Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Laurie N. DiDonato"'
Publikováno v:
FEMS Microbiology Letters. 364
The highly redundant pathways for extracellular electron transfer in Geobacter sulfurreducens must be simplified for this microorganism to serve as an effective chassis for applications such as the development of sensors and biocomputing. Five homolo
Autor:
Barbara A. Methé, Laurie N. DiDonato, Derek R. Lovley, Sara A. Sullivan, Reg England, Kelly P. Nevin
Publikováno v:
Journal of Bacteriology. 188:8469-8478
Geobacterspecies are key members of the microbial community in many subsurface environments in which dissimilatory metal reduction is an important process. The genome ofGeobacter sulfurreducenscontains a gene designatedrelGsu, which encodes a RelA ho
Autor:
Regina A. O'Neil, Cinthia Núñez, Marko Puljic, Radhakrishnan Mahadevan, Jose F. Barbe, Ronald M. Adkins, Julia Krushkal, Bradley L. Postier, Bin Yan, Laurie N. DiDonato, Gemma Reguera, Ching Leang, Barbara A. Methé, Derek R. Lovley
Publikováno v:
BMEI (1)
Organisms from the metal-reducing family Geobacteraceae participate in bioremediation of contaminated environments and in energy harvesting. We have developed a database and an accompanying online query system, GSEL, for Geobacter Sequence Elements (
Autor:
Marko Puljic, Julia Krushkal, Ronald M. Adkins, Bin Yan, Laurie N. DiDonato, Kelly P. Nevin, Barbara A. Methe, Trevor L. Woodard, Derek R. Lovley
Publikováno v:
Functionalintegrative genomics. 7(3)
RelGsu is the single Geobacter sulfurreducens homolog of RelA and SpoT proteins found in many organisms. These proteins are involved in the regulation of levels of guanosine 3′, 5′ bispyrophosphate, ppGpp, a molecule that signals slow growth and
Autor:
Anton Korenevsky, Byoung-Chan Kim, Ching Leang, Hiromi Konishi, Sara A. Sullivan, Huifang Xu, Derek R. Lovley, Laurie N. DiDonato, Evgenya S. Shelobolina, Jessica E. Butler, Maddalena V. Coppi
Publikováno v:
BMC Microbiology, Vol 7, Iss 1, p 16 (2007)
BMC Microbiology
BMC Microbiology
BackgroundIn order to study the mechanism of U(VI) reduction, the effect of deletingc-type cytochrome genes on the capacity ofGeobacter sulfurreducensto reduce U(VI) with acetate serving as the electron donor was investigated.ResultsThe ability of se