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24 results for author:"Lazarevic V."Drop in Literature Citations

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Dynein light chain regulates axonal trafficking and synaptic levels of Bassoon.

Fejtova A., Davydova D., Bischof F., Lazarevic V., Altrock W.D., Romorini S., Schone C., Zuschratter W., Kreutz M.R., Garner C.C. et al.

J. Cell Biol. 185:341-355(2009) · Mapped (3)

The gene encoding early growth response 2, a target of the transcription factor NFAT, is required for the development and maturation of natural killer T cells.

Lazarevic V., Zullo A.J., Schweitzer M.N., Staton T.L., Gallo E.M., Crabtree G.R., Glimcher L.H.

Nat. Immunol. 10:306-313(2009) · Mapped (13)

Effects of alpha-phosphoglucomutase deficiency on cell wall properties and fitness in Streptococcus gordonii.

Bizzini A., Majcherczyk P., Beggah-Moller S., Soldo B., Entenza J.M., Gaillard M., Moreillon P., Lazarevic V.

Microbiology (Reading, Engl.) 153:490-498(2007) · UniProtKB (1)

Subspecies-specific distribution of intervening sequences in the Bacillus subtilis prophage ribonucleotide reductase genes.

Stankovic S., Soldo B., Beric-Bjedov T., Knezevic-Vukcevic J., Simic D., Lazarevic V.

Syst. Appl. Microbiol. 30:8-15(2007) · UniProtKB (13)

Increased susceptibility of mice lacking T-bet to infection with Mycobacterium tuberculosis correlates with increased IL-10 and decreased IFN-gamma production.

Sullivan B.M., Jobe O., Lazarevic V., Vasquez K., Bronson R., Glimcher L.H., Kramnik I.

J. Immunol. 175:4593-4602(2005) · Mapped (3)

Induction of Mycobacterium tuberculosis-specific primary and secondary T-cell responses in interleukin-15-deficient mice.

Lazarevic V., Yankura D.J., DiVito S.J., Flynn J.L.

Infect. Immun. 73:2910-2922(2005) · Mapped (3)

Bacillus subtilis alpha-phosphoglucomutase is required for normal cell morphology and biofilm formation.

Lazarevic V., Soldo B., Medico N., Pooley H.M., Bron S., Karamata D.

Appl. Environ. Microbiol. 71:39-45(2005) · UniProtKB (2)

CD40, but not CD40L, is required for the optimal priming of T cells and control of aerosol M. tuberculosis infection.

Lazarevic V., Myers A.J., Scanga C.A., Flynn J.L.

Immunity 19:823-835(2003) · Mapped (2)

Refractory anemia with ring sideroblasts associated with i(17q) and mutation of the TP53 gene.

Lazarevic V., Djordjevic V., Magic Z., Marisavljevic D., Colovic M.

Cancer Genet. Cytogenet. 136:86-89(2002) · Mapped (31)

Characterization of a Bacillus subtilis thermosensitive teichoic acid-deficient mutant: gene mnaA (yvyH) encodes the UDP-N-acetylglucosamine 2-epimerase.

Soldo B., Lazarevic V., Pooley H.M., Karamata D.

J. Bacteriol. 184:4316-4320(2002) · UniProtKB (1)

tagO is involved in the synthesis of all anionic cell-wall polymers in Bacillus subtilis 168.

Soldo B., Lazarevic V., Karamata D.

Microbiology 148:2079-2087(2002) · UniProtKB (1)

Comparison of ribitol and glycerol teichoic acid genes in Bacillus subtilis W23 and 168: identical function, similar divergent organization, but different regulation.

Lazarevic V., Abellan F.-X., Beggah Moeller S., Karamata D., Maueel C.

Microbiology 148:815-824(2002) · UniProtKB (11)

CD4(+) T cells are required for the development of cytotoxic CD8(+) T cells during Mycobacterium tuberculosis infection.

Serbina N.V., Lazarevic V., Flynn J.L.

J. Immunol. 167:6991-7000(2001) · Mapped (37)

Ribonucleotide reductase genes of Bacillus prophages: a refuge to introns and intein coding sequences.

Lazarevic V.

Nucleic Acids Res. 29:3212-3218(2001) · UniProtKB (15)

Study of chromosome rearrangements associated with the trpE26 mutation of Bacillus subtilis.

Regamey A., Lazarevic V., Hauser P., Karamata D.

Mol. Microbiol. 36:1234-1249(2000) · UniProtKB (3)

Nucleotide sequence of the Bacillus subtilis temperate bacteriophage SPbetac2.

Lazarevic V., Duesterhoeft A., Soldo B., Hilbert H., Mauel C., Karamata D.

Microbiology 145:1055-1067(1999) · UniProtKB (14)

Assay for UDPglucose 6-dehydrogenase in phosphate-starved cells: gene tuaD of Bacillus subtilis 168 encodes the UDPglucose 6-dehydrogenase involved in teichuronic acid synthesis.

Pagni M., Lazarevic V., Soldo B., Karamata D.

Microbiology 145:1049-1053(1999) · UniProtKB (1)

Teichuronic acid operon of Bacillus subtilis 168.

Soldo B., Lazarevic V., Pagni M., Karamata D.

Mol. Microbiol. 31:795-805(1999) · UniProtKB (8)

A 35.7 kb DNA fragment from the Bacillus subtilis chromosome containing a putative 12.3 kb operon involved in hexuronate catabolism and a perfectly symmetrical hypothetical catabolite-responsive element.

Rivolta C., Soldo B., Lazarevic V., Joris B., Mauel C., Karamata D.

Microbiology 144:877-884(1998) · UniProtKB (30)

Introns and intein coding sequence in the ribonucleotide reductase genes of Bacillus subtilis temperate bacteriophage SPbeta.

Lazarevic V., Soldo B., Duesterhoeft A., Hilbert H., Maueel C., Karamata D.

Proc. Natl. Acad. Sci. U.S.A. 95:1692-1697(1998) · UniProtKB (4)

The complete genome sequence of the Gram-positive bacterium Bacillus subtilis.

Kunst F., Ogasawara N., Moszer I., Albertini A.M., Alloni G., Azevedo V., Bertero M.G., Bessieres P., Bolotin A., Borchert S. et al.

Nature 390:249-256(1997) · UniProtKB (4,192)

Sequencing and analysis of the divergon comprising gtaB, the structural gene of UDP-glucose pyrophosphorylase of Bacillus subtilis 168.

Soldo B., Lazarevic V., Margot P., Karamata D.

J. Gen. Microbiol. 139:3185-3195(1993) · UniProtKB (3)

The tagGH operon of Bacillus subtilis 168 encodes a two-component ABC transporter involved in the metabolism of two wall teichoic acids.

Lazarevic V., Karamata D.

Mol. Microbiol. 16:345-355(1995) · UniProtKB (2)

Sequencing and analysis of the Bacillus subtilis lytRABC divergon: a regulatory unit encompassing the structural genes of the N-acetylmuramoyl-L-alanine amidase and its modifier.

Lazarevic V., Margot P., Soldo B., Karamata D.

J. Gen. Microbiol. 138:1949-1961(1992) · UniProtKB (4)

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