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首页> 外文期刊>The Journal of General and Applied Microbiology >Enzymatic and molecular characterization of α-1,3-glucanase (AglST2) from Streptomyces thermodiastaticus HF3-3 and its relation with α-1,3-glucanase HF65 (AglST1)
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Enzymatic and molecular characterization of α-1,3-glucanase (AglST2) from Streptomyces thermodiastaticus HF3-3 and its relation with α-1,3-glucanase HF65 (AglST1)

机译:嗜热链霉菌HF3-3中α-1,3-葡聚糖酶(AglST2)的酶学和分子表征及其与α-1,3-葡聚糖酶HF65(AglST1)的关系

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摘要

Extracellular α-1,3-glucanase HF90 (AglST2), with a sodium dodecyl sulfate (SDS)-PAGE-estimated molecular mass of approximately 91 kDa, was homogenously purified from the culture filtrate of Streptomyces thermodiastaticus HF3-3. AglST2 showed a high homology with mycodextranase in an amino acid sequence and demonstrated specificity with an α-1,3-glycosidic linkage of homo α-1,3-glucan. It has been suggested that AglST2 may be a new type of α-1,3-glucanase. The optimum pH and temperature of AglST2 were pH 5.5 and 60°C, respectively. AglST2 action was significantly stimulated in the presence of 5–20% (w/v) NaCl, and 1 mM metal ions Mn2+ and Co2+. On the other hand, it was inhibited by 1 mM of Ag+, Cu2+, Fe2+ and Ni2+. Regarding the stability properties, AglST2 retained more than 80% of its maximum activity over a pH range of 5.0–7.0 at up to 60°C and in the presence of 0–20% (w/v) NaCl. Based on these results, the properties of AglST2 were comparable with those of AglST1, which had been previously purified and characterized from S. thermodiastaticus HF3-3 previously. The N-terminal amino acid sequence of AglST2 showed a good agreement with that of AglST1, suggesting that AglST1 was generated from AglST2 by proteolysis during cultivation. MALDI-TOF mass analysis suggested that AglST1 might be generated from AglST2 by the proteolytic removal of C-terminus polypeptide (approximately 20 kDa). Our investigation thus revealed the properties of AglST2, such as tolerance against high temperature, salts, and surfactants, which have promising industrial applications.
机译:从嗜热链霉菌HF3-3的培养滤液中同质纯化具有约91kDa的十二烷基硫酸钠(SDS)-PAGE估计分子量的细胞外α-1,3-葡聚糖酶HF90(Ag1ST2)。 AglST2在氨基酸序列上显示出与mycodextranase的高度同源性,并显示出与同型α-1,3-葡聚糖的α-1,3-糖苷键的特异性。已经提出Ag1ST2可能是新型的α-1,3-葡聚糖酶。 AglST2的最佳pH和温度分别为5.5和60°C。在5-20%(w / v)的NaCl和1 mM的金属离子Mn2 +和Co2 +的存在下,AglST2的作用受到显着刺激。另一方面,它被1mM的Ag +,Cu2 +,Fe2 +和Ni2 +抑制。关于稳定性,AglST2在高达60°C和存在0-20%(w / v)NaCl的pH范围内(5.0-7.0)保留了其最大活性的80%以上。基于这些结果,AglST2的特性与先前已经从热渗链霉菌HF3-3中纯化和鉴定的AglST1相当。 AglST2的N末端氨基酸序列与AglST1的氨基酸序列显示出良好的一致性,这表明AglST1是由AglST2在培养过程中通过蛋白水解产生的。 MALDI-TOF质量分析表明,AglST1可能是通过蛋白水解去除C端多肽(约20 kDa)而从AglST2产生的。我们的研究因此揭示了AglST2的特性,例如对高温,盐和表面活性剂的耐受性,这些特性在工业上具有广阔的应用前景。

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