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1)  starch phosphorylase
淀粉磷酸化酶
1.
Effects of curing environment on activity of amylase and starch phosphorylase in flue- cured tobacco leaves;
烘烤环境对烟叶淀粉酶和淀粉磷酸化酶活性的影响
2.
Changes of activities of amylase and starch phosphorylase in tobacco leaves during flue-curing and changing rule on activity of amylase and starch phosphorylase under different curing environment were studied by using the flue-cured tobacco cv.
以红花大金元和K326烤烟品种中部叶为材料,研究了烘烤过程中烟叶淀粉酶和淀粉磷酸化酶活性变化及不同烘烤环境下淀粉酶和淀粉磷酸化酶活性的变化规律。
3.
A serials of enzymes involved in the pathway of starch biosynthesis in plant, and the starch phosphorylase (EC2.
稻米胚乳中淀粉的合成受一系列酶的控制,其中淀粉磷酸化酶是参与淀粉代谢的重要酶类之一,具有L型(质体型)和H型(胞质型)两种同工型。
2)  starch phosphorylation
淀粉磷酸化
1.
In this paper,summarizes these studies from the following:mechanism of starch phosphorylation and the correlative key enzyme,the function of GWD(α-glucan water dikinase)and its influence on starch phosphorylation and metabolism,the possible approach to improving quality by gene manipulat.
介绍了淀粉磷酸化作用的机制,概述了α-葡聚糖水合二激酶(α-glucanwaterdikinase,GWD)功能与磷酸化作用和淀粉代谢的关系及其生物学研究进展,在此基础上,讨论利用基因工程改良淀粉品质的可能途径以及今后的研究任务。
3)  starch monoester phosphate
磷酸酯化淀粉
4)  phosphorylated oxidized starch
氧化淀粉磷酸酯
1.
The starch treated by mechanical activation method was modified with peroxide as oxidant and phosphate as esterifying agent separately in semidry process and phosphorylated oxidized starch was synthesized.
采用半干法工艺,分别以过氧化氢和磷酸盐为氧化剂和酯化剂对经机械活化处理的淀粉进行化学改性处理,制备了氧化淀粉磷酸酯并研究了机械活化处理时间、氧化剂用量、酯化剂用量及淀粉添加量对涂布纸性能影响。
5)  Monostarch phosphate
磷酸淀粉
6)  phosphate starch
磷酸酯淀粉
1.
Development of investigation on dry preparation of phosphate starch;
干法制备磷酸酯淀粉的研究进展
2.
Optimum preparation technology of phosphate starch with half-wet process;
半干法制备磷酸酯淀粉工艺优化研究
3.
Performance Comparison of Phosphate Starch and Acetate Starch;
磷酸酯淀粉与醋酸酯淀粉性能对比
补充资料:磷酸化酶磷酸酶
分子式:
CAS号:

性质:又称磷酸化酶磷酸酯酶。磷酸酯酶一种,EC3.1.3.17,分子量5×104。它的底物是有活性的磷酸化酶a。它所催化的反应是磷酸化酶a一级结构中14序号上的丝氨酸上与磷酸基相连接酯键水解(断裂)而游离出4个无机磷酸分子,使磷酸化酶a转变为无活性的磷酸化酶b(变构效应物,即AMP可使它成为有活性的酶)。它的作用正好与在ATP(腺苷三磷酸)存在下的磷酸化酶激酶(phosphorylase kinaseEC2.7.1.38.)的作用相反。它在糖原的生成和代谢中起催化和调节的作用。通常磷酸化酶磷酸酶可从兔肌肉组织中提取。

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