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1)  β-galactosidase
β-半乳糖苷酶
1.
Selection of Strains Highly Producingβ-galactosidase with Complex Mutation;
采用复合诱变方法选育高产β-半乳糖苷酶菌株
2.
Fermentation Conditions for Production of Transglycosylating β-galactosidase by Enterobacter cloacae B5;
Enterobacter cloacae B5产转糖基β-半乳糖苷酶发酵条件优化
3.
Study on Activity of β-galactosidase Produced by Lactobacillus acidophilus with Ultrasionic Cell-break Method;
超声波细胞破碎法检测嗜酸乳杆菌β-半乳糖苷酶活力的研究
2)  β-D-galactosidase
β-D-半乳糖苷酶
1.
Correlation between β-D-galactosidase and gelatinase B activity and progress of colorectal carcinoma;
β-D-半乳糖苷酶和明胶酶B活性与大肠癌进展的相关性
2.
Study on the immobilization of β-D-galactosidase on chitosan gel;
聚糖凝胶固定β-D-半乳糖苷酶方法研究
3.
Synthesis of Galacto-oligosaccharide from Lactose Catalyzed by K.fragilis LFS-8611 β-D-galactosidase;
脆壁克鲁维酵母(Kluyveromyces Fragilis)LFS-8611 β-D-半乳糖苷酶催化合成低聚半乳糖
3)  beta-galactosidase
β-半乳糖苷酶类
4)  β-galactosidase
β-半乳糖酸苷酶
1.
This paper mainly studies the effect of ultrafine brucite powders on the growth progress of E coli by analysing major chemical composition of ultrafine brucite mineral powders and determining the changes of number of colony,pH,glucose(GLU),β-galactosidase,Mg~(2+) after the powders acted with E coli ATCC25922 at different time.
通过分析超细纤维水镁石的主要化学成分,测定其与大肠杆菌ATCC 25922相互作用不同时间后,菌落数、培养基pH值、葡萄糖(GLU)、β-半乳糖酸苷酶以及M g2+等的变化,来研究其相互作用影响。
2.
This paper mainly studies the effect of ultrafine brucite powders on the growth progress of E coli by analysing major chemical composition of ultrafine brucite mineral powders and determining the changes of number of colony,pH,glucose (GLU), β-galactosidase, Mg~(2+) after the powders acted with E coli ATCC25922 at different time.
通过分析超细纤维水镁石的主要化学成分,测定其与大肠杆菌ATCC25922相互作用不同时间后,菌落数、培养基pH值、葡萄糖(GLU)、β-半乳糖酸苷酶以及Mg~(2+)等的变化,来研究其相互作用影响。
5)  β galactosidase
β半乳糖苷酶
6)  β-Galactosides
β-半乳糖苷
1.
Fluorescence Study on the Interactions of Galactose and β-Galactosides with a Galectin from the Edible Mushroom Agrocybe aegerita;
荧光光谱法研究杨树菇半乳糖凝集素与半乳糖和β-半乳糖苷的相互作用
补充资料:β-半乳糖苷酶
分子式:
CAS号:

性质:又称乳糖酶。存在于肠道中催化β-半乳糖苷水解,使乳糖分解为半乳糖和果糖而促进其消化的酶。白色或淡黄色粉末,无臭,微甜。分子量100 000~850 000。在水中呈混沌液(大部分溶解),不溶于乙醇、丙酮。不同来源的酶最适pH值在4.0~7.5不等。最适作用温度37~50℃,低温保存。可由米曲霉(Aspergillus oryzae)培养液或制干酪时所得的乳清制得。作药物,适用于婴儿各种乳糖消化不良症及腹泻等。主要用于乳品工业,加入乳品中可降低乳糖结晶析出并增加甜度;也用于发酵和焙烤工业。由米曲霉培养液精制而得的乳糖分解酶,白色或淡黄色粉末,微甜。不溶于乙醇、丙酮。最适pH值4.0~4.5。从大肠杆菌培养液得到的分子量达135 000。也用作酶免分析的标记酶。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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