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首页> 外文期刊>Macromolecules >ENZYMATIC DEGRADATION AND ADSORPTION ON POLY[(R)-3-HYDROXYBUTYRATE] SINGLE CRYSTALS WITH TWO TYPES OF EXTRACELLULAR PHB DEPOLYMERASES FROM COMAMONAS ACIDOVORANS YM1609 AND ALCALIGENES FAECALIS T1
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ENZYMATIC DEGRADATION AND ADSORPTION ON POLY[(R)-3-HYDROXYBUTYRATE] SINGLE CRYSTALS WITH TWO TYPES OF EXTRACELLULAR PHB DEPOLYMERASES FROM COMAMONAS ACIDOVORANS YM1609 AND ALCALIGENES FAECALIS T1

机译:酶法降解和吸附两种水杨酸单胞菌YM1609和链霉菌T1的胞外PHB脱聚酶的聚[(R)-3-羟基丁酸酯]单晶

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Poly[(R)-3-hydroxybutyrate] (P(3HB)) single crystals, which had different morphologies with and without chain-folding surfaces, were grown from dilute solutions of chloroform and ethanol. Two types of extracellular PHB depolymerases purified from Alcaligenes faecalis T1 and Comamonas acidovorans YM1609, defined as types I and II according to the position of the lipase box in the catalytic domain, were used in the enzymatic degradation and adsorption experiments. The enzymatic degradation of P(3HB) single crystals was investigated by means of transmission electron microscopy, atomic force microscopy, and gel-permeation chromatography. Adsorption of PHB depolymerase on P(3HB) single crystals was examined using an immune-gold labeling technique. Enzymatic degradation of single crystals progressed from the edges and ends of crystals to yield the narrow cracks and the small crystal fragments along their long axis, independent of both surface morphologies of single crystals and types of extracellular PHB depolymerases. Lamellar thicknesses of single crystals and molecular weights of P(3HB) chains remained unchanged during the enzymatic hydrolysis. Adsorption of extracellular PHB depolymerase demonstrated a homogeneous distribution of enzyme molecules on the chain-folding surface of crystals. The above results suggest that the adsorption of enzyme increases with the mobility of P(3HB) chains of single crystals as a whole and that the endo-exo type attack by the active-site of PHB depolymerase takes place preferentially at the disordered chain-packing regions of crystal edges and ends rather than the chain-folding surfaces of single crystals, in spite of the difference in the structure of enzymes. [References: 42]
机译:从氯仿和乙醇的稀溶液中生长具有不同形态,具有和不具有链折叠表面的聚[(R)-3-羟基丁酸酯](P(3HB))单晶。根据脂肪酶盒在催化结构域中的位置,从粪便产臭杆菌T1和酸单胞菌YM1609纯化得到的两种类型的细胞外PHB解聚酶用于酶促降解和吸附实验。通过透射电子显微镜,原子力显微镜和凝胶渗透色谱法研究了P(3HB)单晶的酶促降解。使用免疫金标记技术检查了PHB解聚酶在P(3HB)单晶上的吸附。单晶的酶促降解从晶体的边缘和末端开始,沿其长轴产生狭窄的裂缝和小晶体碎片,而与单晶的表面形态和细胞外PHB解聚酶的类型无关。在酶促水解过程中,单晶的层状厚度和P(3HB)链的分子量保持不变。细胞外PHB解聚酶的吸附表明酶分子在晶体的链折叠表面上均匀分布。上述结果表明,酶的吸附随单晶P(3HB)链整体的迁移而增加,PHB解聚酶活性位点对内-外型的攻击优先发生在无序的链堆积中尽管酶结构不同,但晶体边缘和末端的区域而不是单晶体的链折叠表面。 [参考:42]

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