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Mutation of tlyA confers capreomycin resistance in Mycobacterium tuberculosis.

Capreomycin, an important drug for the treatment of multidrug-resistant tuberculosis, is a macrocyclic peptide antibiotic produced by Saccharothrix mutabolis subspecies capreolus. The basis of resistance to this drug was investigated by isolating and characterizing capreomycin-resistant strains of Mycobacterium smegmatis and Mycobacterium tuberculosis. Colonies resistant to capreomycin were recovered from a library of transposon-mutagenized M. smegmatis. The transposon insertion site of one mutant was mapped to an open reading frame in the unfinished M. smegmatis genome corresponding to the tlyA gene (Rv1694) in the M. tuberculosis H37Rv genome. In M. smegmatis spontaneous capreomycin-resistant mutants, the tlyA gene was disrupted by one of three different naturally occurring insertion elements. Genomic DNAs from pools of transposon mutants of M. tuberculosis H37Rv were screened by PCR by using primers to the tlyA gene and the transposon to detect mutants with an insertion in the tlyA gene. One capreomycin-resistant mutant was recovered that contained the transposon inserted at base 644 of the tlyA gene. Complementation with the wild-type tlyA gene restored susceptibility to capreomycin in the M. smegmatis and M. tuberculosis tlyA transposon mutants. Mutations were found in the tlyA genes of 28 spontaneous capreomycin-resistant mutants generated from three different M. tuberculosis strains and in the tlyA genes of capreomycin-resistant clinical isolates. In in vitro transcription-translation assays, ribosomes from tlyA mutant but not tlyA(+) strains resist capreomycin inhibition of transcription-translation. Therefore, TlyA appears to affect the ribosome, and mutation of tlyA confers capreomycin resistance.

Antibiotics, Antitubercular↗

Pharmacokinetics, toxicity, and efficacy of liposomal capreomycin in disseminated Mycobacterium avium beige mouse model.

Capreomycin was incorporated into multilamellar vesicles of pure dipalmitoylphosphatidylcholine. The pharmacokinetics and nephrotoxicity of capreomycin in the free and liposomal forms were studied in normal mice. The efficacies of the two forms were evaluated by using the Mycobacterium avium complex beige mouse model. Approximately 10(7) viable M. avium cells were injected intravenously. Seven days later, treatment with either liposomal or free capreomycin at 60 or 120 mg/kg of body weight was administered daily for 5 days. Mice were sacrificed 5 days after the end of treatment, and the viable bacteria in liver, spleen, lungs, and blood were counted. After 5 days of treatment with dosages of 60 or 120 mg/kg/day, the level of blood urea nitrogen increased in the group treated with free capreomycin but not in the group treated with liposomal capreomycin. After intravenous injection of 120 mg/kg, liposomes enhanced the diffusion of capreomycin in the spleen, lungs, and kidneys and increased the half-life in serum. The 120-mg/kg dose of liposomal capreomycin significantly reduced the number of viable mycobacteria in the liver, spleen, and blood compared with those in the controls. Although these results are promising, further studies are needed to assess the efficacy of liposomal capreomycin for the treatment of M. avium complex infections.

Animals↗

[Experimental and clinical study test of capreomycin].

Data on the experimental and clinical study of capreomycin in the treatment of tuberculosis are presented. It was shown that capreomycin had low activity with respect to the sensitive strain of Mycobacterium tuberculosis H37 Rv in vitro and the respective infection caused by it in mice. The activity of capreomycin in vitro with respect to streptomycin resistant strains was the same as that with respect to the sensitive strains, while in vivo it increased 3 times. Capreomycin showed a tendency to decreasing its activity with respect to strains highely resistant to canamycin only in vitro. The effect of capreomycin on tuberculosis infection caused by strains resistant to different concentrations of canamycin was the same as that on tuberculosis infection caused by sensitive strains. Cross resistance between florimycin (viomycin) and capreomycin was shown. Clinical trails of capreomycin revealed its moderate therapeutic efficiency, relatively low toxicity and an allergenizing effect on the host. Transient ventibulopatia without pronounced signs of ototoxic action was observed. The nephrotoxic effect was moderate and transient. It was observed predominantly at the peak of the allergic reactions to the antitubercle drugs. The data obtained during the study allow recommendation of capreomycin use in clinics as reserve drug when the causative agent is not resistant to florimycin. The drug should be used under regular control of the blood picture, electrolyte metabolism, state of the kidneys, auditory and vestibular apparatus.

Adult↗

Cross-resistance in M. tuberculosis to kanamycin, capreomycin and viomycin.

Drug resistant mutants to streptomycin, kanamycin, viomycin, capreomycin, and rifampicin were isolated from four strains of Mycobacterium tuberculosis. The mutants isolated from each parent were then tested for evidence of development of cross-resistance to other drugs. There was no cross-resistance between either streptomycin or rifampicin and any of the other drugs. Complete cross-resistance between viomycin and capreomycin was found. Cross-resistance between kanamycin and capreomycin, and kanamycin and viomycin was variable. A review of the medical histories of 27 patients with kanamycin-resistant tubercle bacilli indicated that cross-resistance with capreomycin and viomycin occurs, but is unpredictable. Because of this variability in cross-resistance and the fact that kanamycin is a more toxic drug than capreomycin, it is suggested that capreomycin be used in the first retreatment regimen for tuberculosis when streptomycin resistance has been demonstrated.

Capreomycin↗

Genome-wide exploration of the drug action of capreomycin on Mycobacterium tuberculosis using Affymetrix oligonucleotide GeneChips.

OBJECTIVE: Multi-drug resistance and latent infection are two major issues in current tuberculosis (TB) control and management. Capreomycin is an important drug used for TB with multi-drug resistance. A recent study also indicates that this drug possesses unique bactericidal activity against non-replicating TB bacilli among known anti-TB drugs. Thus, there is an urgent need for investigating the full-spectrum action of capreomycin. METHODS: Here we conduct the first microarray-based study on capreomycin using the high-resolution Affymetrix oligonucleotide GeneChip system. RESULTS: The results indicate that capreomycin primarily acts on the information pathways but it also significantly affects cell wall, cell processes, intermediate metabolism and respiration in Mycobacterium tuberculosis. CONCLUSIONS: This study not only transcriptionally validates the specific molecular target, 16S rRNA, but also discovers potential new targets of capreomycin, including genes operating at the DNA level, such as Rv0054 (ssb) and Rv3715c (recR), as well as genes involved in cell division like Rv3260c (whiB2). In addition, the nuo gene cluster and the ATP synthase gene cluster are repressed.

Antibiotics, Antitubercular↗

Capreomycin kinetics in renal impairment and clearance by hemodialysis.

The single-dose kinetics of capreomycin are described for 12 renal patients and seven healthy control subjects. Creatinine clearances (CrCl) ranged from zero to 121 ml/min. After single-dose intravenous infusions, mean +/- SD capreomycin clearance values (L/kg/h x 10(-2)) were 0.558 +/- 0.160 for the dialysis group (n = 4, CrCl = 1.4 +/- 1.9), 1.77 +/- 0.45 for the moderate renal group (n = 3, CrCl = 25 +/- 5), 2.82 +/- 1.52 for the mild renal group (n = 4, CrCl = 46 +/- 5), and 5.73 +/- 1.54 for the normal renal group (n = 7, CrCl = 109 +/- 11); p less than 0.01, using analysis of variance. The correlation between capreomycin clearance and CrCl was r = 0.90. Hemodialysis cleared clinically significant amounts of capreomycin. These data imply that capreomycin maintenance doses need to be reduced for renal patients.

Adolescent↗

UV spectroscopy and reverse-phase HPLC as novel methods to determine Capreomycin of liposomal fomulations.

Capreomycin (CS) is an antitubercular drug active against several Mycobacterium strains, in particular, against M. Avium. In spite of its activity, it is considered a second line drug because it can induce severe renal and hepatic damages when administered as free drug. However, it is possible to employ drug delivery systems, such as liposomes, to reduce the toxicity of the peptide without loss of its biological activity. For this purpose, appropriately validated time and money saving analytical methods are needed for a careful capreomycin dosage. In the present paper, UV spectroscopy and a reverse-phase HPLC (RP-HPLC) were investigated as alternative methods for capreomycin quantitative analysis. These techniques were validated against the USP XXVI microbiological turbidimetric assay and the normal-phase HPLC (NP-HPLC) method reported in the British Pharmacopoeia 2003. The results obtained showed that either UV spectrophotometry or RP-HPLC are techniques having higher accuracy and reproducibility with respect to the microbiological assay. Moreover, the RP-HPLC method provided improved performances if compared to NP-HPLC. In fact, RP-HPLC showed: (i) enhanced sensitivity and (ii) increased resolution. Thus we propose RP-HPLC and UV as valid alternative methods to the conventional procedures for capreomycin quantitative analysis.

Antibiotics, Antitubercular↗

Capreomycin binds across the ribosomal subunit interface using tlyA-encoded 2'-O-methylations in 16S and 23S rRNAs.

The cyclic peptide antibiotics capreomycin and viomycin are generally effective against the bacterial pathogen Mycobacterium tuberculosis. However, recent virulent isolates have become resistant by inactivation of their tlyA gene. We show here that tlyA encodes a 2'-O-methyltransferase that modifies nucleotide C1409 in helix 44 of 16S rRNA and nucleotide C1920 in helix 69 of 23S rRNA. Loss of these previously unidentified rRNA methylations confers resistance to capreomycin and viomycin. Many bacterial genera including enterobacteria lack a tlyA gene and the ensuing methylations and are less susceptible than mycobacteria to capreomycin and viomycin. We show that expression of recombinant tlyA in Escherichia coli markedly increases susceptibility to these drugs. When the ribosomal subunits associate during translation, the two tlyA-encoded methylations are brought into close proximity at interbridge B2a. The location of these methylations indicates the binding site and inhibitory mechanism of capreomycin and viomycin at the ribosome subunit interface.

Antibiotics, Antitubercular↗

A Bartter's-like syndrome from capreomycin, and a similar gentamicin tubulopathy.

Marked renal potassium and magnesium wasting, alkalosis, and a progressive increase in plasma renin and eventual hyperaldosteronemia developed during a 15-month course of in-hospital capreomycin therapy that was necessary for drug-resistant pulmonary tuberculosis. A prominent feature of the present case was renal chloride wasting, a feature of the capreomycin syndrome that has previously received little attention. Similar potentially life-threatening metabolic abnormalities, which resemble those found in Bartter's syndrome, can occur during prolonged therapy with the antibiotic gentamicin. In the present case, electrolyte abnormalities were unaffected by three days of indomethacin therapy but were partially corrected by large doses of spironolactone. Capreomycin, viomycin (an antibiotic closely related to capreomycin), and gentamicin are highly basic polypeptide antibiotics that may induce strikingly similar and potentially fatal syndromes of renal tubular dysfunction that can feature multiple electrolyte abnormalities.

Adult↗

Molecular analysis of cross-resistance to capreomycin, kanamycin, amikacin, and viomycin in Mycobacterium tuberculosis.

Capreomycin, kanamycin, amikacin, and viomycin are drugs that are used to treat multidrug-resistant tuberculosis. Each inhibits translation, and cross-resistance to them is a concern during therapy. A recent study revealed that mutation of the tlyA gene, encoding a putative rRNA methyltransferase, confers capreomycin and viomycin resistance in Mycobacterium tuberculosis bacteria. Mutations in the 16S rRNA gene (rrs) have been associated with resistance to each of the drugs; however, reports of cross-resistance to the drugs have been variable. We investigated the role of rrs mutations in capreomycin resistance and examined the molecular basis of cross-resistance to the four drugs in M. tuberculosis laboratory-generated mutants and clinical isolates. Spontaneous mutants were generated to the drugs singularly and in combination by plating on medium containing one or two drugs. The frequencies of recovery of the mutants on single- and dual-drug plates were consistent with single-step mutations. The rrs genes of all mutants were sequenced, and the tlyA genes were sequenced for mutants selected on capreomycin, viomycin, or both; MICs of all four drugs were determined. Three rrs mutations (A1401G, C1402T, and G1484T) were found, and each was associated with a particular cross-resistance pattern. Similar mutations and cross-resistance patterns were found in drug-resistant clinical isolates. Overall, the data implicate rrs mutations as a molecular basis for resistance to each of the four drugs. Furthermore, the genotypic and phenotypic differences seen in the development of cross-resistance when M. tuberculosis bacteria were exposed to one or two drugs have implications for selection of treatment regimens.

Amikacin↗

Resistance to the antibiotics viomycin and capreomycin in the Streptomyces species which produce them.

Viomycin capreomycin, antibiotics produced by Streptomyces vinaceus and S. capreolus respectively, are potent inhibitors of bacterial protein synthesis. Although these organisms are highly tolerant of their own products in vivo, their ribosomes are fully sensitive to the action of the drugs in vitro. However, they processes novel, antibiotic-inactivating enzymes (viomycin phosphotransferase, capreomycin phosphotransferase, capreomycin acetyltransferase) which, in addition to possible biosynthetic roles, may contribute to the resistances observed in vivo.

Alkaline Phosphatase↗

Capreomycin is active against non-replicating M. tuberculosis.

BACKGROUND: Latent tuberculosis infection (LTBI) is affecting one-third of the world population, and activation of LTBI is a substantial source of new cases of tuberculosis. LTBI is caused by tubercle bacilli in a state of non-replicating persistence (NRP), and the goal of this study was to evaluate the activity in vitro of various antimicrobial agents against non-replicating M. tuberculosis. METHODS: To achieve a state of NRP we placed broth cultures of M. tuberculosis (three strains) in anaerobic conditions, and in this model tested all known anti-TB drugs and some other antimicrobial agents (a total of 32 drugs). The potential effect was evaluated by plating samples from broth cultures for determining the number of viable bacteria (CFU/ml) during a prolonged period of cultivation. Besides drug-free controls we used metronidazole for positive controls, the only drug known so far to be effective against tubercle bacilli in anaerobic setting. RESULTS: On a background of non-replicating conditions in drug-free cultures and clear bactericidal effect of metronidazole none of the antimicrobial agents tested produced effect similar to that of metronidazole except capreomycin, which was as bactericidal at the same level as metronidazole. CONCLUSION: The unique ability of capreomycin to be bactericidal in vitro among the anti-TB drugs against non-replicating tubercle bacilli may justify the search for other drugs among peptide antibiotics with similar activity. This phenomenon requires further studies on the mechanism of action of capreomycin, and evaluation of its activity in appropriate animal models.

Anaerobiosis↗

The chemical structure of capreomycin.

The chemical structure of capreomycin, antituberculous peptide antibiotic, was revised from the results of NMR-analysis in comparison with tuberactinomycins. Capreomycin IA and IB were concluded to possess the similar amino acid sequences in their cyclic peptide moieties to those of tuberactinomycins.

Amino Acid Sequence↗

Acid-base and electrolyte abnormalities due to capreomycin.

We report a patient with tuberculosis treated with a five-drug regimen who experienced severe acid-base and electrolyte abnormalities including hypomagnesemia, hypokalemia, hypocalcemia, and a hypochloremic metabolic alkalosis. These disturbances are believed to be due to treatment with capreomycin, which produced renal magnesium wasting and possible tubular damage. Therefore, we recommend frequent determinations of serum electrolytes, magnesium, and calcium in patients treated with capreomycin.

Acid-Base Imbalance↗

Comparison of bactericidal activities of streptomycin, amikacin, kanamycin, and capreomycin against Mycobacterium avium and M. tuberculosis.

The bactericidal activities of four injectable antituberculosis drugs, streptomycin, amikacin, kanamycin, and capreomycin, against Mycobacterium avium and M. tuberculosis were tested. All four drugs were highly bactericidal against M. tuberculosis, with low MBC/MIC ratios and MBCs significantly lower than the maximum achievalbe concentrations in serum (Cmax). In contrast, all four drugs had very low bactericidal activities against M. avium: the broth-determined MBCs were significantly higher than the Cmax. On a basis of comparisons with the broth-determined MICs found for susceptible M. tuberculosis strains and with the Cmax, about one-third of 100 M. avium strains tested can be tentatively considered as susceptible to three aminoglycosides (streptomycin, amikacin, and kanamycin) but not to capreomycin. In regard to the MBCs and MICs, the three aminoglycosides tested have about identical potentials as drugs of choice in combination with other drugs for chemotherapy of M. avium disease. The low bactericidal activities of these drugs against M. avium in vitro do not exclude their therapeutic usefulness, because they may produce a synergistic effect in combination with other drugs. Such an option is especially promising for patients whose isolates can be considered susceptible on the basis of the MIC. We found no differences in susceptibility to the four drugs tested for M. avium strains (identified by Gen-Probe) isolated from 50 patients with and 50 patients without acquired immune deficiency syndrome.

Acquired Immunodeficiency Syndrome↗

The revised structure of capreomycin.

The total structures of capreomycins IA and IB were determined mainly from the results of the comparative study on the NMR spectra of capreomycins and tuberactinomycins, resulting in a revision of the formerly proposed structure. The beta-lysine residue as a branched part was revealed to be linked with the beta-amino group of the alpha, beta-diaminopropionic acid residue in the cyclic pentapeptide moiety in a different manner than in tuberactinomycins.

Amino Acid Sequence↗