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1.
玉米过氧化物还原蛋白BAS1的原核表达及其功能研究   总被引:1,自引:0,他引:1  
植物过氧化物还原蛋白BAS1是巯基依赖的过氧化物酶,通过催化的Cys残基还原过氧化氢,依赖NADPH的叶绿体硫氧还蛋白还原酶保持BAS1的还原态。玉米含有两种BAS1:2-Cys PrxA和2-Cys PrxB。利用RT-PCR方法从玉米幼叶中克隆了编码成熟2-Cys PrxA的基因,并将蛋白Cys34残基突变成Ser34。SDS-PAGE显示纯化的野生型和突变体蛋白为一条主带,分子量约为23kDa;体外蛋白结合实验表明纯化的叶绿体硫氧还蛋白还原酶通过分子间二硫键结合纯化的2Cys PrxA的C34S突变体,非还原SDS-PAGE显示纯化的野生型2Cys PrxA含有分子间二硫键组成的二体,而纯化的C34S突变体呈现单体,巯基专一性标记化合物AMS修饰及活性分析表明纯化的BAS1还原态是催化还原过氧化氢所所必须的,它由硫氧还蛋白还原酶及其辅酶NADPH所催化。  相似文献   

2.
目的:探索硫氧还蛋白(Trx)抗体柱对Trx融合蛋白纯化的可行性。方法与结果:对含有Trx基因的质粒表达载体pTrxFus进行改造,在Trx读框之后加入6×His序列,并在大肠杆菌中表达C端带有6×His标签的Trx,经Ni2+柱亲和纯化后制备多克隆抗体;把经蛋白A纯化后的抗体偶联在溴化氰活化的琼脂糖凝胶上,制成Trx抗体柱;用此抗体柱纯化与Trx融合表达的豇豆胰蛋白酶抑制剂(CpTI),SDS-PAGE结果显示获得了纯度较高的Trx-CpTI。结论:用Trx抗体制成的免疫亲和层析柱可以有效纯化Trx融合蛋白。  相似文献   

3.
为进一步深入研究我国人群中轮状病毒主要流行的P[4]、P[6]和P[8]型毒株的受体结合特点及结构基础,本研究将P[4]、P[6]和P[8]型毒株VP8*核心区(VP8*core)基因分别构建到原核表达载体pGEX4T-1和pET30a中,利用大肠杆菌表达获得轮状病毒P[4]、P[6]和P[8]型毒株VP8*核心区蛋白,并通过亲和层析分别纯化得到VP8*core-GST融合蛋白和VP8*-his标签蛋白,SDS-PAGE显示蛋白大小分别为46kDa和20kDa。综上,本研究成功构建了pGEX4T-1-VP8*core和pET30a-VP8*core重组质粒,利用原核表达系统得到VP8*coreGST融合蛋白和VP8*core-his蛋白,为VP8*蛋白的功能和结构研究提供基础。  相似文献   

4.
放线共生放线杆菌粗糙型与光滑型菌落的主要外膜蛋白   总被引:2,自引:0,他引:2  
目的:观察放线共生放线杆菌粗糙型与光滑型菌株菌体蛋白表达上的差异。方法:聚丙稀酶胺凝胶电泳观察两型细菌全细胞蛋白及超高速离心提取的细菌主要外膜蛋白差异。结果:全细胞蛋白电泳两型细菌蛋白带无明显差异;提取的主要外膜蛋白电泳粗糙型存在18、29、45kDa蛋白带,实验室参考菌株不存在,临床光滑型菌株存在少量,光滑型实验室参考菌株存在的蛋白带在所有实验菌株中均存在。结论:18、29、45kDa蛋白带可能与放线共生放线杆菌粗糙型菌株相关。  相似文献   

5.
尿卟啉原Ⅲ脱羧酶是生物卟啉类化合物分支合成的关键酶。从GenBank中搜寻到4种玉米尿卟啉原Ⅲ脱羧酶:Les22、UROD1、UROD2和截短UROD,氨基酸序列比对显示N端的同源性较差;玉米les22基因比urod1基因在开放阅读框的上游少3个碱基,导致阅读框移码。植物除玉米外存在高度同源的UROD1和UROD2,具有结构完整性。本文以玉米幼叶总RNA为模板,通过RT-PCR克隆了玉米les22和urod2基因,并对突变位点进行校正,同时通过定点突变获得urod1基因,它们都编码去除叶绿体导肽的尿卟啉原Ⅲ脱羧酶。再分别将les22、urod2和urod1基因插入大肠杆菌的不同表达载体,转化表达菌株BL21(DE3),16℃诱导表达18h,SDS-PAGE分析显示,Les22的N端含有组氨酸标签或SUMO蛋白,重组蛋白表达为包涵体,UROD2的N端含有组氨酸标签或SUMO、TRX、GST或MBP蛋白,未检测到目的蛋白在上清液的特异表达,而UROD1和MBP融合为可溶性表达,表明玉米UROD的N端氨基酸残基可能参与蛋白在大肠杆菌的折叠。这为研究玉米UROD的种类和功能奠定基础。  相似文献   

6.
一步柱层析纯化螺旋藻藻蓝蛋白   总被引:1,自引:0,他引:1  
采用硫酸铵盐析结合疏水层析技术分离纯化螺旋藻中的藻蓝蛋白.试验结果表明,在磷酸盐缓冲体系下藻蓝蛋白粗提液经1.25 mol/L硫酸铵盐析处理后离心脱气,只需采用一步Macro-Prep Methyl 疏水层析,藻蓝蛋白的纯度(A620/A280)可提高到4.017,回收率为19.38%.特征吸收峰和荧光光谱证实纯化后的产物符合藻蓝蛋白的性质,Native-PAGE电泳只出现单一染色带,表明纯化得到的藻蓝蛋白是均一的;SDS-PAGE电泳出现分子量为15.4 kDa、17.3 kDa的2条染色带,分别为藻蓝蛋白的α亚基与β亚基.  相似文献   

7.
硫氧还蛋白-1(thioredoxin-1,Trx1)是一种广泛存在于生物体内的氧化还原调节蛋白,其氧化还原状态的变化是细胞内发挥氧化还原调控作用的重要过程.本文建立了Trx1氧化还原状态的检测方法—氧化还原蛋白免疫印迹法(redox Western blot),即通过碘乙酸(IAA)标记Trx1,根据蛋白所带负电荷的不同,达到分离蛋白氧化与还原状态的目的,并根据能斯特方程计算出相应的氧化还原电势.本方法是在蛋白免疫印迹(Western blot)的基础上建立的,具有低成本、易操作的特点.实验中分别采用H2O2和DTT处理样本,利用此方法检测了细胞裂解液中、细胞内及过表达Trx1氧化还原电势的变化;并检测了HEK293细胞不同生长时期Trx1的氧化还原状态.  相似文献   

8.
目的:表达和纯化两种小鼠RHOX5蛋白的截短型突变体,确定完整的RHOX5蛋白及其两种截短型突变体与MDFIC蛋白结合的能力。方法:生物信息学分析小鼠同源异型框蛋白RHOX5的cDNA序列,分别对RHOX5的两种截短型片段RHOX5 N和RHOX5 C进行PCR、分别扩增RHOX5的两种截短型片段RHOX5 N和RHOX5 C并将其克隆至pGEX4T3原核表达载体,构建重组表达质粒。用重组表达质粒分别转化大肠杆菌RosettaTM2(DE3)菌株,经IPTG诱导后,使用Glutathione-Sepherase 4B颗粒对融合蛋白进行小批量亲和纯化,通过SDS-PAGE电泳分离目标蛋白,确定融合蛋白的表达。进行GST-pull down实验,检测完整的RHOX5蛋白及其两种截短型突变体与MDFIC蛋白结合的能力。 结果:在大肠杆菌RosettaTM2(DE3)中有效地实现了GST-RHOX5、GST-RHOX5 N和GST-RHOX5-C-3种融合蛋白的可溶性表达;经Glutathione Sepherase 4B颗粒亲和纯化后,获得了纯化后GST融合蛋白;GST-pull down实验证实,含有homeodomain的RHOX5蛋白和RHOX5C截短型突变体可以与MDFIC蛋白相结合,而RHOX5N截短型突变体则丧失了与MDFIC蛋白结合的能力。 结论:实现了RHOX5及其两种截短型突变体的原核表达和纯化,证实RHOX5蛋白的homeodomain结构域是其与MDFIC结合的关键部位。  相似文献   

9.
秦童  黄震 《植物学报》2019,54(1):119-132
硫氧还蛋白(Trx)属于巯基-二硫键氧化还原酶家族, 通过作用于底物蛋白侧链2个半胱氨酸残基之间的二硫键(还原、异构和转移)来调控胞内蛋白的结构和功能。叶绿体Trx系统包括Trx及Trx类似蛋白、铁氧还蛋白(Fd)依赖的硫氧还蛋白还原酶(FTR)和还原型烟酰腺嘌呤二核苷磷酸(NADPH)依赖的硫氧还蛋白还原酶C (NTRC)。除了基质蛋白酶类活性变化及叶绿体蛋白的转运受Trx系统调控之外, 在叶绿体中还存在1条跨类囊体膜的还原势传递途径, 把基质Trx的还原势经跨膜转运蛋白介导, 最终传递给类囊体腔蛋白。FTR和NTRC共同作用维持叶绿体的氧化还原平衡。该文对叶绿体硫氧还蛋白系统的调节机制进行了综述, 同时讨论了叶绿体硫氧还蛋白系统对维持植物光合效率的重要意义。  相似文献   

10.
人Ⅳ型胶原的提纯及其抗血清制备   总被引:1,自引:0,他引:1  
采用胃蛋白酶限制性消化,NaCl分级盐析,还原和烷基化反应,纤维素离子交换层析从人胎盘组织分离纯化Ⅳ型胶原.经SDS-PAGE电泳鉴定符合Ⅳ型胶原α肽链电泳带.用纯化的Ⅳ型胶原免疫兔制备出高效价的特异抗血清.  相似文献   

11.
Two thioredoxin fractions had previously been reported to occur in Anabaena 7119 by Buchanan and co-workers (Yee, B. C., dela Torre, A., Crawford, N. A., Lara, C., Carlson, D. E., and Buchanan, B. B. (1981) Arch. Microbiol. 130, 14-18). These proteins were detected by their ability to activate spinach fructose-1,6-bisphosphatase (Fru-P2-ase). The partially purified proteins resembled similar thioredoxins found in spinach chloroplasts and were designated thioredoxin f (Tf) for the fraction most effective in activating spinach Fru-P2-ase and thioredoxin m (Tm) for the fraction most effective in activating spinach NADPH-malate dehydrogenase. Using the assay system of Yee and co-workers, we were able to separate and purify to homogeneity two thioredoxin fractions from Anabaena extracts. Tm corresponded to the thioredoxin fraction we had isolated and studied previously (Gleason, F. K., and Holmgren, A. (1981) J. Biol. Chem. 256, 8301-8309). The other fraction, Tf, was characterized further. Unlike the thioredoxins found in higher plants, the cyanobacterial thioredoxins do not appear to be related. Anabaena thioredoxin f has a Mr = 25,500 as compared to the more usual Mr = 12,000 for Tm. From a comparison of the amino acid composition, Tf is not obviously a dimer or otherwise related to Tm. Tf has one active center cystine disulfide. Anabaena Tf activates spinach Fru-P2-ase very efficiently but has very little activity with spinach malate dehydrogenase. Anabaena Tf, unlike Tm, does not reduce the homologous ribonucleotide reductase. Anabaena Tf also does not activate a partially purified preparation of Anabaena Fru-P2-ase. We conclude that the cyanobacterial Tf is a unique protein with no structural or functional properties in common with other thioredoxins.  相似文献   

12.
首次从黑曲霉Aspergillus niger全基因组中克隆出黑曲霉硫氧还原蛋白基因AnTrx,并对其编码蛋白的第33-37位保守区的活性位点实施定点突变C34S、C37S及C34S-C37S,获得相应的3个定点突变基因。将野生型AnTrx及其突变子分别在大肠杆菌Escherichia coli中诱导表达,比浊法测定纯化的各表达产物还原牛胰岛素α与β链之间二硫键的活性。结果表明,AnTrx的3个突变体都不表现明显催化活性。当突变型与野生型AnTrx等量混合后,发现突变型AnTrx-C34S可显著提高野生型AnTrx的催化效率,而突变型AnTrx-C37S却无此功能。由此证明,AnTrx活性结构域的第37位Cys残基上的巯基能参与攻击硫氧还蛋白和底物蛋白所形成的二硫键而释放被还原的底物蛋白,而第34位Cys残基同其他微生物的同一活性域一样参与硫氧化还蛋白与底物的结合。这一结果有助于认识真菌硫氧还蛋白第37位活性位点的作用。  相似文献   

13.
A procedure has been developed for the simultaneous purification to apparent homogeneity of chloroplast thioredoxins f and m, and nonchloroplast thioredoxin h, from the green alga Acetabularia mediterranea. In the chloroplast fraction, three thioredoxins were isolated: one f type thioredoxin (Mr 13.4 kDa) and two m type thioredoxin forms (Mr of 12.9 and 13.8 kDa). A Western blot analysis of crude and purified chloroplast thioredoxin preparations revealed that Acetabularia thioredoxin m was immunologically related to its higher-plant counterparts whereas thioredoxin f was not. In the nonchloroplast fraction, a single form of thioredoxin h (Mr 13.4 kDa) and its associated enzyme NADP-thioredoxin reductase (NTR) were evidenced. Acetabularia NTR was partially purified and shown to be an holoenzyme composed of two 33.0-kDa subunits as is the case for other plant and bacterial NTRs. Similarity was confirmed by immunological tests: the algal enzyme was recognized by antibodies to spinach and Escherichia coli NTRs. Acetabularia thioredoxin h seemed to be more distant from higher-plant type h thioredoxins as recognition by antibodies to thioredoxin h from spinach and wheat was weak. The algal thioredoxin h was also slightly active with spinach and E. coli NTRs. These results suggest that in green algae as in the green tissues of higher plants the NADP and chloroplast thioredoxin systems are present simultaneously, and might play an important regulatory role in their respective cellular compartments.  相似文献   

14.
Thioredoxins are small ubiquitous proteins which act as general protein disulfide reductases in living cells. Chloroplasts contain two distinct thioredoxins ( f and m) with different phylogenetic origin. Both act as enzyme regulatory proteins but have different specificities towards target enzymes. Thioredoxin f (Trx f), which shares only low sequence identity with thioredoxin m (Trx m) and with all other known thioredoxins, activates enzymes of the Calvin cycle and other photosynthetic processes. Trx m shows high sequence similarity with bacterial thioredoxins and activates other chloroplast enzymes. The here described structural studies of the two chloroplast thioredoxins were carried out in order to gain insight into the structure/function relationships of these proteins. Crystal structures were determined for oxidized, recombinant thioredoxin f (Trx f-L) and at the N terminus truncated form of it (Trx f-S), as well as for oxidized and reduced thioredoxin m (at 2.1 and 2.3 A resolution, respectively). Whereas thioredoxin f crystallized as a monomer, both truncated thioredoxin f and thioredoxin m crystallized as non-covalent dimers. The structures of thioredoxins f and m exhibit the typical thioredoxin fold consisting of a central twisted five-stranded beta-sheet surrounded by four alpha-helices. Thioredoxin f contains an additional alpha-helix at the N terminus and an exposed third cysteine close to the active site. The overall three-dimensional structures of the two chloroplast thioredoxins are quite similar. However, the two proteins have a significantly different surface topology and charge distribution around the active site. An interesting feature which might significantly contribute to the specificity of thioredoxin f is an inherent flexibility of its active site, which has expressed itself crystallographically in two different crystal forms.  相似文献   

15.
Thioredoxin, a small redox protein with an active site disulfide/dithiol, is ubiquitous in bacteria, plants, and animals and functions as a reducing agent and modulator of enzyme activity. A thioredoxin has been purified to electrophoretic homogeneity from the leaves ofArabidopsis thaliana using procedures such as DE-52 ion exchange chromatography, Sephadex G-50 gel filtration, Q-Sepharose ion exchange chromatography, and DEAE-Sephadex A-25 chromatography. The purified thioredoxin was determined to be a single band on SDS-PAGE, and its molecular weight was estimated to be 21 KDa, which was much larger than those of most other known thioredoxins. It was proved to be an f-type thioredoxin, since it could activate fructose-l,6-bisphosphatase, but it could not activate NADP+-malate dehydrogenase. As a protein disulfide reductase, it could reduce the disulfide bonds contained in insulin. As a substrate, it showed a Km value of 20.2 μM onEscherichia coli thioredoxin reductase, and it had an optimal pH of 8.0. The molecular weight of the purified f-type thioredoxin is not consistent with those of the five divergent h-type thioredoxins already identified by cDNA cloning. The purified f-type thioredoxin is the first example isolated fromA. thaliana.  相似文献   

16.
Green seedlings of soy bean and wheat contain, like the plant seeds, multiple thioredoxin proteins which possess all typical thioredoxin properties but are inactive in the stimulation assay with spinach fructose-bis-phosphatase. However the pure proteins do have thioredoxin f activity when tested with homologous enzymes isolated from soy bean or wheat leaves, respectively, in the presence of Mg++. This new type of species specificity, unknown in all other in vitro assays of reduced thioredoxins, has to be considered in characterizing complete thioredoxin profiles in plants.  相似文献   

17.
Contrasting evolutionary histories of chloroplast thioredoxins f and m   总被引:3,自引:0,他引:3  
Fourteen thioredoxin sequences were used to construct a minimal phylogenetic tree by using parsimony. The bacterial thioredoxins clustered into three groups: one containing the photosynthetic purple bacteria, Escherichia and Corynebacterium; a second containing the photosynthetic green bacterium, Chlorobium; and a third containing cyanobacteria. These groupings are similar to those generated from earlier 16s RNA analyses. Animal thioredoxins formed a fourth group. The two thioredoxins of chloroplasts (f and m) showed contrasting phylogenetic patterns. As predicted from prior studies, spinach chloroplast thioredoxin m grouped with its counterparts from cyanobacteria and eukaryotic algae, but, unexpectedly, thioredoxin f grouped with the animal thioredoxins. The results indicate that, during evolution, thioredoxin m of contemporary photosynthetic eukaryotic cells was derived from a prokaryotic symbiont, whereas thioredoxin f descended from an ancestral eukaryote common to plants and animals. The findings illustrate the potential of thioredoxin as a phylogenetic marker and suggest a relationship between the animal and f-type thioredoxins.   相似文献   

18.
Procedures are described for the purification to homogeneity of chloroplast thioredoxins f and m from leaves of corn (Zea mays, a C4 plant) and spinach (Spinacea oleracea, a C3 plant). The C3 and C4f thioredoxins were similar immunologically and biochemically, but differed in certain of their physiochemical properties. The f thioredoxins from the two species were capable of activating both NADP-malate dehydrogenase (EC 1.1.1.37) and fructose-1,6-bisphosphatase (EC 3.1.3.11) when tested in standard thioredoxin assays. Relative to its spinach counterpart, corn thioredoxin f showed a greater molecular mass (15.0-16.0 kDa vs 10.5 kDa), lower isoelectric point (ca. 5.2 vs 6.0), and lower ability to form a stable noncovalent complex with its target fructose bisphosphatase enzyme. The C3 and C4 m thioredoxins were similar in their specificity (ability to activate NADP-malate dehydrogenase, and not fructose-1,6-bisphosphatase) and isoelectric points (ca. 4.8), but differed slightly in molecular mass (13.0 kDa for spinach vs 13.5 kDa for corn) and substantially in their immunological properties. Results obtained in conjunction with these studies demonstrated that the thioredoxin m-linked activation of NADP-malate dehydrogenase in selectively enhanced by the presence of halide ions (e.g., chloride) and by an organic solvent (e.g., 2-propanol). The results suggest that in vivo NADP-malate dehydrogenase interacts with thylakoid membranes and is regulated to a greater extent by thioredoxin m than thioredoxin f.  相似文献   

19.
Glycerate kinase (EC 2.7.1.31) from maize (Zea mays) leaves was shown to be regulated by light/dark transition. The enzyme more than doubled in activity after either the leaves or isolated mesophyll chloroplasts were illuminated with white light for 10 minutes. Rate of inactivation in the dark was faster in leaves than in the isolated chloroplast fraction. The stimulating effect of light could be mimicked in crude preparations by addition of 10 or 50 millimolar dithiothreitol or 100 millimolar 2-mercaptoethanol. The thiol treatment resulted in 8- to 10-fold activation of glycerate kinase, with the highest rates in the range of 27 to 30 micromoles per mg chlorophyll per hour. Activation was not accompanied by any changes in the apparent Mr value of glycerate kinase as determined by gel filtration (Mr = 47,000). In contrast to maize glycerate kinase, the enzyme from spinach was not affected by either light or thiol exposure.

Partially purified maize glycerate kinase was activated up to 3-fold upon incubation with a mixture of spinach thioredoxins m and f and 5 millimolar dithiothreitol. The thioredoxin and dithiothreitol-treated glycerate kinase could be further stimulated by addition of 2.5 millimolar ATP. The results suggest that glycerate kinase from maize leaves is capable of photoactivation by the ferredoxin/thioredoxin system. The synergistic effect of ATP and thioredoxins in activation of the enzyme supports the earlier expressed view that the ferredoxin/thioredoxin system functions jointly with effector metabolites in light-mediated regulation during photosynthesis.

  相似文献   

20.
Thioredoxin h has been purified to electrophoretic homogeneity from spinach roots using a procedure devised for leaves. The root thioredoxin (h2 form) differed from chloroplast and animal thioredoxins in showing an atypical active site (Cys-Ala-Pro-Cys) but otherwise resembled animal thioredoxin in structure. Sequence data for a total of 72 residues of spinach root thioredoxin h2 (about 69% of the primary structure) showed 43-44% identity with rabbit and rat thioredoxin. Analysis of cell fractions from the endosperm of germinating castor beans revealed that thioredoxin h occurs in the cytosol, endoplasmic reticulum, and mitochondria. The present findings demonstrate a similarity between plant thioredoxin h and animal thioredoxins in structure and intracellular location and raise the question of whether these proteins have similar functions.  相似文献   

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