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The oxidation state of the photosystem II manganese cluster influences the structure of manganese stabilizing protein.

Exposure of photosystem II membranes to trypsin that has been treated to inhibit chymotrypsin activity produces limited hydrolysis of manganese stabilizing protein. Exposure to chymotrypsin under the same conditions yields substantial digestion of the protein. Further probing of the unusual insensitivity of manganese stabilizing protein to trypsin hydrolysis reveals that increasing the temperature from 4 to 25 degrees C will cause some acceleration in the rate of proteolysis. However, addition of low (100 microM) concentrations of NH2OH, that are sufficient to reduce, but not destroy, the photosystem II Mn cluster, causes a change in PS II-bound manganese stabilizing protein that causes it to be rapidly digested by trypsin. Immunoblot analyses with polyclonal antibodies directed against the N-terminus of the protein, or against the entire sequence show that trypsin cleavage produces two distinct peptide fragments estimated to be in the 17-20 kDa range, consistent with proposals that there are 2 mol of the protein/mol photosystem II. The correlation of trypsin sensitivity with Mn redox state(s) in photosystem II suggest that manganese stabilizing protein may interact either directly with Mn, or alternatively, that the polypeptide is bound to another protein of the photosystem II reaction center that is intimately involved in binding and redox activity of Mn.

Ammonium Hydroxide↗

A novel method for the immobilization of tyrosinase to enhance stability.

A new method of tyrosinase immobilization by Fuller's-earth adsorption followed by entrapment in gelatin has been developed with 98% activity immobilization yield. An appreciable increase in operational and thermal stability was observed for FEAGE (Fuller's earth-adsorbed gelatin-entrapped) tyrosinase compared with GE (gelatin-entrapped) native enzyme. FEAGE tyrosinase could be used repeatedly after intermittent storage and retained 70% of its initial activity after eight cycles. The half-life of the GE enzyme at 40 degrees C was less than 2 h, whereas the FEAGE enzyme retained about 75% of its initial activity after 2 h. Taken together our data demonstrate clearly that the technique of immobilizing tyrosinase via adsorption followed by entrapment appears promising and is hence recommended for tyrosinase immobilization for commercial production of L-DOPA (3,4-dihydroxyphenylalanine).

Adsorption↗

[Blood coagulation factor XIII and fibrin stabilization (author's transl)].

Coagulation factor XIII (fibrin stabilizing factor, FSF) is detectable in plasma, platelets, placenta and various tissues. In the activated form FSF has the enzymatic properties of a transglutaminase and is capable of stabilizing fibrin by inducing covalent bondings between fibrin monomers. In patients with congenital factor XIII deficiency or acquired immune inhibitors of fibrin stabilization a severe bleeding tendency is evident. There is not yet enough information available concerning the significance of reduced FSF-activity as cofactor in hemorrhagic diathesis and wound healing disturbances in various disease states. There are some indications from experimental studies that there might be an influence of FSF on tumor growth and metastasis as well as arteriosclerosis. The quantitation of the enzyme by radiological and immunological techniques yield reproducible results. Fibrin in its stabilized or non stabilized form can be discriminated in polyacrylamide gel electrophoresis after reduction of fibrin clots.

Adult↗

Zone 4 femoral radiolucent lines in hybrid versus cemented total knee arthroplasties: are they clinically significant?

UNLABELLED: Aseptic loosening of the femoral component is an infrequent but important cause of failure in total knee arthroplasties. Inadequate support in the posterior femoral condylar region (radiographic Zone 4) has been associated with loosening. This zone also has been implicated as a site for ingress of wear debris particles leading to osteolysis. We determined the prevalence of Zone 4 radiolucent lines using fluoroscopy to obtain true lateral radiographs in a series of patients who had bilateral simultaneous total knee arthroplasties with a cemented femur on one side and a cementless porous ingrowth femur on the other. We hypothesized that cementless fixation would yield fewer Zone 4 radiolucent lines than cemented fixation. At an average 7.6 +/- 4.4 years followup, 11 of 16 patients (69%) with cemented femoral fixation had Zone 4 radiolucent lines, whereas none of the patients with cementless prostheses had radiolucent lines. Three of 11 radiolucent lines (27%) were progressive. Knee Society scores were similar for both groups. No femoral components in either group were clinically loose. When excellent initial stability was obtained, cementless femoral fixation yielded fewer Zone 4 radiolucent lines compared with cemented fixation. LEVEL OF EVIDENCE: Therapeutic study, Level III (retrospective comparative study). See the Guidelines for Authors for a complete description of levels of evidence.

Aged↗

Influence of calcium ions on the mechanical properties of a model biofilm of mucoid Pseudomonas aeruginosa.

The mechanical properties of biofilms and in particular their mechanical strength is of great importance for both biofilm reactors and for the removal of undesired biofilms as in cases of biofouling and biocorrosion. By uniaxial compression measurements, it is possible to determine the apparent elastic or Young's modulus and the yield stress as parameters for mechanical stability. This was performed with a recently developed device, using model biofilms of mucoid strain Pseudomonas aeruginosa SG81. The biofilms were grown on membrane filters placed on nutrient agar medium with different concentrations of calcium ions. The compressive stress-strain behaviour up to failure was recorded at a compression speed of 1 micron s-1. The apparent Young's modulus, representing the stiffness of the biofilm, and the yield stress obtained from the stress--strain diagram were used for the description of mechanical properties of biofilms. A certain critical concentration of calcium ions was found where the Young's modulus of the P. aeruginosa biofilms increases strongly and subsequently remains constant for higher calcium concentrations. This behaviour is explained by the presence of calcium ions crosslinking alginate, which is the major component of the extracellular polymeric substances produced by the mucoid P. aeruginosa strain used in this investigation.

Biofilms↗

Photodynamic therapy for choroidal neovascularization: a review.

PURPOSE: To review the biophysical basis and current state of therapy for photodynamic closure of subfoveal choroidal neovascularization in the eye. METHODS: A review of the literature is included, which encompasses the chemical structure, biophysical mechanism of action, range of available agents, status of clinical trials, clinical indications, results of treatments, complications, and future directions. RESULTS: Photodynamic therapy has been shown to be effective in closing both experimental choroidal neovascularization in animal models as well as subfoveal choroidal neovascularization in humans. The therapy results in temporary closure of choroidal new vessels for a period of approximately 1 to 4 weeks. By 12 weeks, most patients have reperfusion or reproliferation of choroidal new vessels resulting in the need for retreatment to achieve continued closure and visual stabilization. Differences exist in the quantum yield, clinical efficiency, and light and sensitizer dose requirements between different classes of agents. Further clinical trials will be required to determine the optimal form of therapy, with verteporfin (Visudyne) as the only currently approved agent. Other agents, including tin etiopurpurin (Purlytin) and motexafin lutetium (Optrin), are currently undergoing phase III, and phase II trials, respectively. CONCLUSIONS: Photodynamic therapy is a promising treatment modality shown to be effective in achieving closure and stabilization of vision loss compared with placebo control in eyes with subfoveal choroidal neovascularization.

Choroidal Neovascularization↗

[Site-localized mutagenesis directed by phosphotriester analogs of oligonucleotides].

17- and 20-mer oligodeoxyribonucleotides and their analogues, containing one to four phosphate groups esterified with ethyl alcohol in different positions of oligonucleotide chain, were synthesized by modified triester method. Ethylated di- and trinucleotide blocks were prepared by transesterification method from chlorophenyl derivatives. The structures of the oligonucleotides were confirmed by Maxam-Gilbert sequencing method. Oligonucleotides were not totally complementary to the N-terminal region of lac Z'gene (coding for N-terminal fragment of beta-galactosidase) of phage M13mpB DNA and induced the formation of the proposed deletion mutant DNA M13mp1 delta T. Phosphotriester analogues were more effective mutagens as compared to phosphodiester oligonucleotides due to their stability to nucleases. The use of E. coli DNA-polymerase I provided the increase in the mutant yields in case of the phosphotriester analogues. The stability of the analogues to 5'----3'----5'-endonuclease action, the specificity of oligonucleotide: DNA binding and the structure of mutant DNA were studied by the Sanger sequencing method.

Coliphages↗

Poly(2-methylthio-7-deazainosinic acid)--hydrophobic stabilization of polynucleotide secondary structure by the 2-methylthio group.

Poly(2-methylthio-7-deazainosinic acid) [poly(ms2c7I)] was enzymatically synthesized by polymerization of 2-methylthio-7-deazainosine 5'-diphosphate with polynucleotide phosphorylase from Micrococcus luteus in high yield. The homopolymer shows much higher thermal stability than its parent polynucleotides poly(7-deazainosinic acid) [poly(c7I)] and poly(I). Its sigmoidal melting curve and pronounced hypochromicity imply a rigid, ordered structure. Poly(ms2c7I), like poly(2-methylthio-inosinic acid) [poly(ms2I)], does not form a complex with poly(C) because of the bulky 2-methylthio substituent. On the other hand, two poly(ms2c7I) strands form very rigid triple strands with poly(A). Different from poly(I) and poly(c7I) the homopolymer poly(ms2c7I) is very stable against cleavage by nuclease S1 and ribonuclease T2 as expected from its rigid secondary structure.

Circular Dichroism↗

Biological properties of a crude venom extract from the greater weever fish Trachinus draco.

Crude venom of the greater weever fish, Trachinus draco was analyzed to assess its toxicity, stability and biological properties. The best yield of venom was obtained by extraction in physiological saline of the whole venom apparatus of the fish which were shock-frozen and stored at -70 degrees C. This extract had a mouse i.v. minimum lethal dose of 1.8 micrograms protein per gram mouse and a total of 61,000 minimum lethal doses were obtained from venom apparatus of one fish. The lethal activity was unstable at room temperature especially at lower protein concentrations. Stability was achieved either by storing the extract at -70 degrees C or by precipitation with ammonium sulfate at 50% saturation. Toxicity of the crude venom was abolished by trypsin treatment. The crude venom did not possess any proteolytic or histamine-releasing activities. The venom caused an outflow of tetraphenylphosphonium from preloaded rat brain particles in a concentration-dependent manner. Like toxicity, this effect was also abolished by trypsin treatment or by keeping the venom at higher temperatures. The crude venom also possessed hemolytic activity with an EC50 for rabbit erythrocytes of 75 ng/ml venom protein. The hemolytic activity was also sensitive to heat and proteolytic treatment. Rabbit erythrocytes were most sensitive to venom followed by rat erythrocytes. Mouse and cattle erythrocytes were only slightly sensitive, whereas human, chicken and guinea pig erythrocytes were totally resistant.

Animals↗

[Preparation and Regeneration of Protoplasts from Monascus purpureus and Genetic Transformation System.].

Generation of fungal protoplast is an essential tool for genetic transformation system. To establish protoplast-mediated genetic transformation system of Monascus purpureus, conditions for the protoplast isolation and regeneration of the mycelia of various enzymes and osmotic stabilizers were examined. To investigate suitable cell age for the protoplast preparation of mycelia of M. purpureus, the mycelia were cultured in different ways at 30oC. Mycelia obtained through cellophane - mediated culture for 30~40h were adequate to protoplast preparation. When lysing enzyme, cellulase and snailase were added to the mycelia in combination or alone, combination of lysing enzyme, cellulase and snailase accordingly at the concentration of 0.3%, 0.1% and 1% was most benefit for protoplast yield. When we applied various osmotic stabilizers at different concentrations to protoplast preparation, 1 mol/L MgSO4 was most effective for the protoplast release. The suitable incubation time with enzyme for the maximum release of protoplasts was 2.5-hr. When we investigate various osmotic stabilizers for the regeneration of the protoplasts of mycelia of strain M34 and N18, the complete medium containing 0.6 mol/L sucrose induced highest hyphal growth with regeneration frequency of 8.5% and 36.4%, respectively. PEG and CaCl2- mediated protoplast co-transformation of strain M34 with pBC-Hygro and pNL1, hygromycin B as selective marker, was fulfilled and 100 stable transformants per microgram DNA were obtained.

Hygromycin B↗

Differential regulation of EGF-like growth factor genes in human keratinocytes.

ErbB signaling increases protein levels of multiple EGF-like growth factors in epithelial cells. To better understand this process, we examined the effects of EGF receptor stimulation on the transcription and mRNA stability of TGF-alpha, amphiregulin (AR), and heparin-binding EGF-like growth factor (HB-EGF) in human keratinocytes. EGF stimulation increased transcription of TGF-alpha, AR, and HB-EGF by 3- to 4-fold within 1 to 2 h. However, AR and HB-EGF mRNA levels peaked at 2 h and then rapidly declined, whereas TGF-alpha transcripts remained elevated for at least 6 h. Actinomycin D decay experiments yielded the rank order of transcript stability TGF-alpha > AR > HB-EGF. Interestingly, ligand treatment appeared to stabilize TGF-alpha and AR mRNAs, whereas HB-EGF transcripts were destabilized. These data demonstrate that gene-specific alterations in gene transcription and mRNA stability play important roles in the temporal regulation of EGF-like growth factor gene expression.

Adult↗

Microencapsulation of water-soluble isoflavone and physico-chemical property in milk.

This study was carried out to investigate the addition of water-soluble isoflavone into milk by means of microencapsulation technique. The yield of microencapsulation, sensory attributes, and capsule stability of water-soluble isoflavone microcapsules in milk were measured. Coating materials used was polyglycerol monostearate (PGMS), and core material was water-soluble isoflavone. The encapsulation yield of water-soluble isoflavone with PGMS was 67.2% when the ratio of coating material to core material was 15:1. The rate of water-soluble isoflavone release from capsules was 18, 19, and 25% when stored at 4, 20, and 30 degrees C for 12 days in milk, respectively. In sensory evaluation, beany flavor and color of microencapsuled water-soluble isoflavone added milk were significantly different from uncapsuled water-soluble isoflavone added milk, however, bitterness was not significantly different. In vitro study, micro-capsules of water-soluble isoflavone in simulated gastric fluid with the range of 3 to 6 pHs were released 3.0-15.0%, however, the capsules in simulated intestinal fluid with pH 7 were released 95.7% for 40 min incubation time. In conclusion, this study provided that PGMS as coating materials was suitable for the microencapsulation of water-soluble isoflavone, and the capsule containing milk was almost not affected with sensory attribute.

Absorption↗

Purification and stabilization of 99mTc-d,l-HMPAO: role of organic extractants.

99mTc-d,l-HMPAO, an important SPECT agent for imaging cerebral perfusion, suffers from the disadvantage of an inherent instability and its shelf life has been reported to be 30 min. The latter is a harsh constraint and not compatible with Centralized Radiopharmacy procedures. During the attempts to improve upon the stability of 99mTc-d,l-HMPAO, preservation of product as an organic extract into suitable solvents like diethylether, ethylacetate, methylethylketone, chloroform was tried out. Chloroform extraction (yield: >90%) resulted in a product having stability not less than 5 hours. Gentle drying of the chloroform extract and reconstitution in normal saline resulted in quantitative recovery of 99mTc-d,l-HMPAO with acceptable radiochemical purity (>90%). This finding is thus of much significance, especially in the context of centralized large hospital radiopharmacy setting, by rendering convenience and flexibility in scheduling patients.

Drug Stability↗

Nonisothermal kinetic studies III: rapid nonisothermal-isothermal method for stability prediction.

A continuous nonisothermal-isothermal method for stability prediction was developed. The approach yields all necessary parameters for prediction, including reaction order. The experimental procedure involves changing the temperature of the samples being studied until degradation is rapid enough to proceed at a convenient isothermal rate for a sufficient number of half-lives with adequate analytical sensitivity so that the reaction order can be unambiguously determined. The analytical information obtained during the nonisothermal and isothermal portions of the experiment is utilized without curve matching in calculating the activation energy and determining the reaction order, reaction rate, and stability prediction at any desired temperature. Model experiments include the acid-catalyzed hydrolysis of acetylcholine bromide and the inversion of sucrose.

Acetylcholine↗

Synthesis and characterization of carbohydrate-linked murine monoclonal antibody K20-human serum albumin conjugates.

Efficacy of antibody mediated targeting depends on retention of immunoreactivity in conjugates. Retention can be improved by site-specific linkage of drugs or drug-loaded carriers to residues that are located well away from the antigen-binding sites. In this study we describe the site-specific linkage of a potential drug carrier, human serum albumin (HSA), to the carbohydrate residues in Dal K20, a murine IgG1 monoclonal antibody (mAb) against human renal cell carcinoma, using disulfide exchange between 3-(2-pyridyldithio)propionic acid succinimidyl ester (SPDP)-derivatized HSA and 11-[[3-(2-pyridyldithio)propionyl]amino]undecanoic acid hydrazide (AUPDP)-derivatized mAb Dal K20. AUPDP gave a higher yield of the conjugate than a functionally analogous 3-(2-pyridyldithio)propionic acid hydrazide (HPDP), suggesting that the extra length of the former facilitated the linkage. The conjugates were found to be unstable without reduction of the hydrazone linkage using sodium cyanoborohydride. Stabilized 1:1 HSA:K20 carbohydrate-linked conjugates were isolated and compared with non-site-specific 1:1 conjugates in which HSA was conjugated to amino groups in mAb Dal K20. The yield and stability of the two conjugates were comparable, but the site-specific conjugate was found to retain three times more antibody activity than the non-site-specific conjugate.

Animals↗

Role and mechanism of the maturation cleavage of VP0 in poliovirus assembly: structure of the empty capsid assembly intermediate at 2.9 A resolution.

The crystal structure of the P1/Mahoney poliovirus empty capsid has been determined at 2.9 A resolution. The empty capsids differ from mature virions in that they lack the viral RNA and have yet to undergo a stabilizing maturation cleavage of VP0 to yield the mature capsid proteins VP4 and VP2. The outer surface and the bulk of the protein shell are very similar to those of the mature virion. The major differences between the 2 structures are focused in a network formed by the N-terminal extensions of the capsid proteins on the inner surface of the shell. In the empty capsids, the entire N-terminal extension of VP1, as well as portions corresponding to VP4 and the N-terminal extension of VP2, are disordered, and many stabilizing interactions that are present in the mature virion are missing. In the empty capsid, the VP0 scissile bond is located some 20 A away from the positions in the mature virion of the termini generated by VP0 cleavage. The scissile bond is located on the rim of a trefoil-shaped depression in the inner surface of the shell that is highly reminiscent of an RNA binding site in bean pod mottle virus. The structure suggests plausible (and ultimately testable) models for the initiation of encapsidation, for the RNA-dependent autocatalytic cleavage of VP0, and for the role of the cleavage in establishing the ordered N-terminal network and in generating stable virions.

Capsid↗

Optimization of a nonradioactive method for consistent and sensitive determination of activated K-ras protein.

Accurate measurement of activity of wild-type K-ras protein is important due to its tumor suppressor action in tissues such as lung. A published method by Taylor and co-workers uses plasmid-containing Escherichia coli cells to produce a glutathione-S-transferase/raf-1 ras binding domain (GST-RBD) fusion protein attached to glutathione beads to isolate activated ras protein. We systematically optimized the method before use on lung tissues. Changing the GST-RBD protein induction temperature from the original 37 to 30 degrees C produced a consistently greater yield of fusion protein. To improve stability of the GST-RBD beads so as to perform large-scale experiments, 0.1% NaN(3) was added. NaN(3)-treated beads retained full affinity for at least 24 days. Sensitivity was improved by using a polyvinylidene difluoride membrane rather than nitrocellulose for immunoblotting. We also compared our GST-RBD beads with two commercial assay kits and found that our beads had both superior sensitivity and reduced variability. In summary, our modification of the GST-RBD affinity method to recover activated K-ras greatly increased the yield of fusion protein, prolonged the useful life of GST-RBD beads to at least 24 days, and enhanced detection sensitivity.

Animals↗

Contrasting effects of K8 and K18 on stabilizing K19 expression, cell motility and tumorigenicity in the BSp73 adenocarcinoma.

The co-expression of vimentin and keratin-type intermediate filaments in the same cell was often reported to correlate with increased invasiveness and a more aggressive tumorigenic phenotype. To address the possible physiological relevance of these observations, we transfected simple keratins (K8 and 18) either individually, or in combination, into a tumorigenic but non-metastatic pancreatic adenocarcinoma that expresses vimentin but no keratins. Expression of K8 resulted in the stabilization of endogenous K19 in these cells, and formation of keratin filaments containing K8 and K19. Transfection of K18 yielded unstable K18 protein, but K18 could be stabilized when K8 was co-expressed in the same cells. Clones expressing K18 alone, or together with K8, displayed a reduced ability to grow in soft agar and decreased motility when compared to control, or K8/19 expressing cells. Moreover, K18 expressing cells were dramatically inhibited in their ability to form tumors when injected into syngeneic animals. The extent of suppression in the tumorigenicity of these cells correlated with the level of K18 expressed by these cells. The results show that K18 expression in cells may result in the suppression of the motile and tumorigenic abilities of this adenocarcinoma.

Adenocarcinoma↗