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1)  enzyme inhibitors
酶抑制剂
1.
Inhibition of resistance to insecticides by mixing enzyme inhibitors and insecticides in Phyllotreta striolata;
酶抑制剂与杀虫剂混配对黄曲条跳甲抗药性的抑制作用
2.
In this paper,we have reviewed the production,structure character,pharmacological activity and application respect on peptides enzyme inhibitors from Microcystis.
本文综述了微囊藻属蓝藻多肽类酶抑制剂的产生、结构特征、药理活性以及应用前景。
2)  enzyme inhibitor
酶抑制剂
1.
Advance in the antiviral enzyme inhibitors;
酶抑制剂类抗病毒药物的研究进展
2.
The ability of microorganisms (Nocardia, Mycobacterium and Arthrobacter) is studied to degrade the soybean sterol, the influence of enzyme inhibitors, which inclus Ni2+.
测定了诺卡氏菌(Nocardia)、分枝杆菌(Mycob acterium)和节杆菌(Arthrob acter)对大豆甾醇的降解能力及Ni2+,Co2+,Mn2+,α、α’-联吡啶、邻菲罗琳等酶抑制剂对△1,4-雄甾二烯-3, 17-二酮(ADD)积累的影响。
3.
OBJECTIVE: To screen and isolate the cholesterol biosynthetic enzyme inhibitors from SIPI 17.
目的:筛选和分离微生物产生的胆固醇生物合成酶抑制剂
3)  inhibitor [英][in'hibitə]  [美][ɪn'hɪbətɚ]
酶抑制剂
1.
When immobilized PLA1, inhibitor can couple amine residues which are important for catalysis or maintaining proteinstructure.
在固定化磷脂酶A1时,利用酶抑制剂与磷脂酶A1活性中心氨基酸残基结合,使戊二醛基与磷脂酶A1的非活性氨基残基缩合,从而起到保护酶活性中心基团,提高固定化酶活力作用。
2.
Peptidase inhibitor(Bestatin and Amastin)was used;20mmol/L Gly-Gly and Gly-L-Leu as control,and each kind s dipeptide solution was treated with inhibitor as test group.
2种二肽培养液(Gly-Gly肽和Gly-L-Leu肽溶液)作为两组对照培养液,每种二肽培养液中添加肽酶抑制剂(Bestatin和Amastatin),作为试验培养液,39。
4)  urease inhibitor
脲酶抑制剂
1.
Effect of urease inhibitor nBPT on soil urease activity and urease producing microorganisms;
酶抑制剂nBPT对土壤脲酶活性和脲酶产生菌的影响
2.
Effect of urease inhibitor nBPT on soil microorganisms;
酶抑制剂nBPT对土壤微生物的影响
3.
Study on the adaptation of sheep to urease inhibitor;
绵羊对脲酶抑制剂的适应性研究
5)  inhibitors of enzymes
酶活抑制剂
6)  ATPase inhibitor
ATP酶抑制剂
1.
Effects of Fe deficiency and P type ATPase inhibitor on Cu uptake by C.
缺铁条件下研究了鸭跖草 (Commelinacommunis)对不同浓度铜及不同形态铜的吸收和P 型ATP酶抑制剂对铜吸收的影响。
补充资料:酶抑制剂
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性质:作用于或影响酶的活性中心或必需基团导致酶活性下降或丧失而降低酶促反应速率的物质,可分为可逆抑制剂和不可逆抑制剂。对酶有一定的选择性,只能对某一类或几类酶起抑制作用。一价阴离子(X—、NCO—、NCS—、CN—、CH3COO—等),磺胺,草酸盐,苯胺,咪唑,喹啉羧酸,吡啶羧酸盐等都是天然碳酸酐酶抑制剂。抑制剂进入酶活性部位并且改变金属离子的配位层。利用抑制剂作为酶的修饰剂,可获得有关活性部位结构及反应机理等信息。

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