Development of a simvastatin selection marker for a hyperthermophilic acidophile, Sulfolobus islandicus.
about
Genomics and genetics of Sulfolobus islandicus LAL14/1, a model hyperthermophilic archaeonExtremely thermophilic microorganisms as metabolic engineering platforms for production of fuels and industrial chemicalsEfficient 5'-3' DNA end resection by HerA and NurA is essential for cell viability in the crenarchaeon Sulfolobus islandicusArchaeal orthologs of Cdc45 and GINS form a stable complex that stimulates the helicase activity of MCMGenetic manipulations of the hyperthermophilic piezophilic archaeon Thermococcus barophilus.Biochemical and Functional Characterization of the NurA-HerA Complex from Deinococcus radiodurans.A synthetic arabinose-inducible promoter confers high levels of recombinant protein expression in hyperthermophilic archaeon Sulfolobus islandicus.Endogenous mutagenesis in recombinant sulfolobus plasmidsAugmenting the genetic toolbox for Sulfolobus islandicus with a stringent positive selectable marker for agmatine prototrophy.Genetic manipulation in Sulfolobus islandicus and functional analysis of DNA repair genes.Sulfolobus islandicus: a model system for evolutionary genomics.Molecular biology of fuselloviruses and their satellites.Understanding DNA Repair in Hyperthermophilic Archaea: Persistent Gaps and Other Reasons to Focus on the Fork.Genetic technologies for extremely thermophilic microorganisms of Sulfolobus, the only genetically tractable genus of crenarchaea.The apt/6-Methylpurine Counterselection System and Its Applications in Genetic Studies of the Hyperthermophilic Archaeon Sulfolobus islandicus.Disruption of the gene encoding restriction endonuclease SuaI and development of a host-vector system for the thermoacidophilic archaeon Sulfolobus acidocaldarius.Structure and Function of a Novel ATPase that Interacts with Holliday Junction Resolvase Hjc and Promotes Branch Migration.Versatile Genetic Tool Box for the Crenarchaeote Sulfolobus acidocaldarius.Mechanisms of Evolutionary Innovation Point to Genetic Control Logic as the Key Difference Between Prokaryotes and Eukaryotes.The Confluence of Heavy Metal Biooxidation and Heavy Metal Resistance: Implications for Bioleaching by Extreme Thermoacidophiles
P2860
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P2860
Development of a simvastatin selection marker for a hyperthermophilic acidophile, Sulfolobus islandicus.
description
2011 nî lūn-bûn
@nan
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
2011年论文
@zh
2011年论文
@zh-cn
name
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@ast
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@en
type
label
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@ast
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@en
prefLabel
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@ast
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@en
P2093
P2860
P356
P1476
Development of a simvastatin s ...... ophile, Sulfolobus islandicus.
@en
P2093
Changyi Zhang
Jinfeng Ni
Qihong Huang
Yulong Shen
P2860
P304
P356
10.1128/AEM.06095-11
P407
P50
P577
2011-11-11T00:00:00Z