By Geoffrey Michael Gadd, Sima Sariaslani
Released in view that 1959, Advances in utilized Microbiology is still the most extensively learn and authoritative evaluation assets in microbiology. The sequence includes complete stories of the most up-tp-date examine in utilized microbiology. fresh parts coated contain bacterial range within the human intestine, protozoan grazing of freshwater biofilms, metals in yeast fermentation approaches and the translation of host-pathogen discussion via microarrays. Eclectic volumes are supplemented by way of thematic volumes on quite a few issues, together with Archaea and ill development syndrome. influence issue for 2007: 1.821. * Contributions from major gurus and specialists * Informs and updates on the entire most up-to-date advancements within the box * Reference and advisor for scientists and experts fascinated by developments in utilized microbiology
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B. 2)-linked terminal Manp residues. , 2007). The disruption of pimE in M. tuberculosis H37Rv and M. , unpublished results). Using M. smegmatis cell lysates as an enzyme source, evidence was provided that cell-free extracts from the M. , 2006). 2)-Manp transfer onto PIM4 to form PIM5, the use of M. smegmatis extracts in the assay made it impossible to distinguish whether the transfer of the sixth Manp residue was also the result of PimE or that of another endogenous enzyme. Using a recombinant form of M.
VanderVen et al. (2005) ? GT-A GT2 1qgq (11), 3bcv (16) Burguie`re et al. (2005) Rv2958c PGL/pHBAD Rhamnosyltransferase GT-B GT1 Rv2962c PGL/pHBAD Rhamnosyltransferase GT-B GT1 Rv2957 PGL/pHBAD Fucosyltransferase GT-A UDP-GlcNAc: 1L-myoinositol-1-P a-N-acetylgluco aminyltransferase Mycothiol Rv0486 MshA Glycoproteins Rv1002c LOS Rv1500 LosA Pe´rez et al. (2004) Pe´rez et al. , no structures determined. org). The percentage identity to the M. tuberculosis protein is indicated between parentheses.
30, 157–186. , and Ornston, L. N. (2000). Repression of Acinetobacter vanillate demethylase synthesis by VanR, a member of the GntR family of transcriptional regulators. FEMS Microbiol. Lett. 187, 65–68. Mota, L. , Sarmento, L. , and de Sa´-Nogueira, I. (2001). Control of the arabinose regulon in Bacillus subtilis by AraR in vivo: Crucial roles of operators, cooperativity, and DNA looping. J. Bacteriol. 183, 4190–4201. Mota, L. , and Sa´-Nogueira, I. (1999). Mode of action of AraR, the key regulator of L-arabinose metabolism in Bacillus subtilis.
Advances in Applied Microbiology by Geoffrey Michael Gadd, Sima Sariaslani