Biomedical Engineering Reference
In-Depth Information
Nakamura, K., K. Miyagi, Y. Koguchi, Y. Kinjo, K. Uezu, T. Kinjo, M. Akamine, J.
Fujita, I. Kawamura, M. Mitsuyama, Y. Adachi, N. Ohno, K. Takeda, S. Akira,
A. Miyazato, M. Kaku and K. Kawakami. 2006. Limited contribution of Toll-
like receptor 2 and 4 to the host response to a fungal infectious pathogen,
Cryptococcus neoformans. FEMS. Immunol. Med. Microbiol . 47: 148-154.
Nakamura, K., A. Miyazato, G. Xiao, M. Hatta, K. Inden, T. Aoyagi, K. Shiratori, K.
Takeda, S. Akira, S. Saijo, Y. Iwakura, Y. Adachi, N. Ohno, K. Suzuki, J. Fujita,
M. Kaku and K. Kawakami. 2008. Deoxynucleic acids from Cryptococcus
neoformans activate myeloid dendritic cells via a TLR9-dependent pathway.
J. Immunol . 180: 4067-4074.
Oliver, B.G., P.M. Silver, C. Marie, S.J. Hoot, S.E. Leyde and T.C. White. 2008.
Tetracycline alters drug susceptibility in Candida albicans and other
pathogenic fungi. Microbiol . 154: 960-970.
Oliver, B.G., J.L. Song, J.H. Choiniere and T.C. White. 2007. cis-Acting elements
within the Candida albicans ERG11 promoter mediate the azole response
through transcription factor Upc2p. Eukaryot. Cell . 6: 2231-2239.
Ow, D.W., W. DE, Jr., D.R. Helinski, S.H. Howell, K.V. Wood and M. Deluca. 1986.
Transient and Stable Expression of the Firefl y Luciferase Gene in Plant Cells
and Transgenic Plants. Science . 234: 856-859.
Park, Y.N. and J. Morschhauser. 2005. Tetracycline-inducible gene expression and
gene deletion in Candida albicans . Eukaryot. Cell . 4: 1328-1342.
Plieth, C. 2006. Aequorin as a reporter gene. Methods Mol. Biol . 323: 307-327.
Prasad, R. and K. Kapoor. 2005. Multidrug resistance in yeast Candida. Int. Rev.
Cytol . 242: 215-248.
Prasad, R., S.L. Panwar and Smriti. 2002. Drug resistance in yeasts—an emerging
scenario. Adv. Microb. Physiol . 46: 155-201.
Rognon, B., Z. Kozovska, A.T. Coste, G. Pardini and D. Sanglard. 2006.
Identifi cation of promoter elements responsible for the regulation of MDR1
from Candida albicans, a major facilitator transporter involved in azole
resistance. Microbiol . 152: 3701-3722.
Román, E., D.M. Arana, C. Nombela, R. Alonso-Monge and J. Pla. 2007. MAP
kinase pathways as regulators of fungal virulence. Trends Microbiol . 15: 181-
190.
Sanglard, D., K. Kuchler, F. Ischer, J.L. Pagani, M. Monod and J. Bille. 1995.
Mechanisms of resistance to azole antifungal agents in Candida albicans
isolates from AIDS patients involve specific multidrug transporters.
Antimicrob. Agents Chemother . 39: 2378-2386.
Santos, M.A., G. Keith and M.F. Tuite. 1993. Non-standard translational events
in Candida albicans mediated by an unusual seryl-tRNA with a 5′-CAG-3′
(leucine) anticodon. EMBO. J . 12: 607-616.
Santos, M.A. and M.F. Tuite. 1995. The CUG codon is decoded in vivo as serine
and not leucine in Candida albicans . Nuc. Acids Res . 23: 1481-1486.
Song, J.L., J.B. Harry, R.T. Eastman, B.G. Oliver and T.C. White. 2004. The
Candida albicans lanosterol 14-alpha-demethylase (ERG11) gene promoter
is maximally induced after prolonged growth with antifungal drugs.
Antimicrob. Agents Chemother . 48: 1136-1144.
Search WWH ::




Custom Search