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1.
人蛋白二硫键异构酶的纯化及其抗血清制备吴秉毅,冯桂湘,吕静,张帆,冯永清,王福琴(第一军医大学珠江医院广州510280)关键词蛋白二硫键异构酶,分离与纯化,抗血清制备二硫键在维持蛋白质的空间结构、生物学活性中起重要作用。二硫键的形成是蛋白质翻译后修饰...  相似文献   

2.
蛋白质二硫键异构酶分布很广,种属间比较保守,定位于内质网膜上,组织分布、活力水平与含二硫键的蛋白质的合成平行,而且底物专一性很差,催化巯基二硫键交换,提示它可能参与蛋白质的生物合成。  相似文献   

3.
蛋白质二硫键异构酶分布很广,种属间比较保守,定位于内质网膜上,组织分布、活力水平与含二硫键的蛋白质的合成平行,而且底物专一性很差,催化巯基二硫键交换,提示它可能参与蛋白质的生物合成。  相似文献   

4.
蛋白质二硫键异构酶家族的结构与功能   总被引:1,自引:0,他引:1  
蛋白质二硫键异构酶(protein disulfide isomerase,PDI)家族是一类在内质网中起作用的巯基-二硫键氧化还原酶.它们通常含有CXXC(Cys-Xaa-Xaa-Cys,CXXC)活性位点,活性位点的两个半胱氨酸残基可催化底物二硫键的形成、异构及还原.所有PDI家族成员包含至少一个约100个氨基酸残基的硫氧还蛋白同源结构域.PDI家族的主要职能是催化内质网中新生肽链的氧化折叠,另外在内质网相关的蛋白质降解途径(ERAD)、蛋白质转运、钙稳态、抗原提呈及病毒入侵等方面也起重要作用.  相似文献   

5.
木糖异构酶的结构及蛋白质工程肖亚中,伍传金,崔涛(中国科学技术大学生物系合肥230026)关键词木糖异构酶,结构与功能,蛋白质工程木糖异构梅(D-XyloseIsomerase,EC5。3。1。5,下简称XI)催化五碳D-木糖转化为D-木酮糖,在体外亦能催化六碳D-葡萄糖至D-果糖的异构化反应[1,2]。该反应是工业上大规模以淀粉制备高果糖浆的关键步骤[3],故习惯上将木糖异构酶称为葡萄糖异构酶 。  相似文献   

6.
二硫键异构酶   总被引:2,自引:1,他引:1  
天然二硫键的形成是许多蛋白正确折叠中的限速步骤,在稳定蛋白质构象和保持蛋白质活性方面起重要作用。讨论的二硫键异构酶是内质网中一种重要的蛋白折叠催化剂,它催化蛋白二硫键的形成和错误配对二硫键的重排,并有抑制错误折叠蛋白聚集的分子伴侣活性。PDI广泛应用于基因工程上提高外源蛋白表达水平。  相似文献   

7.
徐钤 《生命的化学》1996,16(1):37-39
抗真菌药──瞄准着DNA拓扑异构酶徐钤(第一军医大学生化教研室,广州510515)关键词抗真菌药,DNA拓扑异构酶1、DNA拓扑异构酶的功能DNA拓扑异构酶(DNAtopoisomerase,TOPO)能改变(或调整)DNA的拓扑学结构。TOPOs可...  相似文献   

8.
我们采用三硝基甲苯(TNT)与大鼠晶状体体外培养的方法,动态观察了晶状体中可溶性蛋白质、非蛋白质巯基、蛋白质巯基、蛋白质结合巯基及二硫键含量的变化,发现随着三硝基甲苯作用时间的延长,可溶性蛋白质、非蛋白质巯基及蛋白质巯基均减少,蛋白质结合巯基及二硫键交联的蛋白质含量增加,其中可溶性蛋白质、非蛋白质巯基及二硫键含量的变化皆达到了统计学上显著意义水平(P<0.05)。  相似文献   

9.
我们采用三磷基甲苯(TNT)与大鼠晶状体体外培养的方法,动态观察了晶状中可溶性蛋白质、非蛋白质巯基、蛋白质结合巯及二硫键含量的变化,发现随着三硝基甲苯作用时间的延长,可溶性蛋白质、非蛋白质巯基及蛋白质巯基均减少,蛋白质结合巯基及二硫键交联的蛋白质含量增加,其中可溶性蛋白质、非蛋白质巯基及二硫键含量的变化皆达到了统计学上的显著意义水平(P<0.05)。  相似文献   

10.
蛋白质二硫键异构酶(PDI)可催化二硫键的形成、断裂和重排,并促进蛋白质折叠,对稳定蛋白质的三维结构至关重要. PDI的表达或酶活性的失调与一系列疾病如癌症、神经退行性疾病、血栓形成等密切相关.本文综述了PDI结构、与疾病的关系及其抑制剂的研究进展,并指出目前PDI抑制剂存在的问题及未来发展方向,以期为PDI抑制剂的进一步研究提供参考.  相似文献   

11.
Expression of human cardiac-specific homeobox protein in Escherichia coli   总被引:2,自引:0,他引:2  
Human cardiac-specific homeobox protein cDNA (hCsx) was cloned into expression plasmid pET32a and fused with Escherichia coli thioredoxin (Trx). The Trx-Csx fusion protein was under the control of bacteriophage T7 promoter. When expressed in E. coli BL21(DE3), about half of the recombinant Trx-Csx products existed in the form of insoluble inclusion bodies. When coexpressed with human protein disulfide isomerase, more than 90% of Trx-Csx products accumulated in the soluble form in the cell lysate. The recombinant Csx fusion protein was purified by one-step metal-chelating affinity chromatography.  相似文献   

12.
Rat liver protein disulfide isomerase (PDI) catalyzes the oxidative folding of proteins containing disulfide bonds. We have developed an efficient method for its overproduction in Escherichia coli. Using a T7 RNA polymerase expression system, isolated yields of 15-30 mg/liter of recombinant rat PDI are readily obtained. Convenient purification of the enzyme from E. coli lysates involves ion-exchange (DEAE) chromatography combined with zinc chelate chromatography. The recombinant PDI shows catalytic activity identical to that of PDI isolated from bovine liver in both the reduction of insulin and the oxidative folding of ribonuclease A. The enzyme is expressed in E. coli as a soluble, cytoplasmic protein. After complete reduction and denaturation in 6 M guanidinium hydrochloride, PDI regains complete activity within 3 min after removal of the denaturant, implying that disulfide bonds are not essential for the maintenance of PDI tertiary structure. Both the protein isolated from E. coli and the protein isolated from liver contained free cysteine residues (1.8 +/- 0.2 and 1.4 +/- 0.3 SH/monomer, respectively).  相似文献   

13.
Transformation of Saccharomyces cerevisiae by yeast expression plasmids bearing the Escherichia coli xylose isomerase gene leads to production of the protein. Western blotting (immunoblotting) experiments show that immunoreactive protein chains which comigrate with the E. coli enzyme are made in the transformant strains and that the amount produced parallels the copy number of the plasmid. When comparable amounts of immunologically cross-reactive xylose isomerase protein made in E. coli or S. cerevisiae were assayed for enzymatic activity, however, the yeast protein was at least 10(3)-fold less active.  相似文献   

14.
Transformation of Saccharomyces cerevisiae by yeast expression plasmids bearing the Escherichia coli xylose isomerase gene leads to production of the protein. Western blotting (immunoblotting) experiments show that immunoreactive protein chains which comigrate with the E. coli enzyme are made in the transformant strains and that the amount produced parallels the copy number of the plasmid. When comparable amounts of immunologically cross-reactive xylose isomerase protein made in E. coli or S. cerevisiae were assayed for enzymatic activity, however, the yeast protein was at least 10(3)-fold less active.  相似文献   

15.
目的:利用分子生物学技术和方法将pRSET-B质粒改建为带有绿色荧光蛋白(GFP)突变体基因(GFP-S65T)的新型瞬时表达载体pRSET-EGFP,并在E.coli.BL21中得到GFP基因的高效表达。方法:PCR法从pEGFP质粒克隆GFP-S65T cDNA并在5’末端引入KpnⅠ的位点。将扩增出来的GFP-S65T基因和pRSEY-B质粒用HindⅢ和KpnⅠ双酶切后连接构成重组质粒。用化学法把重组质粒转化到E.coli.BL21中,培养发酵液。OD540=0.4时加入IPTG诱导GFP-S65T基因转录和表达,合成绿色荧光蛋白。还对诱导条件进行了优化,发酵液OD540=0.4加入IPTG可以得到最优表达。结果:通过Ni^2 柱亲和层析,纯化得到绿色荧光蛋白,SDS-PAGE电泳检测,分子量为27kDa,与文献报道值一致。这说明Ni^2 柱能够有效的纯化表达产物。结论:成功构建了新型瞬时表达载体pRSET-EGFP,并且在E.coli.BL21中得到高效表达。  相似文献   

16.
A full length cDNA clone, pGTB38 (C. B. Pickett et al. (1984) J. Biol. Chem. 259, 5182-5188), complementary to a rat liver glutathione S-transferase Ya mRNA has been expressed in Escherichia coli. The cDNA insert was isolated from pGTB38 using MaeI endonuclease digestion and was inserted into the expression vector pKK2.7 under the control of the tac promoter. Upon transformation of the expression vector into E. coli, two protein bands with molecular weights lower than the full-length Ya subunit were detected by Western blot analysis in the cell lysate of E. coli. These lower-molecular-weight proteins most likely result from incorrect initiation of translation at internal AUG codons instead of the first AUG codon of the mRNA. In order to eliminate the problem of incorrect initiation, the glutathione S-transferase Ya cDNA was isolated from the expression vector and digested with Bal31 to remove extra nucleotides from the 5' noncoding region. The protein expressed by this expression plasmid, pKK-GTB34, comigrated with the Ya subunit on sodium dodecyl sulfate polyacrylamide gels and was recognized by antibodies against the YaYc heterodimer. The expressed Ya homodimer was purified by S-hexylglutathione affinity and ion-exchange chromatographies. Approximately 50 mg pure protein was obtained from 9 liters of E. coli culture. The expressed Ya homodimer displayed glutathione-conjugating, peroxidase, and isomerase activities, which are identical to those of the native enzyme purified from rat liver cytosol. Protein sequencing indicates that the expressed protein has a serine as the NH2 terminus whereas the NH2 terminus of the glutathione S-transferase Ya homodimer purified from rat liver cytosol is apparently blocked.  相似文献   

17.
According to the cDNA sequence of anti-neuroexcitation peptide of scorpion Buthus martensii Karsch, the putative mature anti-neuroexcitation peptide (ANEP) encoding DNA fragment was obtained by a PCR method, then was cloned into expression plasmid pET28a, fused with His tag at its 3' end. When expressed in E. coli BL21 (DE3), the expression of recombinant ANEP was 15% of total cellular proteins, while most recombinant ANEP products existed in the form of insoluble inclusion bodies. Coexpression of molecular chaperones or protein disulfide isomerase could not improve its solubility. The recombinant ANEP in the cell lysate was purified to homogeneity by metal chelating affinity chromatography and Superdex 30 chromatography. In bioassay with convulsive mice model induced by thiosemicarbazide, recombinant ANEP could apparently delay the convulsion seizure of model animals by 18% and showed anti-neuroexcitatory activity.  相似文献   

18.
19.
Expression and Localization of Plant Protein Disulfide Isomerase   总被引:5,自引:1,他引:4       下载免费PDF全文
A cDNA clone encoding a putative protein disulfide isomerase (PDI, EC 5.3.4.1) from alfalfa (Medicago sativa L.) was expressed in Escherichia coli cells, and an antiserum was raised against the expressed PDI-active protein. The antiserum recognized a protein of approximately 60 kD in extracts from alfalfa, soybean, and tobacco roots and stems. Levels of this protein remained relatively constant on exposure of alfalfa cell suspension cultures to the protein glycosylation inhibitor tunicamycin, whereas a slightly lower molecular mass form, also detected by the antiserum, was induced by this treatment. A lower molecular mass form of PDI was also observed in roots of alfalfa seedlings during the first 5 weeks after germination. PDI levels increased in developing soybean seeds up to 17 d after fertilization and then declined. Tissue print immunoblots revealed highest levels of PDI protein in the cambial tissues of soybean stems and petioles and in epidermal, subepidermal, cortical, and pith tissues of stems of alfalfa and tobacco. Immunogold electron microscopy confirmed the localization of PDI to the endoplasmic reticulum in soybean root nodules.  相似文献   

20.
Previously, it has been reported that a mammalian protein disulfide isomerase (PDI), when expressed on a single copy number plasmid, can rescue growth of a PDI1-disrupted yeast. However, here, for the first time we demonstrated by tetrad analysis that human PDI (hPDI) is unable to replace yeast PDI (yPDI) when hPDI cDNA is integrated into the yeast chromosome. This observation indicates that hPDI is not functionally equivalent to yPDI. Estimation of the actual copy number of the plasmid, as well as comparison of isomerase and chaperone activities between human and yeast PDI homologues, indicates that one copy of hPDI cDNA is not sufficient to rescue the PDI1-disrupted strain. Notably, the isomerase activities of yPDI family proteins, Mpd1p, Mpd2p, and Eug1p, were extremely low, although yPDI itself exhibited twice as much isomerase activity as hPDI in vitro. Moreover, with the exception of Mpd1p, all hPDI and yPDI family proteins had chaperone activity, this being particularly strong in the case of yPDI and Mpd2p. These observations indicate that the growth of Saccharomyces cerevisiae is completely dependent on the isomerase activity of yPDI.  相似文献   

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