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1.
Indian J Biochem Biophys ; 1991 Aug; 28(4): 243-6
Artículo en Inglés | IMSEAR | ID: sea-27305

RESUMEN

A recombinant genomic clone was isolated from a lambda gt 11 library of M. tuberculosis on the basis of lack of hybridization with M. avium and M. kansasi. The specificity and sensitivity of M. tb DNA probes, 2.5 and 2.3 kb in size, were assessed by Southern blot and dot blot hybridization. These did not cross hybridize to DNA of mycobacteria other than members of M. tb complex, nor with DNA of non mycobacterial origin. Sensitivity was determined to be 200 pg which is equivalent to 10(4) bacilli. Genomic Southern hybridization indicated single copy nature of the probes.


Asunto(s)
Clonación Molecular , Sondas de ADN , ADN Bacteriano/genética , Humanos , Mycobacterium tuberculosis/genética , Hibridación de Ácido Nucleico , Tuberculosis/diagnóstico
2.
J Biosci ; 1989 Sep; 14(3): 279-289
Artículo en Inglés | IMSEAR | ID: sea-160739

RESUMEN

A DNA hybridization assay was developed using a cloned hepatitis Β viral genome to detect the presence of infectious virions in human serum. The merit of this assay was to put in evidence virus particles in 7 out of 133 sera that were negative for surface antigen (HBsAg) using routine serological methods. The usefulness of this assay was confirmed by actual visualization of the virus under electron microscope. Some serum samples although positive for surface antigen, did not give a hybridization signal by dot blot assay and might indicate cases of acute hepatitis.

3.
J Biosci ; 1983 Mar; 5(1): 43-52
Artículo en Inglés | IMSEAR | ID: sea-160202

RESUMEN

Synthesis of dipicolinic acid in Penicillium citreoviride showed typical kinetics of a secondary metabolite. Its synthesis resumed during idiophase and continued through stationary phase of growth. Total duration of synthesis was 100 h at the end of which its synthesis was arrested. Production of dipicolinic acid by the cells was subject to catabolite repression by glucose and was not subject to end product inhibition by exogenously added dipicolinic acid. Unlike the bacteria, dipicolinic acid synthesis in this mold was highly sensitive to inhibition by calcium ions in the growth medium. Calcium promoted sporulation but dipicolinic acid was not found to be present in detectable amounts in mold spores. Addition of dipicolinic acid and Ca2+ completely inhibited its de novo synthesis, an effect not observed when calcium was replaced by Mg2+ When the mold was grown in the presence of calcium alone, its inhibitory effects on de novo synthesis of dipicolinic acid were expressed only after some of this metabolite was first synthesised by the producer cells suggesting that the active feedback inhibitor is probably a Ca: dipicolinic acid complex. It is suggested that over-production of this metabolite is very important to the mold in increasing its survival potential in nature by retrieving the essential minerals from the environment through ligand: metal complex at a time when cells are in the process of dying, so that a proper mineral balance is maintained within the cells.

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