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1)  SAMase
SAM水解酶
2)  S-adenosylmethionine synthetase
SAM合成酶
1.
S-adenosylmethionine synthetase gene(SAMS gene) was amplified by PCR with the first strand cDNA as template and a pair of primers which was based on constructed ESTs sequence.
从低温(4℃)、高盐(200 mmol/L NaCl)及干旱(30%PEG)处理的东北野生大豆幼苗叶片中提取总RNA,经反转录合成cDNA第一链,以cDNA第一链为模板,应用已知的EST序列设计一对PCR引物扩增SAM合成酶基因的全长序列,最后经BLAST比较分析,确定所获得的SAMS基因序列完整性。
3)  enzymatic hydrolysis
酶水解
1.
Technical condition optimum for goose plasma enzymatic hydrolysis;
复酶水解鹅血工艺条件的优化
2.
Conditions for enzymatic hydrolysis of egg white proteins;
双酶水解蛋清蛋白最优工艺的研究
3.
Study on preparation of rice oligopeptide from rice dregs by enzymatic hydrolysis;
酶水解米渣蛋白制备大米肽研究
4)  enzymic hydrolysis
酶水解
1.
A model system was developed to measure the emulsifying capacity of glandless cottonseed proteins and this study was also conducted to investigate the effect of enzymic hydrolysis on emulsifying capacity of two groups of glandless cottonseed proteins.
本项研究建立了低酚棉籽蛋白乳化容量的测定模型,并探讨了蛋白酶水解作用对两类低酚棉籽蛋白的影响。
2.
Biological functional active polypeptides can be prepared by through marine products defatting,enzymic hydrolysis and isolation.
对海产品蛋白质进行脱脂、酶水解并进一步分离纯化,制备生物功能活性多肽。
5)  hydrolytic metalloenzyme
水解酶
1.
This is one of the most efficient hydrolytic metalloenzyme model compounds reported up to now.
研究了二乙三胺 (Dien)锌 (Ⅱ )配合物作水解酶模拟物催化对硝基苯酚醋酸酯 (NA)水解的动力学。
6)  nitrilase ['naitrileis]
腈水解酶
1.
Mutation and cultivation of Rhodococcus rhodochrous to improve nitrilase productivity;
产腈水解酶菌株的诱变及培养优化
2.
Conversion of 3-cyanopyridine to nicotinic acid by nitrilase in Rhodococcus rhodochrous tg1-A6;
Rhodococcus rhodochrous tg1-A6腈水解酶催化3-氰基吡啶合成烟酸的研究
3.
Primary study on catalytic properties of free cells from nitrilase producing microorganism;
腈水解酶产生菌游离细胞催化特性的初步研究
补充资料:水解
水解
hydrolysis

   物质与水发生的复分解反应。通常指盐类的水解反应,盐溶于水时,盐的离子与水电离出来的H+或OH-作用,生成弱酸或弱碱,引起水的电离平衡发生移动,改变了溶液中H+和OH-的相对浓度,所以溶液就不再是中性了。由弱酸根或弱碱离子组成的盐类的水解倾向比较强烈,例如弱酸盐乙酸钠与水中的H+结合成弱酸,使溶液呈碱性:
   NaAc+H2!!!S1957_1 HAc+NaOH
   弱碱盐氯化铵与水中的OH-结合成弱碱,使溶液呈酸性:
   NH4Cl+H2!!!S1957_2 NH3·H2O+HCl
   酯、多糖、蛋白质与水的作用也称水解:
   CH3COOC2H5+H2!!!S1957_3 CH3COOH+C2H5OH
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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