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1.
磷酸酪氨酸蛋白专一抗体的制备和纯化   总被引:2,自引:0,他引:2  
以偶联磷酸化酪氨酸的牛血清白蛋白(BSA)作为免疫原免疫兔获得抗血清。自抗血清中分离获得抗体。自酪胺合成磷酸酪胺,并偶联到溴化氰活化的Sepharose4B上。抗体经磷酸酪胺-Sepharose 4B亲和柱纯化,所得抗体专一性强,Dot blot显示:抗体仅对酪氨酸磷酸化的蛋白质包括酪氨酸磷酸化的血清白蛋白,溶菌酶,卵清蛋白起抗原抗体反应,而不识别非酪氨酸磷酸化的溶菌酶,卵清蛋白,也不识别作为免疫  相似文献   

2.
将KGM和Sepharose 4B凝胶在相同条件下活化、偶联接上染料Cibacron Blue F3GA制成了KGM和Sepharose 4B染料亲和吸附剂,并用来与牛血甭白蛋白(BSA)作用,每毫升KGM亲和吸附剂可吸附BSA 28mg,用NaSCN洗脱时间为84.5%,而Sepharose 4B染料样和吸附剂每毫升可吸附BSA 15.3mg,用NaSCN洗脱时间收迷81.7%,并对两种凝胶的染  相似文献   

3.
用合成的磷酸酪氨酸牛血清白蛋白(P-tyr-BSA)免疫家兔得抗血清,此抗血清与3种磷蛋白均有交叉反应.将 IgG 纯化并与辣根过氧化物酶偶联,经 Sephadex G-200纯化得酶标结合物.纯化的 IgG 只与载体牛血清白蛋白和磷酸酪氨酸蛋白有交叉反应.ELISA (酶联免疫吸附测定法)的最小检出量为2—4ng,与被检磷酸酪氨酸蛋白均有交叉反应,但与磷酸丝氨酸和磷酸苏氨酸蛋白及其他含磷酸物质无交叉反应.样品变异系数,批间和批内均小于5%.血清磷酸酪氨酸蛋白检测结果:20例正常人均阴性,20例急性淋巴细胞性白血病18例阳性,14例非急性淋巴细胞性白血病均阳性.  相似文献   

4.
抗生物素蛋白结合蛋白的发现及分离纯化   总被引:2,自引:0,他引:2  
本文报道了在日本血吸虫感染的兔血清及日本血吸虫卵中,存在一种能与抗生物素蛋白(又称亲和素)专一性结合的蛋白质,称为抗生物素蛋白结合蛋白。该蛋白质与亲和素的结合与生物素及亲和素的糖链部分无关,并能在高PH、高浓度盐及去污剂等条件下与亲和素结合。利用DEA-52离子交换柱及偶联有亲和素的Sepharose4B亲和层析柱,从日本血吸虫感染的兔血清中,分离纯化了该蛋白质。提纯的亲和素结合蛋白在SDS-PA  相似文献   

5.
从CHO工程细胞培养上清初步纯化的uPA免疫BALB/c小鼠,通过杂交瘤技术制备单克隆抗体细胞株,取其中一株38-1-7株作高密度大量培养,细胞密度达13.2×106/mL时,抗体滴度为1∶61.44×104。用自制的uPA-Sepharose4B柱纯化抗体。抗体滴度提高243倍。纯化后的抗体与活化的Sepharose4B珠交联,制成IgG-Sepharose4B亲和层析抗体柱,亲和力常数:1.28×109(mol/L)-1,交联率:83.5%。直接从培养上清纯化uPA,纯度为96.3%,回收率:81.6%±19,纯化倍数:50倍左右,比活1.11±0.29×105。试验结果表明该法效果好,方法简单、操作方便、值得进一步研究和应用。  相似文献   

6.
用1%胆酸钠和15%孢和硫酸铵相结合的方法,从牛脑皮层细胞膜中抽提得到主要含激活型G-蛋白和腺苷酸环化酶两种蛋白组分的制剂,然后通过Sepharose6B柱将两者分开,将含Gs高活力的级分用庚胺-Sepharose4B柱进一步分离,即可获得高活力的Gs,SDS-PAGE显示为分子量45000和36000的两条蛋白带,该法具简便,快速,重复性好、产率高等优点,且可同时获得无Gs污染的AC。用无Gs污  相似文献   

7.
转基因烟草生产霍乱毒素B亚单位的纯化   总被引:1,自引:0,他引:1  
提取转基因烟草叶片总蛋白,用经溴化氰活化的Sepharose 4B偶联有抗CT IgG色谱柱,得到了表达产物CTB蛋白质。经PAGE、Western blot、琼脂糖免疫扩散和免疫电泳等方法鉴定表明该蛋白与天然CTB相同。  相似文献   

8.
LA-90细胞在温度转化过程中蛋白质酪氨酸磷酸化作用研究夏英,高漫,颜卉君,吴国利(北京师范大学生物系生物化学及分子生物学研究室,100875)关键词酪氨酸蛋白激酶;磷酸酪氨酸蛋白磷酸酶;细胞转化is-RSVLA-90细胞是RSV转染的小鼠3T3细胞...  相似文献   

9.
SOD样蛋白(SOD-like protein,SLP)是从LAK 细胞中发现的一种具有自由基清除功能的蛋白.为阐明SLP的生化特性和确定其蛋白序列或基因序列,采用DEAE-Sepharose FF层析从LAK 细胞中得到部分纯化的SLP,并采用IEF等电聚焦电泳,活性染色,将含有活性蛋白的胶条直接免疫Balb/c 小鼠,制备抗血清并筛选得到多株有中和SLP清除自由基活性的单克隆抗体.Western blot结果表明SLP分子量约为67 kD,并测得pI约为4.2.  相似文献   

10.
Metylomonassp.GYJ3菌的甲烷单加氧酶(MMO)粗酶提取液经DEAE-SepharoseCL-6B阴离子交换层析、SephadexG-100凝胶过滤层析和DEAE-TSKgelHPLC分离纯化出MMO还原酶组分.经HPLC分析,纯度大于95%,纯化倍数为4.4,加入至MMO羟基化酶和调节蛋白B的体系中表现比活为228nmol环氧丙烷每分钟毫克蛋白.SDS-PAGE电泳表明还原酶由一种亚基组成,分子量42kD.ICP-AES测定还原酶的Fe含量为1.83molFe每mol蛋白.UV-Vis光谱表明还原酶除280nm蛋白质特征峰外在460nm有最大吸收峰,且A280nm/A460nm为2.50,与其它黄素一铁硫蛋白相似,推测还原酶可能含一个FAD辅基和Fe2S2中心.在厌氧条件下,还原酶能够和NADH作用,UV-Vis光谱分析表明还原酶460nm处特征吸收峰消失,说明在MMO催化过程中还原酶接受NADH的电子.DEAE-SepharoseCL-6B阴离子交换层析分离出调节蛋白B,部分纯化的调节蛋白B的分子量大约在20kD,它能够提高MMO比活性40倍,MMO还原酶和调节蛋白B单独存在时不具有MMO  相似文献   

11.
The antibodies were prepared from antisera of rabbits immunized with bovine serum albumin containing covalently bound p-aminophenyl-beta-D-galactopyranoside (APG) and purified by affinity chromatography on APG-containing ovalbumin immobilized by BrCN-activated Sepharose 4B. The antibodies possessed a selective specificity for APG and interacted with different APG-containing proteins, including APG-containing lysosomal alpha-glucosidase. The purified antibodies are immunoglobulins of G type as was determined from the molecular weights of native and dissociated antibodies and from the immunochemical assays with antibodies against rabbit IgG.  相似文献   

12.
Immunoadsorbents were modified with monomethoxy-polyethylene glycol (PEG; average molecular weights of 5000 (PEG-5000) and 1900 (PEG-1900)) activated with cyanuric acid (activated PEG) by four different methods. In the two methods, anti-BSA antibodies were modified with activated PEG with and without protection of antigen binding sites with BSA and then were coupled to CNBr-activated Sepharose 4B. In the other two methods, Immunoadsorbents, which were prepared by coupling anti-BSA antibodies to CNBr-activated Sepharose 4B, were modified with activated PEG with and without the protection. The effects of PEG modification by these four methods on the binding ratio (the ratio of the numbers of moles of antigen adsorbed to the numbers of moles of binding sites of antibody coupled), the antigen binding property and the resistance to proteolytic digestion of immunoadsorbents were studied. The decrease in the binding ratio by the modification with activated PEG was small enough to use modified immunoadsorbents for industrial purification processes. The resistance to proteolytic digestion of immunoadsorbents was improved by modification with activated PEG. The modification without protection of antigen binding sites gave higher resistance to proteolytic digestion than that with protection, while the former caused larger decrease in the binding ratio of modification. The immunoadsorbents modified with activated PEG-5000 showed higher resistance to proteolytic digestion than those modified with activated PEG-1900.  相似文献   

13.
The nicotinic acetylcholine receptor (nAChR) is phosphorylated to a high stoichiometry on tyrosine residues both in vitro and in vivo. Moreover, tyrosine phosphorylation has been shown to regulate the functional properties of the receptor. We report here the purification and characterization of a protein tyrosine phosphatase that dephosphorylates tyrosine-phosphorylated nAChR from Torpedo electroplax, a tissue highly enriched in the nAChR. The 32P-labeled tyrosine phosphorylated nAChR was used as a substrate to monitor the enzyme activity during purification. The protein tyrosine phosphatase activity was purified using three consecutive cation-exchange columns (phosphocellulose, S Sepharose Fast Flow, Bio-Rex 70), followed by two affinity matrices (p-aminobenzylphosphonic acid-agarose and thiophosphotyrosyl nAChR-Sepharose 4B). The enzyme activity was purified to homogeneity, with an overall purification of 25,000-fold and a yield of 20%. The purified enzyme had an apparent molecular mass of 43 kDa on sodium dodecyl sulfate-polyacrylamide gels and migrated as a monomer during Superose 12 chromatography. It had a neutral pH optimum and a specific activity of 18 mumol/mg of protein/min, with a Km of 4.7 microM for tyrosine-phosphorylated nAChR. The phosphatase was specific for tyrosine phosphorylated nAChR; it showed no activity towards the nAChR phosphorylated on serine residues by cAMP-dependent protein kinase. The enzyme also dephosphorylated 32P-labeled poly(Glu-Tyr) (4:1). However, it did not dephosphorylate p-nitrophenylphosphate. The tyrosine phosphatase was inhibited by ammonium molybdate (IC50 of 2 microM), sodium vanadate (IC50 of 150 microM) and the divalent cations Mg2+, Mn2+, and Ca2+ at millimolar concentrations, but not by 100 microM ZnCl or 10 mM NaF. Poly-(Glu, Tyr) (4:1) and heparin inhibited the enzyme activity at micromolar concentrations. These unique properties of the purified enzyme suggest that it may be a novel protein tyrosine phosphatase that specifically dephosphorylates the nAChR.  相似文献   

14.
黄义德 《生物技术》2005,15(5):59-60
为了去除抗血清中BSA载体蛋白产生的抗体,一根对BSA载体蛋白抗体高度特异性的亲和柱被构建。结果表明:所构建的亲和柱对BSA载体蛋白抗体具高度特异性和亲和力,能有效地去除BSA载体蛋白产生的抗体。  相似文献   

15.
In whole rat uterus incubated in the presence of [32P]orthophosphate the oestradiol receptor is [32P]phosphorylated on tyrosine. This finding follows our previous observation that in vitro this receptor can be phosphorylated on tyrosine by a uterus kinase that endows the receptor with oestradiol-binding activity. The calf uterus oestradiol receptor interacts with high affinity with 2G8 and 1G2 antiphosphotyrosine antibodies coupled to Sepharose (Kd values of 0.28 and 1.1 nM, respectively). The interaction with 2G8 antibody has been exploited to purify the oestradiol receptor. This interaction disappears after inactivation of the oestradiol receptor by the nuclear phosphatase that hydrolyses phosphotyrosine of the receptor. This fact substantiates the evidence that the oestradiol receptor in uterus is phosphorylated on tyrosine and that this phosphorylation is required for hormone binding to the receptor. The rat liver glucocorticoid receptor also interacts with high affinity with 2G8 antiphosphotyrosine antibody coupled to Sepharose (Kd value of 0.21 nM). This receptor has been purified by using in sequence heparin-Sepharose and antiphosphotyrosine antibody-Sepharose.  相似文献   

16.
Summary Two different antibodies against bovine serum albumin (BSA)-p-coumaric acid-conjugates were produced and used to localize phenolic compounds in exines of pollen from different species,p-Coumaric acid (pC) was coupled to BSA either via the carboxy group (BSA-pC) or directly to the aromatic ring system (BSA-azopC). The polyclonal antibodies raised in rabbits were characterized by ELISA with homologous and heterologous antigens using turkey ovalbumin as carrier protein. The results showed that the two immune sera directed against BSA-pC and BSA-azo-pC, respectively, were specific forp-coumaric acid and structurally similar compounds. Only a very poor binding by acetic acid-ovalbumin-conjugates and no binding by turkey ovalbumin was detectable. The antibodies reacted with partially purified pollen walls and with highly purified exines. The intensity of the immune reaction was proved to be dependent upon the pollen source and the preparation of the pollen walls. Using light and electron microscopy, it was shown for the first time that, in the exines ofCucurbita maxima, antibody binding was predominantly observed in the region of the germ pore apertures, the outer foot layers, and in the micro- and macrospines. We conclude from this and other earlier published data that phenols are important structural compounds of sporopollenin.Abbrevations AA acetic acid - BA benzoic acid - BSA bovine serum albumin - BSA-azo-pC p-coumaric acid coupled in meta position to BSA by a diazo reaction - BSA-azo-pC I immune serum against BSA-azo-pC - BSA-pC p-coumaric acid coupled to BSA via the COOH-group - BSA-pC I immune serum against BSA-pC - FA ferulic acid - OVA ovalbunin from turkey - pC p-coumaric acid - pHY p-hydroxybenzoic acid - SA sinapic acid - SYA syringic acid - TAT TBS-azide-Tween-buffer - TFA trifluoroacetic acid - VA vanillic acid  相似文献   

17.
The heterobifunctional reagent N-succinimidyl 3-(2-pyridyldithio) propionate was utilized for controlled coupling of mildly reduced BSA and lysozyme to Sepharose gelatin to prepare immunoabsorbents. Each reaction step was examined and quantitated. The free amino groups on gelatin after coupling gelatin to cyanogen bromide-activated Sepharose as well as the number of 3-(2-pyridyldithio) propionyl groups on Sepharose gelatin were quantitated. Coupling of mildly reduced BSA as well as lysozyme to PDP-Sepharose gelatin occurred through sulfhydryl-disulfide exchange and permitted the formation of an immunoabsorbent. The immunoabsorbents were capable of binding the respective antibody and the eluted antibodies were pure and free of plasma proteins.  相似文献   

18.
The binding of the apolar fluorescent dye 8-anilinonaphthalene-1-sulfonate (ANS) to bovine serum albumin (BSA), phospholipase A2 (PLA2), ovalbumin, lysozyme, cobrotoxin and N-acetyltryptophanamide was used to assess the factors affecting the efficiency of energy transfer from Trp residues to the ANS molecule. We found that the efficiency of energy transfer from Trp residues to ANS was associated with the ability of proteins to enhance the ANS fluorescence. At the same molar concentration of protein, BSA enhanced ANS fluorescence most among these proteins; its Trp fluorescence was drastically quenched by the addition of ANS. Fluorescence enhancement of ANS in PLA2-ANS complex increased upon addition of Ca2+ or change of the buffer to acidicpH, resulting in a higher efficiency of energy transfer from Trp residues to ANS. There was limited ANS fluorescence enhancement with ovalbumin, lysozyme, cobrotoxin, and N-acetyltryptophanamide and a less efficient quenching in Trp fluorescence. The capabilities of proteins for binding with ANS correlated with the decrease in their Trp fluorescence being quenching by ANS. However, the microenvironment surrounding Trp residues of proteins did not affect the energy transfer. Based on these results, the factors that affected the energy transfer from Trp residues to ANS are discussed.  相似文献   

19.
Abstract

In this study, four major egg white proteins were purified by two step ion exchange chromatography followed by precipitation. Lysozyme and ovalbumin were separated with Q Sepharose Fast Flow anion exchange chromatography in the first step, resulting in two peaks of lysozyme and three peaks of ovalbumin with 87% and 70% purity by HPLC, respectively. Ovotransferrin was separated with CM-Toyopearl 650 M cation exchange chromatography in the second step, giving 80% purity. Ovomucoid was precipitated from the partial purified protein fraction from the first two steps, and concentrated in the final step to yield 90% purity. Protein recoveries were estimated to be 55, 21, 54, and 21% for lysozyme, ovotransferrin, ovalbumin, and ovomuciod, respectively. Lysozyme was identified from the purified peaks using zymogram refolding gel, whereas ovalbumin was identified by western blotting. Purified ovotransferrin and ovomucoid was identified by mass spectrometry. The results indicate that this purification process is adequate for preparation of lysozyme, ovalbumin, ovotransferrin, and ovomucoid, at least on a laboratory scale.  相似文献   

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