金属硫蛋白,metallothionein
1)metallothionein[mi,t?l?u'θai?ni:n]金属硫蛋白
1.Metallothionein in Different Tissues of Freshwater Crab Exposed to Cadmium;镉诱导金属硫蛋白在华溪蟹组织中的表达
2.Effects of inducement on metallothionein in liver of pig;猪肝金属硫蛋白的诱导效果
3.Separation of Rabbit Liver Metallothionein Sub-isoforms by RP-HPLC with MALDI-TOF-MS Detection;兔肝金属硫蛋白亚型异构体的高效液相色谱分离与ESI-MS,MALDI-TOF-MS鉴定
英文短句/例句

1.Metallothionein, Metallothionein Antibody and Cadmium Induced Renal Dysfunction;金属硫蛋白金属硫蛋白抗体与镉致肾功能损伤
2.Competitive Combination with Metallothionein between Metallothionein Antibody and Ions of Cadmium and Zinc镉、锌与金属硫蛋白抗体对金属硫蛋白的竞争结合
3.Protein-Protein Interaction between CGB and MT2;胞红蛋白(CGB)与金属硫蛋白Ⅱ(MT2)相互作用的研究
4.The Effect of Zinc Status on Metallothionein;机体锌营养状况对金属硫蛋白的影响
5.Cloning and Sequencing of MT cDNA Gene in Housefly Larvae;家蝇金属硫蛋白的cDNA克隆与序列测定
6.Study on the Purification Technology for Metallothionein in Rat Liver鼠肝中金属硫蛋白(MT)纯化工艺的研究
7.Bioinformatics Analysis of Plant Metallothionein MT2植物金属硫蛋白MT2的生物信息分析
8.Effects of Cu,Zn and Cd on Metallothionein Contents in the Nemertean Cephalothrix simula重金属对扁额细首纽虫金属硫蛋白的影响
9.Expressions and Correlations of MT and MT-3 in Esophageal Squamous Cell Carcinoma;金属硫蛋白金属硫蛋白-3在食管鳞状细胞癌中的表达及相关性研究
10.The Complexing of apo-metallothionein with Cadmium Ion and Its Conformation Study脱金属硫蛋白与镉离子的络合作用及构象研究
11.Study on the Effect of Metallothionein on Advancing Excretion of Lead in Rats金属硫蛋白对大鼠体内铅促排作用的研究
12.High Cell Density Culture of the Recombinant Human MT-Ⅲ in Escherichia Coli;大肠杆菌高密度发酵制备重组人金属硫蛋白-Ⅲ
13.Fermentation of Metallothionein-like and Research on Its Extraction;类金属硫蛋白的发酵生产及提取工艺的研究
14.The Expression and the Value of Metallthionein in Transitional Cell Carcinoma of Bladder;金属硫蛋白在膀胱移行细胞癌中的表达及意义
15.Expression and Functional Analysis of BjMT2, a Metallothionein Type2 from Brassica Juncea, in Tobacco Plant;植物金属硫蛋白2型在烟草中的表达特性
16.Establishment of the Indirect Competitive ELISA for Measuring Zn-metallothionein (MT);Zn-金属硫蛋白间接竞争型ELISA的建立与应用
17.Plant Metallothionein and Its Function in Scavenging Hydroxyl Radical;植物金属硫蛋白及其在自由基清除中的作用
18.cDNA Cloning and Expression of a Metallothionein Gene in the Pearl Oyster Pinctada Maxima大珠母贝金属硫蛋白cDNA序列克隆与表达研究
相关短句/例句

metallothioneins金属硫蛋白
1.The role of metallothioneins and phytochelatins in heavy metal tolerance of plants;金属硫蛋白和植物螯合肽在植物重金属耐性中的作用
2.Metallothioneins gene in induced mouse allergic contact dermatitis;金属硫蛋白基因对小鼠变应性接触性皮炎的影响
3.Study on Competition Reaction and Replacement Reaction of Metallothioneins with Lead Ion;金属硫蛋白结合铅离子的竞争反应和置换反应研究
3)MT金属硫蛋白
1.Relationship between expression level of MT and the prognosis of patients with breast cancer;金属硫蛋白(MT)表达水平与乳腺癌的预后
2.THE EXPRESSION OF MT AND ITS PROGNOSIS VALUE IN HUMAN BREAST CARCINOMA;金属硫蛋白(MT)在乳腺癌中的表达及预后价值探讨
3.Expressions and Correlations of MT and MT-3 in Esophageal Squamous Cell Carcinoma;金属硫蛋白金属硫蛋白-3在食管鳞状细胞癌中的表达及相关性研究
4)Metallothionein (MT)金属硫蛋白
1.BACKGROUND & OBJECTIVE: Metallothionein (MT)-3 can inhibit cell growth.背景与目的:金属硫蛋白(metallothionein,MT)-3具有细胞生长抑制活性,是目前所知唯一具有独特生理功能的MT亚型。
2.In order to study the mechanism of joint toxic effects of heavy metals on aquatic organisms, Daphnia magna was chosen as a testing organism and the metallothionein (MT) was used as a biomarker to study the joint toxic effects of Cd and Zn.为了初步探讨重金属镉(Cd)和锌(Zn)对水生生物的联合毒性效应,以大型蚤(Daphnia magna)为研究对象,以蚤体内的金属硫蛋白(MT)含量为毒性指标,研究了重金属Cd和Zn对大型蚤的联合毒性作用。
3.Human neuronal growth inhibitory factor (hGIF), also named as metallothionein-3 (MT3), is a member of metallothionein (MT) family.人类神经生长抑制因子(human neuronal growth inhibitory factor,hGIF)属于金属硫蛋白家族,又称金属硫蛋白-3(metallothionein-3,MT3)。
5)Metallothionein gene金属硫蛋白基因
6)study on metallothioneins金属硫蛋白研究
延伸阅读

金属硫蛋白分子式:CAS号:性质:又称巯基金属结合蛋白。一类非酶蛋白质,除含有Cd、Zn的MT外,在自然界也存在含有铜(Cu)、汞(Hz)、金(Au)、铋(Bi)等元素的MT。MT的蛋白分子内不含有芳香族氨基酸和组氨酸。让MT中50%的金属离子发生解离的pH值分别为:2n-MT:3.5~4.5;Cd-MT:2.5~3.5;Cu-MT<1.0。因MT缺乏芳香族氨基酸,故在280nm处无吸收峰,然而具有与金属相关的吸收峰。去金属的MT在190nm处有一个吸收峰。所有脊椎动物、多数植物和微生物体内都含有MT。无论是自然产生还是诱导产生的MT,其氨基酸组成基本相同、主要不同在所含金属及其含量。目前产品主要从马肾、兔肝和微生物(如粗脉孢菌)等中提取。MT生理功能大体上有如下几点:(1)参与微量元素代谢和重金属的解毒;(2)清除,6由基及参与应激反应;(3)其含量往往与肿瘤有相关性,故有可能在肿瘤预防、治疗、保护细胞抵抗重金属和烷化剂的致瘤、致突变作用;也有可能成为肿瘤的标志物。主要用作化妆品添加剂和生化试剂。