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Mechanism of neomycin and Rev peptide binding to the Rev responsive element of HIV-1 as determined by fluorescence and NMR spectroscopy.

Rev is an essential HIV-1 regulatory protein that binds the Rev responsive element (RRE) within the env gene of the HIV-1 RNA genome and is involved in transport of unspliced or partially spliced viral mRNA from the cell nucleus to the cytoplasm. Previous studies have shown that a short alpha-helical peptide derived from Rev (Rev 34-50), and a truncated form of the RRE sequence provide a useful in vitro system to study this interaction while still preserving the essential aspects of the native complex. We have selectively incorporated the fluorescent probe 2-aminopurine 2'-O-methylriboside (2-AP) into the RRE sequence in nonperturbing positions (A68 and U72) such that the binding of both Rev peptide and aminoglycoside ligands could be characterized directly by fluorescence methods. Rev peptide binding to the RRE-72AP variant resulted in a 2-fold fluorescence increase that provided a useful signal to monitor this binding interaction (K(D) = 20 +/- 7 nM). Using stopped-flow kinetic measurements, we have shown that specific Rev peptide binding occurs by a two-step process involving diffusion-controlled encounter, followed by isomerization of the RNA. Using the RRE-68AP and -72AP constructs, three classes of binding sites for the aminoglycoside neomycin were unambiguously detected. The first site is noninhibitory to Rev binding (K(D) = 0.24 +/- 0.040 microM), the second site inhibited Rev binding in a competitive fashion (K(D) = 1. 8 +/- 0.8 microM), and the third much weaker site (or sites) is attributed to nonspecific binding (K(D) >/= 40 microM). Complementary NMR measurements have shown that neomycin forms both a specific binary complex with RRE and a specific ternary complex with RRE and Rev. NMR data further suggest that neomycin occupies a similar high-affinity binding site in both the binary and ternary complexes, and that this site is located in the lower stem region of RRE.

2-Aminopurine↗

Reexamination of neomycin B degradation: efficient preparation of its CD and D rings as protected glycosyl donors.

The degradation of neomycin B was reexamined, and a novel protocol was established to prepare the properly masked neomycin CD ring as a glycol donor in excellent yield. Glycosylation of the CD ring with glycol acceptors provided a facile access to versatile intermediates that could be utilized to synthesize a variety of novel neomycin B mimetics for RNA recognition. [reaction: see text]

Anti-Bacterial Agents↗

SOME PHYSIOLOGICAL CHARACTERISTICS OF NEOMYCIN AND KANAMYCIN-RESISTANT STRAINS OF STAPHYLOCOCCUS AUREUS.

Five hundred and fifty-two strains of Staphylococcus aureus of hospital origin were resistant to penicillin, streptomycin, and tetracycline. Of these, 298 were also resistant to neomycin and kanamycin, and this resistance was related to pigment production on glycerol monoacetate agar, the production of beta-lysin, the absence of fibrinolytic and proteolytic activity, and to phage susceptibility. The use of physiological markers, the inadequacy of phage typing, and the possible reasons for the emergence of neomycin-resistant staphylococci are discussed.

Anti-Bacterial Agents↗

A neomycin-resistant cell line for improved production of monoclonal antibodies to cell surface antigens.

Overgrowth of hybridomas by proliferating spleen T cells often hinders the production of monoclonal antibodies to certain antigens. To overcome this problem we derived neomycin-resistant fusion partner SP2 neoR.1 by transfection of SP2/0-Ag14 cells with plasmid pSVTK neo beta. Hybridomas obtained with SP2 neoR.1 grew optimally in the presence of the neomycin analog G418 at concentrations which blocked the proliferative response of T cells to mitogenic stimuli. The advantage of using SP2 neoR.1 and G418 under conditions where spleen cell proliferation occurs after fusion was demonstrated with hybridomas derived from a rat immunized with mouse helper T cell lines.

Animals↗

Synthetic neomycin-kanamycin phosphotransferase, type II coding sequence for gene targeting in mammalian cells.

The bacterial neomycin-kanamycin phosphotransferase, type II enzyme is encoded by the neo gene and confers resistance to aminoglycoside drugs such as neomycin and kanamycin-bacterial selection and G418-eukaryotic cell selection. Although widely used in gene targeting in mouse embryonic stem cells, the neo coding sequence contains numerous cryptic splice sites and has a high CpG content. At least the former can cause unwanted effects in cis at the targeted locus. We describe a synthetic sequence, sneo, which encodes the same protein as that encoded by neo. This synthetic sequence has no predicted splice sites in either strand, low CpG content, and increased mammalian codon usage. In mouse embryonic stem cells sneo expressability is similar to neo. The use of sneo in gene targeting experiments should substantially reduce the probability of unwanted effects in cis due to splicing, and perhaps CpG methylation, within the coding sequence of the selectable marker.

Animals↗

Temperature-dependent effect of edetate disodium on neomycin stability.

When heated at temperatures in excess of 100 degrees, the stability of neomycin in aqueous ophthalmic formulations was improved by the addition of edetate disodium (0.01%). As the exposure temperature was reduced, the degree of stability enhancement diminished until the effect was reversed, and addition of edetate disodium was detrimental to neomycin stability in solutions stored at 30 degrees.

Drug Stability↗

Quantitation of amikacin, kanamycin, neomycin, and tobramycin in pharmaceutical dosage forms using the Hantzsch reaction.

A spectrophotometric assay method for the quantitative determination of amikacin, kanamycin, neomycin, and tobramycin in pharmaceutical dosage forms has been developed. The method is based on the Hantzsch reaction, forming dihydrolutidine derivatives which can be measured spectrophotometrically. The excipients EDTA, phenol, sodium bisulfite, and sodium citrate do not interfere, while salts of ammonia do interfere. The relative standard deviations based on seven readings were 1.64, 1.88, 2.10, and 1.93% for amikacin, kanamycin, neomycin, and tobramycin, respectively. Assay results have been compared with microbiological assay results provided by the manufacturers. The assay method appears to be stability indicating.

Amikacin↗

Separation of liposome populations differing in phosphoinositide content by chromatography on immobilized neomycin.

A method is presented by which liposomal populations can be separated based on their content of phosphatidylinositol 4,5-bisphosphate (PIP2). Neomycin is reductively coupled to sepharose 2B and used as the stationary phase in column chromatography. Liposomes of egg lecithin (EL) plus acidic phospholipid containing as little as 10 mol% PIP2 are quantitatively retained in 0.2 M NaCl, while liposomes containing other anionic lipids are recovered to 70-97%. It is possible that lipid redistribution of the bilayers upon contact with the sepharose:neomycin adduct may result in the formatin of multiple populations, and the percent retention by the column for each of the EL:phosphoinositide liposomes would be determined by the new equilibrium established as a result of these interactions. When mixed liposomal populations were chromatographed, the recovery in the 0.2 M NaCl eluates was the sum of the individual recoveries, and there is no significant interchange of lipids between the two liposome populations. It is suggested that this procedure may be useful in the preparation of asymmetric liposomes by facilitating separation of populations devoid of PIP2 in the outer leaflet from unreacted liposomes after enzymatic treatment of symmetric PIP2-containing liposomes.

Chromatography, Gel↗

On-line concentration of neomycin and screening aminoglycosides in milk by short capillary column and tandem mass spectrometry.

An MS-MS method was established for the trace analysis of neomycin and screening aminoglycoside antibiotics (such as amikacin, gentamicin, kanamycin, and tobramycin) in a milk sample. The extraction and purification are based on ion-pair SPE technology on a short fused-silica capillary RP C18 column. The capillary SPE column provided the stationary phase to retain aminoglycoside antibiotics and MS-MS compatible organic acid heptafluorobutyric acid (HFBA) was used as protein precipitation and ion-pair reagent. Aminoglycosides were extracted in this short column and directly eluted to MS-MS without evaporating to dryness and reconstituted with MS-MS compatible solvent after SPE. The LOQ was 0.1 microg/mL and the calibration curve was linear up to 6.4 microg/mL. A small amount of milk product, 10 microL, is sufficient for the analysis and application of this method as the trace analysis of neomycin in the biological matrix proved simple and workable.

Aminoglycosides↗

The induction of protrusion by neomycin in human glioma cells is correlated with a decrease followed by an increase in filamentous actin.

In this paper we describe an experimental investigation of the mechanism of motility of vertebrate cells. Human glioma cells were treated with neomycin, an inhibitor of the phosphatidylinositol cycle; and changes in cell motility and the cytoskeleton were examined by video, fluorescence, and scanning electron microscopy and by cytofluorometry. Neomycin stimulates a single protrusion of lamellipodia from the cell margin, which is correlated with an initial rapid decrease in the amount of F-actin throughout the cell, especially at the cell edge; the fragmentation of actin filaments within the lamellipodia; and the subsequent de novo polymerization of F-actin in a marginal band at the leading edge of lamellipodia. Changes in F-actin are paralleled by changes in the distribution and amount of gelsolin. These results support the hypothesis that protrusion is initiated by the gelsolin-mediated severing and subsequent depolymerization of cortical actin filaments, which weakens the cell cortex, allowing hydrostatic or gel osmotic pressure to force the cell margin to protrude. The accompanying polymerization of filaments actin at the leading edge of the protrusion may stabilize the protrusion and support its expansion.

Actins↗

Cochlear permeability of neomycin and gentamicin: an immunohistochemical study.

Aminoglycoside antibiotics (AGAs) target specifically the cochleo-vestibular hair cells, but with varied ototoxicity. Differences in their penetration and clearance rates into the membranous labyrinth may play a role. This in turn may be related to a difference in the number of amine groups, the cationic nature, as well as the molecular weight and size of the AGA molecule. Immunohistochemical labeling techniques were used to study the pathways of gentamicin and neomycin from the perilymph into cochlear tissues and target cells. The more cochleotoxic AGA, neomycin, penetrated into cochlear tissues faster than the less cochleotoxic AGA, gentamicin.

Animals↗

Requirement of protein and RNA synthesis for lambda repressor inactivation by tif-1: effects of chloramphenicol, neomycin and rifampicin.

The inactivation of lambda repressor was followed by the specific DNA binding assay during the course of lysogenic induction provoked by incubation at 42 degrees C of an E. coli tif-1 lysogenic strain. The presence of up to 400 microgram/ml chloramphenicol during the inducing treatment did not impair the loss of repressor binding activity, whilst concentrations of 200 microgram/ml neomycin and 100 microgram/ml rifampicin effectively inhibited the inactivation of lambda repressor. Residual protein synthesis in the presence of chloramphenicol, neomycin and rifampicin was 5%, 5% and 27% respectively of that observed in the drug-free control. This residual synthesis did not appear to involve amplification of the X-protein. These results suggest that tif-mediated inactivation of the lambda repressor requires the activation of some specific gene(s), the translation of which appears to be resistant to chloramphenicol.

Autoradiography↗

Transformation of the mycoparasite Parasitella simplex to neomycin resistance.

The facultatively parasitic zygomycete Parasitella simplex was transformed to neomycin resistance by a vector, which had been developed primarily for transformation of its host Absidia glauca. This plasmid, pAmNEF21, contained the bacterial resistance gene for neomycin (NPTII) under the control of the promoter region from the gene for elongation factor 1 (tef) isolated from A. glauca. Both flanking regions of the marker gene contain parts of the structural tef gene. DNA isolated from two Parasitella transformants was re-transformed in E. coli and the resulting plasmids, pAt21 and pAt35, were analyzed. The restriction map and Southern blot analysis show that both plasmids are rearranged. They had lost the structural tef information and were found to contain new DNA fragments, which were identical in both cases. Southern blot analysis of the transformants indicates that the rearranged plasmids are present in the fungal transformants and that the changes are not the result of re-transformation in E. coli. Plasmids were only recovered after growth under selective conditions. Southern blot analysis and re-transformation with undigested transformant DNA shows that the plasmids are replicated autonomously.

Blotting, Southern↗

Comparison between neomycin and lactulose in 173 patients with hepatic encephalopathy: a randomized clinical study.

A randomized study was performed in order to compare the course of hepatic encephalopathy in patients treated with neomycin plus magnesium sulfate or with lactulose. Admission criteria were: morphological diagnosis of cirrhosis and absence of comorbidity, of contraindications to drugs, or of previous treatments which could influence the outcome. The treatment groups were similar in terms of clinical characteristics, fatalities, recovery rate from grade 1 encephalopathy, and disappearance rate of neuropsychiatric signs. Transitions from severe to grade 1 or 0 encephalopathy showed a 0.17 (NS) difference in favor of neomycin. Early therapy and evidence of precipitating factors showed a favorable prognostic significance. Ascites, hyperbilirubinemia, poor nutritional state, and hypoprothrombinemia showed bad prognostic significance. This is the first large-scale investigation on hepatic encephalopathy. It demonstrated a similar effectiveness of the two drugs in grade 1 encephalopathy and provides a basis for drug selection in the current management of the syndrome.

Clinical Trials as Topic↗

Antimicrobial effect of combinations of EDTA-Tris and amikacin or neomycin on the microorganisms associated with otitis externa in dogs.

Combinations of EDTA-Tris and two aminoglycoside antibiotics (amikacin and neomycin) were tested for synergistic activities against the microorganisms associated with otitis externa in dogs and for the solutions' stability over time. Synergistic activity was observed when EDTA-Tris plus amikacin and EDTA-Tris plus neomycin were tested against Staphylococcus intermedius, Proteus mirabilis, Pseudomonas aeruginosa, and Escherichia coli, but not against Candida albicans. Stability studies over a 3-month period indicated that the test solutions were stable at room temperature and that their antimicrobial activity was maintained.

Amikacin↗

Effects of colestipol hydrochloride and neomycin sulfate on cholesterol turnover in the rat.

Three groups of male rats were fed diets containing the bile acid sequestrant colestipol hydrochloride (1%), neomycin sulfate (0.25%), or basic diet during the test. After 15 days, each rat was injected IV with 3.9 muCi cholesterol-1,2(-3)H complexed with serum lipoproteins; specific radioactivity of the total serum cholesterol was measured at several time intervals for a period of 7 weeks. Computer analysis of the data indicated that the turnover of cholesterol could best be fitted by a three-pool model. In pool 1, colestipol HC1 caused a significant increase in production rate (10.09 to 15.96 mg/day) and the excretion rate constant (0.53 to 0.79 day-1) of cholesterol without significantly altering the size of the pool or serum cholesterol concentrations. These results are compatible with an agent capable of binding bile acids in the rat but do not cause a decrease of the sterol pool because of an adequate compensatory increase in cholesterol biosynthesis. Neomycin SO4 caused a significant reduction in serum cholesterol (9%) without altering turnover parameters and apparently exerts its hypocholesterolemia by some mechanism other than bile acid sequestration.

Animals↗

Metronidazole vs. erythromycin, neomycin, and cefazolin in prophylaxis for colonic surgery.

A prospective, double-blind, randomized study was undertaken to compare perioperative parenteral metronidazole and erythromycin, One neomycin, and cefazolinhundred fifty-five patients were randomized into two groups by the pharmacy department. The resulting difference between the overall septic complication rate in patients receiving erythromycin, neomycin, and cefazolin (10.9 percent) and the rate in patients receiving metronidazole alone (31.9 percent) was significant. This indicates that an antibiotic to cover aerobic bacteria should be added to the regimen when metronidazole is used.

Cefazolin↗

Deafness and prolonged neuromuscular blockade following single-dose peritoneal neomycin irrigation.

PURPOSE: A case of deafness is reported in a patient undergoing bilateral nephrectomy after single irrigation of the peritoneal cavity with a neomycin containing solution for surgical prophylaxis. CLINICAL FEATURES: In this patient, profound, late-postoperative deafness was heralded by prolonged neuromuscular blockade and respiratory insufficiency. Additional risk factors for ototoxicity in this particular patient included the presence of end-stage renal disease requiring daily peritoneal dialysis and, possibly, the concomitant use of clonazepam and clindamycin. CONCLUSIONS: Antibiotic irrigation solutions containing neomycin may produce unwanted adverse systemic effects of deafness and prolonged neuromuscular blockade, even with only brief application within the peritoneal cavity. Concurrent end-stage renal disease, visceral inflammation from chronic dialysis and laparotomy, and the concomitant use of other medications may have contributed to these unwanted effects.

Anti-Bacterial Agents↗