β-消除机制,并且碱的化学计量转化为氨基 - 丙氨酸和苏氨酸至α-rotonic酸的转化率 - 生物膜的治疗基质。肽的丝氨酸和苏氨酸残基最有可能在等摩尔比例中涉及这些O-糖苷键。该外聚合物的生物膜天然基质的初步光散射实验和该外聚合物的切割形式产生重量平均分子量0.70×10〜5至23.0×10〜5,取决于基质的化学和酶处理。发现旋转和第二病毒系数的半径依赖于分子量,但表明了一种与生物膜基质的半弯曲链一致的行为。获得的一些物理数据,特别是高分子级分的物理数据也是一致的,即该基质可以以低离子强度的水溶液存在于作为双链螺旋链中的水溶液中,其也通过光学旋转测量作为函数支持温度。在分子量分布和化学分析的基础上,提出了暂定模型,包括通过物理和MALDI-TOF-MS实验获得的所有数据。

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