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At least 343 records · Page 19Linked to original sources

Magic-angle spinning solid-state NMR of a 144 kDa membrane protein complex: E. coli cytochrome bo3 oxidase.

Recent progress in magic-angle spinning (MAS) solid-state NMR (SSNMR) has enabled multidimensional studies of large, macroscopically unoriented membrane proteins with associated lipids, without the requirement of solubility that limits other structural techniques. Here we present initial sample preparation and SSNMR studies of a 144 kDa integral membrane protein, E. coli cytochrome bo(3) oxidase. The optimized protocol for expression and purification yields approximately 5 mg of the enzymatically active, uniformly (13)C,(15)N-enriched membrane protein complex from each liter of growth medium. The preparation retains endogenous lipids and yields spectra of high sensitivity and resolution, consistent with a folded, homogenous protein. Line widths of isolated signals are less than 0.5 ppm, with a large number of individual resonances resolved in the 2D and 3D spectra. The (13)C chemical shifts, assigned by amino acid type, are consistent with the secondary structure previously observed by diffraction methods. Although the structure is predominantly helical, the percentage of non-helical signals varies among residue types; these percentages agree well between the NMR and diffraction data. Samples show minimal evidence of degradation after several weeks of NMR data acquisition. Use of a triple resonance scroll resonator probe further improves sample stability and enables higher power decoupling, higher duty cycles and more advanced 3D experiments to be performed. These initial results in cytochrome bo(3) oxidase demonstrate that multidimensional MAS SSNMR techniques have sufficient sensitivity and resolution to interrogate selected parts of a very large uniformly (13)C,(15)N-labeled membrane protein.

Amino Acid Sequence↗

TRPC6 silencing in primary airway smooth muscle cells inhibits protein expression without affecting OAG-induced calcium entry.

TRPC proteins have been described as non-selective cation channels and are thought to be involved in the regulation of Ca(2+) movement in various cells, including airway smooth muscle (ASM) cells. In order to study the role of these channels in ASM cells, transfection of a small interfering RNA (siRNA) designed against the TRPC6 channel was performed in guinea pig primary ASM cells. This specific siRNA was complexed with the new X-TremeGene (X-TG) chemical transfection reagent, whose efficiency and low cytotoxicity were determined by the use of a non-silencing rhodamine-tagged siRNA. It was found that more than 95% of cells were transfected by an optimized protocol. Verification of TRPC6 transcript down-regulation was determined by RT-PCR while Western blot analysis attested to lower protein content in the microsomal fraction. Micro-spectrofluorimetry measurements of control and siRNA-treated cells revealed that lower TRPC6 expression did not affect OAG-induced intracellular Ca(2+) movement. Thus, TRPC6 channels cannot be defined as simple Ca(2+) transporters but more likely as protein complexes supporting monovalent cation conductance in ASM cells. These conductances would in turn facilitate membrane depolarization of high input resistance cells, Ca(2+) channel activation and tone increase. In conclusion, this study defines a valuable model of RNA interference study in primary cultures of ASM cells, eventually allowing for silencing of other target proteins for which no pharmacological modulators are currently available.

Animals↗

Immunocytochemical detection of brain neurons using the selective marker NeuN.

The aim of the present work was to develop optimal protocols for immunocytochemical reactions for nuclear protein NeuN for light and laser confocal microscopy which avoid the thermal antigen demasking procedure, which degrades the state of the tissue and requires use of expensive adhesive-coated slices. Maximal antigen retention was obtained after fixation in zinc-formalin and Bouin's fluid (maximum one day). Two protocols are proposed allowing the thermal demasking procedure to be avoided during detection of neuron marker NeuN on paraffin sections examined by light and confocal microscopy.

Animals↗

Evaluation and optimization of the conditions for an improved ferulic acid intercalation into a synthetic lamellar anionic clay.

PURPOSE: The aim of the study is to optimize the intercalation conditions of ferulic acid (FERH), an antioxidant compound, into Mg-Al-hydrotalcite for a safe skin photoprotection. METHODS: The intercalation products were prepared incubating hydrotalcite (HTlc) in aqueous solutions of FERH sodium salt at different temperatures over 4 and 8 days. Quantitative determination of intercalated FERH was performed by thermogravimetric analysis and morphology by scanning electron microscopy (SEM). FERH stability study was carried out at different pHs and temperatures. FERH was analyzed by reversed phase-high-performance liquid chromatography. Response surface methods (RSMs) were used to assess optimal intercalation conditions and FERH stability. RESULTS: In all intercalation products, FERH content was found to be about 48% w/w except when the intercalation process was carried out at 52 degrees C for 8 days and at 60 degrees C for both 4 and 8 days, which resulted to be 40.39, 39.99, and 34.99%, respectively. The RSM designs showed that intercalation improvement can be achieved by working at pH 6, at temperatures below 40 degrees C, and over 4 days of incubation. CONCLUSIONS: The optimal conditions for a proper FERH intercalation were assessed. The development of a new optimized protocol may improve HTlc-FER complex performances and safety by augmenting dosage and reducing the presence of harmful reactive species in the final formulation.

Aluminum Hydroxide↗

Bone remodeling markers: assessment of fracture risk and fracture risk reduction.

There is an increasing repertoire of laboratory tests available for assessing the bone remodeling process. Biochemical markers of bone remodeling can be measured in serum or urine, and have a number of potential roles in the management of fracture risk. Differences in remodeling between individuals might be related to fracture risk and could be used to target therapy. Change in remodeling with therapy could be related to fracture risk reduction and the choice of therapy could be influenced by knowledge of bone remodeling. Biochemical therapeutic monitoring may improve patient understanding and therapeutic adherence. The rate of bone remodeling is weakly predictive of fracture risk in individuals who are not receiving therapy; however, it is not clear whether this is independent of other risk factors. There is increasing evidence that change in bone mineral density does not explain fracture risk reduction with antiresorptive therapies, and that therapeutic benefit might be explained by change in bone turnover. Additional studies and information are required to allow these scientific advances to be translated into cost-effective and validated clinical protocols. Optimizing the precision and accuracy of bone turnover assessment remains an important priority.

Absorptiometry, Photon↗

Novel therapeutic strategies in scleroderma.

Optimal management for scleroderma (systemic sclerosis) is likely to require treatment of the underlying disease process, which remains incompletely understood, and also of the organ-based complications of this heterogeneous condition. Clinical trials evaluating several potential agents have been completed recently, including D-penicillamine and interferon alpha. Unfortunately none of these studies has suggested significant efficacy. This article focuses on new treatment approaches using existing therapeutic agents, such as prostacyclin, and considers the potential usefulness of new agents (eg, relaxin, halofuginone) or strategies such as intensive immunosuppression with peripheral stem cell rescue. Ultimately, a better understanding of disease pathogenesis may facilitate the development of targeted therapy against key events or mediators, but for the present better evaluation of existing agents and a focus on optimizing protocols for organ-based complications, such as pulmonary vascular disease or hypertensive renal crisis, are important goals.

Clinical Trials as Topic↗

Liquid fermentation and an adapted cetyltrimethylammonium bromide (CTAB) method enable sequencing-grade DNA extraction from Phanerodontia australis.

High-quality genomic DNA extraction from basidiomycete fungi remains challenging due to polysaccharide co-purification and nuclease-mediated DNA degradation. We systematically compared 22 experimental conditions combining five DNA extraction methods (one Dellaporta-based method, three CTAB-based variants, and one commercial kit) with five mycelium preparation techniques (scalpel scraping, fungal suspension, silica bead homogenization, liquid fermentation, and liquid nitrogen treatment) for Phanerodontia australis (BRM62389). DNA quality was assessed by 1% agarose gel electrophoresis, NanoDrop spectrophotometry, and Qubit fluorimetry. The optimal protocol combined liquid-fermentation mycelium with an adapted CTAB method, yielding Qubit-quantified concentrations of 34.2 and 62.6 ng/µL (samples S21 and S22), 260/280 ratios of 2.06 and 2.05, 260/230 ratios of 1.88 and 1.85, and no detectable DNA degradation by agarose gel electrophoresis. This protocol enabled whole-genome sequencing, yielding a 37.62 Mb assembly with 98.5% completeness as assessed by BUSCO v5 (basidiomycota_odb10 lineage dataset, n = 1,764). Liquid fermentation is associated with the production of younger, actively growing hyphae with reduced cell wall thickness, and the adapted CTAB method effectively removed residual polysaccharides. This protocol provides a reliable, cost-effective approach for obtaining sequencing-grade DNA from P. australis.

Basidiomycota↗

Immortalization of antigen selected B cells.

This paper reports the generation of monoclonal antibody producing hybridomas from a small number of antigen-specific B cells selected by panning on antigen-coated dishes and rosetting with antigen-coupled paramagnetic beads. Anti-HIV positive B cells from spleen could be recovered by panning with an efficiency of 5% and a purity of 24%. Immunobead selection of anti-HIV positive B cells from the same mice yielded a recovery of 17% and a purity of 7%. Various experimental conditions with respect to the selection of specific B cells were investigated, leading to an optimized protocol for the isolation of a limited subset of B cells. The selected cells retained their property to produce immunoglobulins and could be clonally expanded in the presence of human T cell supernatant and irradiated murine thymoma helper cells to generate sufficient cells for a mini-electrofusion with NS-1 myeloma cells. Up to 78 specific hybridomas could be generated from one anti-HIV positive B cell. An overall efficiency of specific B cell immortalization of up to 10% was obtained.

Animals↗

Efficient transfer of antibodies into mammalian cells by electroporation.

An optimized protocol for electroporation is described which is suitable for introducing antibodies into mammalian cells. The method results in the uptake of detectable amounts of antibodies in 80% of the cells and in 40% large amounts are introduced. As an example, cell cycle activity (transition from the G1 to S phase) was inhibited by the introduction of monoclonal antibodies against G1-specific cyclin D1 into CV-1 and MCF7 cells. This specific antibody mediated inhibition of cellular function did not affect the viability of the cells since they recovered from the inhibition after some time. While approaching the efficiency of microinjection, the new protocol for electroporation of antibodies additionally permits treatment of the larger number of cells which are required for biochemical analyses.

Animals↗

Effects of prostaglandin E2 on the micronucleus formation in mouse bone marrow cells by various mutagens.

The effects of prostaglandin E2 (PGE2), as a trigger of erythroid progenitor cells into the cell cycle, were studied on the induction of micronuclei by various mutagens; with mitomicin C (MMC) the optimal protocol was established. PGE2 itself did not induce any micronuclei in this experiment. The highest frequency of micronuclei and dose-response relationship between PGE2 doses and micronucleus frequency were observed 30 h after injection of MMC to mice administered PGE2 24 h previously. Sensitization by PGE2 pretreatment was also found for other mutagens, such as vincristine, 5-fluorouracil, benzo[a]pyrene, 1,1-dimethylhydrazine and 2-naphthylamine. These results support the hypothesis that accelerating the erythropoiesis increases the frequency of micronuclei induced by mutagens.

2-Naphthylamine↗

Comprehensive polypeptide analysis of microdissected rat brain areas: combining 2-dimensional gel electrophoresis with 2-dimensional HPLC and immunoanalysis and sequencing procedures.

An improved methodology has been developed which allows resolution, identification, and quantitation of hundreds of proteins and neuropeptides from a single rat brain nucleus (5 mg wet wt.). After metabolic labelling, proteins (greater than about 15 kDa) are separated from peptides (less than about 10 kDa) by sonicating the tissue in an acidic peptide extraction buffer; after centrifugation, proteins are in the pellet, peptides in the supernatant. To quantitate peptide synthesis, peptides are resolved to purity by reverse-phase HPLC followed by ion exchange HPLC. Proteins are resolved with a two-dimensional (2-D) gel protocol optimized for neural tissue. To identify specific proteins by immunoanalysis, proteins are transferred to polyvinyl difluoride (Immobilon) and immunostained in the presence of Tween blocking buffer. After visualization with an avidin-biotin alkaline phosphatase procedure, the blot is post-stained with India ink to visualize the protein pattern context. To sequence spots, proteins are transferred to Immobilon, stained with Coomassie, and directly subjected to automated gas phase sequencing. The immunoblot procedure can detect less than 0.1 pmol protein, and the sequencing procedure can detect less than 10 pmol protein. After transfer enough material remains on the gels to allow subsequent autoradiography or silver stain. Quantitative analysis of 2-D gels is examined in a companion paper. These procedures should enhance the utility of 2-D gels in neurochemical studies.

Amino Acid Sequence↗

Polymerase chain reaction (PCR) amplification for the detection of porcine parvovirus.

A polymerase chain reaction (PCR) amplification method was developed and evaluated to detect porcine parvovirus (PPV). A pair of 20-base primers and an oligonucleotide probe were derived from the DNA sequences common to two isolates of PPV, NADL-8 and NADL-2. The primers flanked 118-bp nucleotides within the region coding for the major structural protein VP2. After DNA amplification of PPV replicative form (RF), a 158-bp fragment was detected in agarose gels. This amplified fragment was shown to be specific for PPV DNA after Southern transfer and hybridization to a 20-base internal probe. The amplified fragment also contained a single EcoRI cleavage site. Various conditions, such as number of cycles and annealing temperature, were examined to optimize the conditions for detecting viral DNAs from infected cell cultures and swine fetal tissues. Four different isolates of PPV, NADL-8, NADL-2, KBSH and Kresse, and two other viruses, canine parvovirus (CPV) and pseudorabies virus (PRV), were included to determine specificity of amplification. Slot blot hybridization with a radiolabeled probe was used to evaluate the sensitivity of PCR amplification. The optimized protocol was specific for PPV detecting equally all four strains of PPV, but failing to amplify CPV or PRV sequences. The PCR method could detect at least 100 fg of viral replicative form (RF) DNA or the equivalent of 1 PFU of infectious virus. The applications of this method include routine detection of PPV in clinical samples and as a contaminant in mammalian cell lines.

Animals↗

Time in chemo-immunotherapy models: an absolute or a relative variable? Lessons from the levamisole experience.

An analysis is presented of the findings from the available studies in several cancer models, where 2.5-20 mg/kg levamisole was given in combination with different types of cytostatic drugs. It appears that in chemo-immunotherapy experiments it may be preferable to measure time variables (increase in life span, timing of chemotherapy and of immunotherapy) as a per cent of the median survival time of the untreated controls instead of using time as an absolute measure (in days). As regards the study of levamisole in chemo-imnmunotherapy models, the increase in life span by the cytostatic alone seems to be the most important variable studied here. An "optimal" protocol for the evaluation of levamisole is proposed based upon all the findings of this analysis.

Animals↗

Studies on optimal dose and administration schedule of a hematopoietic stimulatory beta-(1,4)-linked mannan.

Several complex carbohydrates have been found to significantly stimulate hematopoiesis. CARN 750, a polydispersed beta-(1,4)-linked acetylated mannan isolated from the Aloe vera plant, has been shown to have activity in wound repair, to function as a antineoplastic, and to activate macrophages. We report, herein, the hematoaugmenting properties of CARN 750 and its optimal dose and timing of administration in an animal model of irradiation-induced myelosuppression. We observed that subcutaneous injections of 1 mg/animal of CARN 750 had equal or greater stimulatory activity for white blood cell (WBC) counts and spleen cellularity as well as on the absolute numbers of neutrophils, lymphocytes, monocytes and platelets than did higher or lower doses of CARN 750 or an optimal dose of granulocyte-colony stimulating factor (G-CSF). Hematopoietic progenitors, measured as interleukin-3-supported colony forming units-culture (CFU-C) and high proliferative potential colony-forming cells (HPP-CFC) assays, were similarly increased by CARN 750 in the spleen but not in the bone marrow. The frequency of splenic HPP-CFCs and absolute number of splenic HPP-CFCs and CFU-Cs were optimally increased by 1 mg/animal of CARN 750. In contrast, bone marrow cellularity, frequency and absolute number of HPP-CFCs and CFU-Cs had as a dosage optimum 2 mg/animal of CARN 750. These parameters were similarly increased by G-CSF. In studies to determine the optimal protocol for the administration of CARN 750 we found that the hematopoietic activity of CARN 750 increased with the frequency of administration. The greatest activity in myelosuppressed mice was observed for all hematopoietic parameters except the platelet number in mice receiving daily administration of 1 mg/animal of CARN 750 with activity equal to or greater than G-CSF.

Animals↗

Impaired response to hepatitis B vaccine in HIV infected children.

Eighteen human immunodeficiency virus (HIV) vertically infected children (HIV group) and 33 seroreverted children (SR group), who had completed hepatitis B vaccination (Engerix B, 20 micrograms dose) were studied. Four out of 18 (22%) HIV children failed to develop protective antibody levels (anti-HBs titres less than 10 mIU ml-1) compared with 1 out of 33 (3%) SR children (p less than 0.05). Magnitude of response among HIV children was significantly lower than among SR children. In HIV children the probability that anti-HBs titres persist above the protective levels was significantly lower than in the SR group at any time during the 24 month follow-up. These results show that HIV children have a suboptimal response to hepatitis B immunization and the protection is less durable. Further studies are needed to determine the optimal protocol for hepatitis B immunization in HIV children.

Child, Preschool↗

Effects of strain, sex, route of administration and partial hepatectomy on the induction by chemical carcinogens of gamma-glutamyltranspeptidase foci in rat liver.

The incidence of gamma-glutamyltranspeptidase (GGT)-positive foci induced by 0.3 mmol/kg diethylnitrosamine (DENA) followed by promotion with 500 ppm sodium phenobarbital in drinking water and was the same in Fischer 344, Sprague-Dawley and Wistar-Lewis rats. There was no difference in the level of GGT-foci initiated by DENA, 7,12-dimethylbenz[a]-anthracene (DMBA), or 1,2-dimethylhydrazine (DMH) followed by promotion with phenobarbital with respect to sex or route of administration including gavage and intraperitoneal injection. Maximal stimulation by partial hepatectomy of DENA initiation of GGT-foci occurred when the DENA was administered 18 h after the operation. Our results indicate that the optimal protocol for the rat liver foci assay consists of using partial hepatectomized rats of 1 of the 3 strains and of either sex. The test substance should be administered by either gavage or intraperitoneal injection so that maximal DNA binding coincides with the maximal rate of DNA replication resulting from partial hepatectomy.

Animals↗

Hybridization methods for DNA sequencing.

I have conducted a general analysis of the practicability of using oligonucleotide hybridization to sequence DNA. Any DNA sequence may be sequenced by hybridization with a complete panel of oligonucleotides. However, sequencing DNA segments over 2 kb long requires an unrealistic number of hybridization reactions. The optimal protocol is to hybridize 7-mer or 8-mer mixed oligonucleotide probes to immobilized DNA fragments 80 bp long: should this prove impractical, hybridization of labeled 270-bp fragments to immobilized mixed 10-mers is a potential alternative. Both protocols require no more experiments to sequence large regions of DNA than conventional m13-based sequencing and are much easier to automate, thus reducing the requirements for skilled personnel. In the ideal case, hybridization sequencing reduces the number of experiments required to sequence megabase DNA by 90%.

Base Sequence↗

Efficacy of transthoracic cardioversion of atrial fibrillation using a biphasic, truncated exponential shock waveform at variable initial shock energies.

Biphasic shocks are more effective than damped sine wave monophasic shocks for transthoracic cardioversion (CV) of atrial fibrillation (AF), but the optimal protocol for CV with biphasic shocks has not been defined. We conducted a prospective, randomized study of 120 consecutive patients with persistent AF to delineate the dose-response curve for CV of AF with a biphasic truncated exponential shock waveform and to identify clinical predictors of shock efficacy. Our data suggest that the initial shock energy for CV with this waveform should be 200 J if the patient weighs <90 kg and 360 J if the patient weighs >/=90 kg.

Aged↗