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B Ru

Publications and source records attributed to B Ru.

At least 19 recordsLinked to original sources

Different protective roles in vitro of alpha- and beta-domains of growth inhibitory factor (GIF) on neuron injuries caused by oxygen free radicals.

It was well known that beta-amyloid (Abeta) and tau protein play an important role in pathological procedure of Alzheimer's disease (AD), a senile dementia. The growth inhibitory factor (GIF, also named metallothionein-3, MT-3) had been demonstrated to inhibit the outgrowth of cortex neurons in the medium with extract of the AD patient brain. In our experiments, it was found that the neurons of cortex and the PC12 (pheochromocytoma) cells could be protected from the cytotoxicity of beta-amyloid 25-35 in presence of GIF and its domains. Additionally, GIF can scavenge the hydroxyl radical efficiently in CytC-VitC radical producing system and its alpha-domain shown more effective potentials than its beta-domain. The electron paramagnetic resonance spectra also show that the alpha-domain has more potential ability for eliminating reactive oxygen free radicals than its beta-domain. The results suggest that GIF could act as an efficient scavenger against free radicals in vitro and the alpha-domain in GIF molecule shows more potential in protecting against reactive oxygen species injury than the beta-domain.

Alzheimer Disease↗

Phosphorylation of tau by glycogen synthase kinase 3beta in intact mammalian cells influences the stability of microtubules.

Tau is a neuronal microtubule-associated protein found predominantly in axons. Hyperphosphorylation of tau reduces the stability of microtubules, which may be a pathogenic mechanism in Alzheimer's disease. To understand the different effects between tau and glycogen synthase kinase 3beta (GSK-3beta) phosphorylated tau on the organization and stability of microtubules, we performed transfection studies on 3T3 cells using EGFP-tau (Enhanced Green Fluorescence Protein-tau) and GSK-3beta to quantify the stability of microtubules. Laser confocal microscope observation revealed that thick and thin microtubule bundles could be induced by tau and GSK-3beta phosphorylated tau. The bundles appeared either to be relatively straight or to form a ring around the circumference of the cell. Both the thick and thin microtubule bundles were resistant to colchicine-induced dissociation, with thick bundles more resistant than thin bundles. The bundles induced by GSK-3beta phosphorylated tau were sensitive to colchicine, and could be reversed by the addition of LiCl, an inhibitor of GSK-3beta.

3T3 Cells↗

Characterization of a recombinant chimeric plasminogen activator with enhanced fibrin binding.

A recombinant chimeric plasminogen activator (GHRP-scu-PA-32K), consisting of the tetrapeptide Gly-His-Arg-Pro fused to the N-terminus of the low-molecular single-chain urokinase-type plasminogen activator (Leu144-Leu411), was produced by expression in CHO cells. The stable expression cell line was selected for large-scale expression. The product was purified by antibody-Sepharose affinity chromatography with a recovery of 67%. The apparent molecular weight of purified GHRP-scu-PA-32K was 33 kDa according to SDS-PAGE. Its specific activity was 150000 IU/mg protein according to fibrin plate determination. The conversion of single-chain to two-chain molecules mediated by plasmin was comparable for GHRP-scu-PA-32K (K(m)=4.9 microM, k(2)=0.35 s(-1)) and scu-PA-32K. The activation of plasminogen by GHRP-scu-PA-32K (K(m)=1.02 microM, k(2)=0.0028 s(-1)) was also similar to that of scu-PA-32K. The fibrin binding of GHRP-scu-PA-32K was 2.5 times higher than that of scu-PA-32K at a fibrin concentration of 3.2 mg/ml. In contrast to scu-PA-32K in vitro 125I-fibrin-labeled plasma clot lysis, GHRP-scu-PA had a higher thrombolytic potency, whereas it depleted less fibrinogen in plasma. These results show that GHRP-scu-PA-32K as expected is a potential thrombolytic agent.

Animals↗

[Study on the form and stability of alpha and beta domain of metallothionein binding to lead (II)].

For studying the actions of metallothionein(MT) binding to lead, the alpha and beta structural domain of metallothionein binding to Cd (Cd7-alpha-MT and Cd7-beta-MT) was extracted and purified from a strain of BL2I by dissolving them in acid to eliminate protein. The apo-alpha-MT and apo-beta-MT were separated by gel Sephadex-G25 to eliminate Cd. Different doses of lead were added to the apo-alpha-MT and apo-beta-MT. The structure of MT metal Cluster with lead was formed after reacting completely, and was then examined by ultraviolet spectrophotometer. The UV spectrum showed that the interaction of lead with alpha domain leading to two kind of products, one binding with 4 lead(Pb4-alpha-MT) and the other binding with 7 lead (Pb7-alpha-MT). Only one product, the beta domain binding with 3 lead(Pb3-beta-MT) was formed. The reaction rate of these products with DTNB was also measured in this study. Results showed that the domain binding to 4 lead was more stable than the others. All these works provide strong evidence that further studies on the mechanism of MT interacting with lead and the function of MT in eliminating lead were needed.

Drug Interactions↗

Expression, purification and characterization of beta domain and beta domain dimer of metallothionein.

In order to examine the independent self-assembly of the beta fragment of metallothionein and the interaction between two domains with the linker sequence, Lys-Lys-Ser, the chemically synthesized genes of the beta domain and its dimer (beta-KKS-beta) were cloned into vector pGEX-4T-1 and expressed as carboxyl terminal extension of glutathione-S-transferase (GST). After the GST fusion proteins had been digested with thrombin on a glutathione-Sepharose 4B affinity chromatography column, the beta domain and its dimer were purified with gel filtration and analyzed for their biochemical and spectroscopic properties. Amino acid composition and molecular mass are determined to be consistent with the expected value. The analysis of metal content shows that the beta domain and its dimer can bind with about 3eq and 6eq divalent metals, respectively. The characteristic peak presented around 254 nm in the UV and CD spectrum indicated that both the beta domain and its dimer are able to form the cadmium-thiolate clusters without the aid of the alpha domain. Furthermore, the absorption peak of the beta domain dimer is much higher than that of the beta domain, which suggested that there is an interaction between two beta domains. Finally, the metal-binding ability was determined by DTNB competitive reaction and the value of half dissociation pH, the results reveal that the beta domain dimer has stronger metal-binding ability than the single beta domain, which provides further evidence of the interaction between the two domains.

Base Sequence↗

Construction and expression of antibody targeted plasminogen activator*

It has been known that antibody-mediated plasminogen activator will be much more specific than its parent molecular. To get a cheaper and more effective medicine for thrombolytic therapy, we used SZ51, a GMP140 specific monoclonal antibody, and a truncated single-chain urokinase to construct a novel targeted plasminogen activator. PCR was used to amplify the region of VL and VH chains from Fab of SZ51, GMP140 specific monoclonal antibody, and scu-PA-32KD(leu144-leu411) from urokinase gene, respectively. Through suitable linker and appropriate restriction sites, these fragments were joined together and inserted into the expression vector, pET-5a, via NdeI site. The recombinant protein was expressed in BL21 (DE3) plyS, a kind of E. coli. It was shown in Western-blotting and ELISA that the protein could interact with the multiple cloned antibody of urokinase. After partial purification: dialysis, Sephadex G-100, dialysis and Phenyl-Sepharose fast flow, the product had a strong fibrinolytic activity through activating plasminogen on fibrin plate. The specific activity was about 47,000 IU/mg, corresponding to 80,000 IU/mg for the part of rscu-PA-32k, and the activity could be inhibited specifically by urokinase specific antibody. Activation of plasminogen by the chimera followed Michaelis-Menten kinetics, and the K(m) was 1.08 uM.

Journal Article↗

Cysteine-independent polymerization of metallothioneins in solutions and in crystals.

Polymerization of metallothioneins is one of the usually encountered puzzles during the research process of metallothioneins' structure and function. Our work focuses on the cysteine independently occurred polymerization from metallothioneins monomers in different milieus, while it leaves out the aggregation caused by the oxidation of cysteine, because the latter circumstance is the result of purification lapsus. After the purification of metallothioneins monomers, a dynamic light-scattering technique is used to detect the polymerized states of rabbit liver metallothionein I and II in different buffers, which is the first systematical detection of polymerized states of metallothioneins in solutions. The effects of different compositions of each buffer are discussed in details. Steric complementarity, hydrophobic, and electrostatic interaction characteristics are studied, following the modeling of monomers and relevant polymers of rat metallothionein II, rabbit liver metallothionein I and II. These theoretical calculations are the first complete computer simulations on different factors affecting metallothioneins' polymerization. A molecular recognition mechanism of metallothioneins' polymerization in solutions is proposed on the bases of experimental results and theoretical calculations. Preliminary X-ray studies of two crystal forms of rabbit liver metallothionein II are compared with the crystal structure of rat metallothionein II, and the polymerized states in crystal packing are discussed with the knowledge of polymerization of metallothioneins in solutions. The hypothesis, which is consistent with theoretical calculations and experimental results, is expected to construct a connection between the biochemical characteristics and physiological functions of metallothioneins, and this research may give some enlightenment to the topics of protein polymerizations.

Amino Acid Sequence↗

[Metallothionein and cancer].

Metallothionein(MT) is a group of conjugated proteins which are rich in cysteine with low molecular weight. MTs have recently been proposed to play an important role in carcinogenesis and cancer therapy. The researches included: 1. The possibility of MT in reducing the side effects of anticancer drug. 2. The potential role of MT in carcinogenesis. 3. The correlation between MT and the acquired resistance of tumor cells to anticancer drug.

Animals↗

Crystallization and preliminary X-ray studies of metallothionein II from rabbit liver.

Metallothionein II (Mw = 6.8 kDa), induced by cadmium and purified from rabbit liver, has been crystallized in space group P6222 or P6422. The unit-cell parameters were a = b = 113.4, c = 219.1 A, alpha = beta = 90.0, gamma = 120.0 degrees when crystallized from sodium citrate buffer and a = b = 113.4, c = 219.6 A, alpha = beta = 90.0, gamma = 120.0 degrees when crystallized from Tris-HCl buffer. There are 12 molecules per asymmetric unit and the solvent content is about 57%.

Animals↗

Expression of the mouse metallothionein-I gene conferring cadmium resistance in a transgenic cyanobacterium.

This paper reports the construction of a transgenic strain of cyanobacterium aimed at removing heavy metal pollution in waters. The mouse metallothionein-I (mMT-I) gene was inserted in the vector pRL-439 downstream of the strong psbA promoter. The resulting plasmid pRL-MT was ligated at the EcoRI site of the shuttle vector pKT-210 to generate the shuttle expression vector pKT-MT. This recombinant plasmid was introduced into Anabaena sp. PCC 7120 by triparental conjugative transfer. After selection on streptomycin, a stable transgenic Anabaena strain was obtained. The presence of the mMT-I gene was confirmed by DNA/DNA hybridization and its expression was demonstrated by immunodetection with specific antibodies. A metal tolerance experiment showed that this transgenic Anabaena strain had acquired higher metal resistance.

Anabaena↗

The expressed alpha domain of mouse metallothionein-I from Escherichia coli displays independent structure and function.

The alpha domain of mouse metallothionein-I (mMT-I) was expressed in E. coli as a C-terminus of the 26 KD glutathione-S-transferase and purified from the cell lysates. The amino acid composition and molecular weight of the expressed protein are as expected. The metal-binding stoichimetry was determined to show that divalent metals bind to the expressed alpha domain at the desired ratio of 4:1. The ultraviolet absorbance, circular dichroism spectra and the atomic force microscopy indicate that it can form the proper metal-thiolate structure as in the whole MT molecule. The apparent affinity of the expressed alpha domain to bind cadmium is 1.8-fold stronger than the recombinant mMT-I when detected by the reaction with DTNB. The ability to scavenge hydroxyl free radicals remains higher than the whole MT molecule. All the results demonstrate that the expressed alpha-domain from E. coli exhibits independent biochemical and physiological structure/function without the assistance of beta domain.

Amino Acids↗

Purification and characteristics of recombinant mouse metallothionein-I from Escherichia coli.

The mouse metallothionein-I (mMT-I) cDNA was amplified by polymerase chain reaction (PCR), inserted into vector pGEX-4T-1, and expressed in Escherichia coli as a carboxyl terminal extension of the 26-kDa glutathione-S-transferase (GST). Analyzed by SDS-PAGE, the amount of the expressed fusion protein GST-MT was over 50% of total cellular proteins. After the fusion protein had been digested with thrombin on a Glutathione-Sepharose 4B affinity chromatography column, recombinant mMT-I was purified by gel filtration on Sephadex G50. The results of molecular mass, amino acid composition and sequence of 10 amino acids at the N-terminus of the recombinant mMT-I demonstrate that the purified protein is the one we desired. The ratios of metal:protein and thiol:protein are the same as those of wild-type MT. The half-dissociation pHs of Cd, Cu, and Zn from recombinant mMT-I were 3.57, 1.40, and 5.20, respectively, which are in agreement with those from native rabbit MT-I. The ultraviolet absorbance and circular dichroism (CD) spectra at pH 8.0 and pH 2.0 were all similar to those of native MT, indicating that they have the same metal-thiolate structure even though six amino acid residues have been added at the N-terminus of the recombinant protein.

Amino Acid Sequence↗

Expression of mouse metallothionein-I gene confers cadmium resistance in transgenic tobacco plants.

Transgenic tobacco plants containing a mouse metallothionein-I (MT-I) gene fused to the cauliflower mosaic virus 35S (CaMV 35S) promoter and nopaline synthase (nos) polyadenylation site were obtained by transforming tobacco leaf discs with an Agrobacterium tumefaciens strain carrying the chimaeric gene. Transformants were directly selected and rooted on medium containing cadmium and kanamycin. A total of 49 individual transgenic tobacco plants were regenerated. Among them 20% showed a very high expression level and their growth was unaffected by up to 200 microM cadmium, whereas the growth of control plants was severely affected leaf chlorosis occurred on medium containing only 10 microM cadmium. The concentration of microM cadmium. The concentration of MT-I in leaves of control and transgenic tobacco was determined with Cd/haemoglobin saturation assay, a polarographic method and western blotting. In addition, seeds from self-fertilized transgenic plants were germinated on medium containing toxic levels of cadmium and scored for tolerance/susceptibility to this heavy metal. The ratio of tolerant to susceptible plants was 3:1 indicating that the metallothionein gene is inherited as a single locus.

Agrobacterium tumefaciens↗

Alpha-domain of human metallothionein IA can bind to metals in transgenic tobacco plants.

With a view to exploring its use as a metal-binding factor in transgenic plants we prepared the alpha-domain of metallothionein by reconstitution of rabbit apometallothionein and proteolysis of MT-1 and MT-2 with subtilisin. The isolated alpha-domains were characterised by UV and CD spectroscopy Double-Stranded. DNA encoding the alpha-domain (106 bp) of the human MT-IA was constructed from chemically synthesized oligomers by repair synthesis and enzymatic ligation, cloned into pUC19 and sequenced. A expression construct containing the cloned alpha-domain was introduced into tobacco cells on a disarmed Agrobacterium tumefaciens Ti-plasmid. Transformed tobacco cells were selected and regenerated on medium containing cadmium and kanamycin. The growth of roots and shoots of transformants was unaffected by up to 100 microM cadmium, whereas control plants showed severe inhibition of root and shoot growth, and chlorosis of leaves on medium containing only 10 microM cadmium. Southern hybridization confirmed the presence of the transgene in the transformed plant tissues. The concentration of human alpha-domain peptides in transgenic tobacco leaves was determined by the Cd/hemoglobin saturation assay and polarography using the rabbit alpha-domain as standard. The results indicate that the alpha-domain, one of two domains in MT molecules, is not only stable in vitro, but is also expressed efficiently and functions independently in transgenic plant cells.

Agrobacterium tumefaciens↗

Bioconcentration of cadmium in water hyacinth (Eichhornia crassipes) in relation to thiol group content.

To study the bioconcentration of cadmium in water hyacinth, the plants were exposed to water containing 2 microg Cd2+/ml for extended periods of time. Three strains from several exposures during a 30-day period were sampled for the analyses of cadmium and thiol group. The data showed that the plant concentrates cadmium mainly in the roots and that the cadmium uptake is proportional to the increase of the thiol group content. The latter suggests the possibility of using the thiol group content to assess the bioconcentration of heavy metal ions in water hyacinth and as a general parameter for monitoring the heavy metal pollution of water. A simple two-compartmental model was used to simulate the kinetics of cadmium uptake. The calculated bioconcentration factor matches the one derived directly from experimental data, indicating the adequacy of the model.

Journal Article↗

Construction of multiple copy of alpha-domain gene fragment of human liver metallothionein IA in tandem arrays and its expression in transgenic tobacco plants.

Metallothioneins (MT) are low molecular weight, cysteine-rich, metal-binding proteins. An MT molecule contains two domains which appear to act independently--an alpha-domain, which is characterized by cadmium-binding, and a beta-domain, which binds preferentially to copper. Based on this conception, DNA duplex encoding the alpha-domain (106 bp) of human MT-IA was constructed from a chemically-synthesized oligomer by repair synthesis and enzymatic ligation and cloned into pUC19. The genes cloned were sequenced and found to be in the correct order as designed. Synthetic directional adapters were attached to the terminals of the alpha-domain gene fragment of human MT-IA to establish complete control over fragment orientation during ligation. The use of these directional adapters thereby ensured the production of multiple copies of the alpha-domain in tandem arrays. The successive alpha-domains were linked by a peptide linker consisting of 10 residues. A chimeric gene containing 12 cloned tandemly repeated copies of the 106 bp alpha-domain DNA was introduced into tobacco cells on a disarmed Ti-plasmid of Agrobacterium tumefaciens. A total of 10 different transgenic tobacco plants were generated, of which two showed root and shoot growth unaffected by up to 200 mg/l kanamycin and 100 microM cadmium, whereas root growth of control plants was severely inhibited and leaf chlorosis developed on media containing only 10 microM cadmium.

Agrobacterium tumefaciens↗

An improved ELISA with linear sweep voltammetry detection.

An improved ELISA combined with linear sweep voltammetry detection of p-nitrophenol generated by an enzyme has been investigated in this study. p-nitrophenol, produced from alkaline phosphatase catalysing p-nitrophenyl phosphate, yielded an oxidative peak at 1.06 V (vs. Ag/AgCl) with a wax-impregnated tubular graphite anode. Without separation, the small three-electrode system was directly inserted in the well of an ELISA plate for detection. The detection limit for p-nitrophenol was 1 x 10(-6) M, lower than that obtained by measuring the absorbance of p-nitrophenol. The feasibility of utilizing linear sweep voltammetry as a detection scheme was demonstrated by determining metallothionein, granulocyte-colony stimulating factor and Xenopus laevis keratin using the above new system. The method was simple, reproducible and much more sensitive than traditional spectrophotometry.

Animals↗

An improved method for isolation and identification of Zn-metallothionein from cadmium-induced rat liver.

Zn-metallothioneins (MT-1 and MT-2) were isolated and purified from Wistar rat liver induced by subcutaneous injection with cadmium chloride over a short time. Instead of Sephadex G-50 and DEAE Sephadex A-50, new chromatographic media produced by Pharmacia, Sephacryl S-200, S-100 and DEAE Sepharose Fast Flow were used in the purification of metallothioneins. The time required for purification with the new method was only 1/3 that required with the usual method and had the same purification effect and rate of recovery. The number of mercapto groups measured with modified Ellman's reagent and cysteine as standard is 20 in MT molecules. Zn and Cd concentrations in each fraction were measured by single sweep polarography rather than atomic absorption spectrophotometry. MT-1 and MT-2 contained 6 gram atoms of zinc, but no cadmium. Purified MT-1 and MT-2 were shown by high performance liquid chromatographic analysis to be highly homogeneous and had an amino acid composition similar to that of Cd-MT.

Amino Acids↗