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1.
Mycobiology ; : 427-431, 2014.
Article Dans Anglais | WPRIM | ID: wpr-729755

Résumé

Mitochondrial protein Nfu1 plays an important role in the assembly of mitochondrial Fe-S clusters and intracellular iron homeostasis in the model yeast Saccharomyces cerevisiae. In this study, we identified the Nfu1 ortholog in the human fungal pathogen Cryptococcus neoformans. Our data showed that C. neoformans Nfu1 localized in the mitochondria and influenced homeostasis of essential metals such as iron, copper and manganese. Marked growth defects were observed in the mutant lacking NFU1, which suggests a critical role of Nfu1 in Fe-S cluster biosynthesis and intracellular metal homeostasis in C. neoformans.


Sujets)
Humains , Cuivre , Cryptococcus neoformans , Homéostasie , Fer , Manganèse , Métaux , Mitochondries , Protéines mitochondriales , Saccharomyces cerevisiae , Levures
2.
Journal of Veterinary Science ; : 503-509, 2014.
Article Dans Anglais | WPRIM | ID: wpr-24550

Résumé

Simple methods for measuring the levels of serum antibody against canine distemper virus (CDV) would assist in the effective vaccination of dogs. To develop an enzyme-linked immunosorbent assay (ELISA) specific for CDV, we expressed hydrophilic extra-viral domain (HEVD) protein of the A75/17-CDV H gene in a pET 28a plasmid-based Escherichia (E.) coli vector system. Expression was confirmed by dot and Western blotting. We proposed that detection of E. coli-expressed H protein might be conformation-dependent because intensities of the reactions observed with these two methods varied. The H gene HEVD protein was further purified and used as an antigen for an ELISA. Samples from dogs with undetectable to high anti-CDV antibody titers were analyzed using this HEVD-specific ELISA and a commercial CDV antibody detection kit (ImmunoComb). Levels of HEVD antigenicity measured with the assays and immunochromatography correlated. These data indicated that the HEDV protein may be used as antigen to develop techniques for detecting antibodies against CDV.


Sujets)
Animaux , Chiens , Antigènes viraux , Maladie de Carré/diagnostic , Virus de la maladie de Carré/immunologie , Maladies des chiens/diagnostic , Test ELISA/médecine vétérinaire , Escherichia coli/génétique , Vecteurs génétiques/génétique , Hémagglutinines virales
3.
Cancer Research and Treatment ; : 223-227, 2005.
Article Dans Anglais | WPRIM | ID: wpr-25297

Résumé

PURPOSE: A chemosensitivity test can reflect the differences in responses of individual cancer patients to chemotherapeutic agents. The adenosine triphosphate-based chemotherapy response assay (ATP-CRA)is an accurate method, which does not require a large amount of tissue specimen. So far, no studies have evaluated the utility of the ATP-CRA in Korea. Therefore, we investigated the clinical usefulness of the ATP-CRA in 53 patients with lung cancer. MATERIALS AND METHODS: Tumor tissues were obtained from bronchoscopic biopsies or surgical resections. The validity of ATP-CRA was assessed focusing on the success rate, experimental error level (intraassay mean coefficient of variation [CV]) and reproducibility. RESULTS: The overall success rate of ATP-CRA was 90.6% (48/53). Normal cells were effectively eliminated from the tumor tissues with the use of ficoll gradient centrifugation and immunomagnetic separation, which was confirmed using loss of heterozygosity analysis of the 3p deletion. The mean CV of ATP assays was 10.5+/-4.6%. The reproducibility of ATP assays was 94+/-3.8%. The results of the ATP assays were reported to physicians within 7 days of specimen collection. More than 6 anticancer drugs were tested on the tumor specimens obtained from bronchoscopic biopsies. CONCLUSION: The ATP-CRA is a stable, accurate and potentially practical chemosensitivity test in patients with lung cancer.


Sujets)
Humains , Adénosine triphosphate , Adénosine , Biopsie , Centrifugation , Traitement médicamenteux , Études de faisabilité , Ficoll , Séparation immunomagnétique , Corée , Perte d'hétérozygotie , Tumeurs du poumon , Poumon , Manipulation d'échantillons
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