首页> 美国卫生研究院文献>Journal of Bacteriology >An exo-poly-alpha-D-galacturonosidase implicated in the regulation of extracellular pectate lyase production in Erwinia chrysanthemi.
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An exo-poly-alpha-D-galacturonosidase implicated in the regulation of extracellular pectate lyase production in Erwinia chrysanthemi.

机译:一个外-多-α-D-半乳糖苷酶参与调控欧文氏菊中细胞外果胶酸裂合酶的生产。

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摘要

Pectic enzymes in the supernatants of Erwinia chrysanthemi cultures in late-logarithmic-phase growth on D-galacturonan were resolved into three components: two pectate lyase isozymes and an exo-poly-alpha-D-galacturonosidase previously unreported in this organism. The hydrolytic enzyme was purified to homogeneity by ammonium sulfate fractionation, preparative electrofocusing in Ultrodex gel, and gel filtration through Ultrogel AcA54. The enzyme had a specific activity of 591 mumol/min per mg of protein, a pI of 8.3, a molecular weight of 67,000, a pH optimum of 6.0, and a Km of 0.05 mM for D-galacturonan. Analyses of reaction mixtures by paper chromatography revealed that the enzyme released only digalacturonic acid from D-galacturonan. The action of the hydrolytic enzyme on D-galacturonan labeled at the nonreducing end by partial digestion with pectate lyase revealed that it rapidly released 4,5-unsaturated digalacturonic acid from 4,5-unsaturated pectic polymers. The production of extracellular exo-poly-alpha-D-galacturonosidase was coordinately regulated with pectate lyase production. The action patterns of the two enzymes appeared complementary in the degradation of pectic polymers to disaccharides that stimulated pectic enzyme production and supported bacterial growth.
机译:在对数生长期的D-半乳糖醛酸上生长的菊花欧文氏菌培养物上清液中的果胶酶分解为三个成分:两个果胶酸裂合酶同工酶和一个以前在该生物体中未报道的外切多聚α-D-D-半乳糖苷酶。通过硫酸铵分级分离,在Ultrodex凝胶中进行制备性电聚焦以及通过Ultrogel AcA54进行凝胶过滤,可将水解酶纯化至均质。该酶的特异活性为每毫克蛋白质591摩尔/分钟,pI为8.3,分子量为67,000,最适pH为6.0,D-半乳糖醛酸的Km为0.05 mM。通过纸色谱法分析反应混合物,发现该酶仅从D-半乳糖醛酸聚糖中释放出二半乳糖醛酸。水解酶对非还原端通过果胶裂解酶部分消化而标记的D-半乳糖醛酸的作用表明,它可以从4,5-不饱和果胶聚合物中快速释放4,5-不饱和二半乳糖醛酸。细胞外外聚-α-D-半乳糖苷酶的产生与果胶酸裂合酶的产生协调地调节。两种酶的作用模式在果胶聚合物的降解中与二糖互补,后者刺激果胶酶的产生并支持细菌的生长。

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