scholarly article | Q13442814 |
P50 | author | Friedhelm Pfeiffer | Q55175127 |
Jörg Soppa | Q42393991 | ||
P2093 | author name string | D Oesterhelt | |
S C Schuster | |||
J Tittor | |||
P Palm | |||
K Rodewald | |||
A Ruepp | |||
A Broicher | |||
M Falb | |||
P2860 | cites work | Large-scale identification of N-terminal peptides in the halophilic archaea Halobacterium salinarum and Natronomonas pharaonis | Q43022509 |
A small protein from the bop-brp intergenic region of Halobacterium salinarum contains a zinc finger motif and regulates bop and crtB1 transcription | Q43058459 | ||
MpcT is the transducer for membrane potential changes in Halobacterium salinarum | Q45307973 | ||
Halobacterium salinarum nom. corrig., a Name To Replace Halobacterium salinarium (Elazari-Volcani) and To Include Halobacterium halobium and Halobacterium cutirubrum | Q45312606 | ||
Large-scale, multi-genome analysis of alternate open reading frames in bacteria and archaea. | Q46418063 | ||
Cytochrome ba3 from Natronobacterium pharaonis--an archaeal four-subunit cytochrome-c-type oxidase | Q48041118 | ||
Development of joint application strategies for two microbial gene finders | Q48557438 | ||
Post-genomics of the model haloarchaeon Halobacterium sp. NRC-1 | Q57103308 | ||
Archaeal N-terminal protein maturation commonly involves N-terminal acetylation: a large-scale proteomics survey | Q80207366 | ||
The genome of the square archaeon Haloquadratum walsbyi : life at the limits of water activity | Q22065316 | ||
Living with two extremes: conclusions from the genome sequence of Natronomonas pharaonis | Q22065744 | ||
Genome sequence of Haloarcula marismortui: a halophilic archaeon from the Dead Sea | Q22065753 | ||
Genome sequence of Halobacterium species NRC-1 | Q22066243 | ||
Gapped BLAST and PSI-BLAST: a new generation of protein database search programs | Q24545170 | ||
Consed: a graphical tool for sequence finishing | Q27860740 | ||
From genomes to function: haloarchaea as model organisms | Q28300154 | ||
Discovery of two novel families of proteins that are proposed to interact with prokaryotic SMC proteins, and characterization of the Bacillus subtilis family members ScpA and ScpB | Q28488986 | ||
Genome-wide analysis of growth phase-dependent translational and transcriptional regulation in halophilic archaea. | Q30838193 | ||
Experimental characterization of Cis-acting elements important for translation and transcription in halophilic archaea | Q30839855 | ||
Halobacterium noricense sp. nov., an archaeal isolate from a bore core of an alpine Permian salt deposit, classification of Halobacterium sp. NRC-1 as a strain of H. salinarum and emended description of H. salinarum | Q30950253 | ||
Analysis of the cytosolic proteome of Halobacterium salinarum and its implication for genome annotation. | Q31137369 | ||
Snapshot of a large dynamic replicon in a halophilic archaeon: megaplasmid or minichromosome? | Q31958293 | ||
The membrane proteome of Halobacterium salinarum | Q33210360 | ||
Quantitative profiling of the membrane proteome in a halophilic archaeon | Q33248096 | ||
Regulated polyploidy in halophilic archaea | Q33267353 | ||
The low molecular weight proteome of Halobacterium salinarum | Q33275791 | ||
Transcriptome changes and cAMP oscillations in an archaeal cell cycle | Q33287341 | ||
Microarray analysis in the archaeon Halobacterium salinarum strain R1 | Q33303672 | ||
Analysis of the genetic diversity of Helicobacter pylori: the tale of two genomes | Q33842737 | ||
Archaeal Histones, Nucleosomes, and Transcription Initiation | Q34064849 | ||
An Archaeal Chromosomal Autonomously Replicating Sequence Element from an Extreme Halophile,Halobacteriumsp. Strain NRC-1 | Q34267329 | ||
Large-scale prokaryotic gene prediction and comparison to genome annotation | Q34462831 | ||
Combining diverse evidence for gene recognition in completely sequenced bacterial genomes. | Q34668657 | ||
Fermentative arginine degradation in Halobacterium salinarium (formerly Halobacterium halobium): genes, gene products, and transcripts of the arcRACB gene cluster | Q35611100 | ||
Minimal replication origin of the 200-kilobase Halobacterium plasmid pNRC100. | Q36103526 | ||
Signal transduction in the archaeon Halobacterium salinarium is processed through three subfamilies of 13 soluble and membrane-bound transducer proteins | Q37600593 | ||
A novel mode of sensory transduction in archaea: binding protein-mediated chemotaxis towards osmoprotectants and amino acids | Q39644892 | ||
Insertion elements and deletion formation in a halophilic archaebacterium | Q39950291 | ||
Putative promoter region of rRNA operon from archaebacteriumHalobacterium halobium | Q40461479 | ||
Transposition burst of the ISH27 insertion element family in Halobacterium halobium | Q40526904 | ||
Car: a cytoplasmic sensor responsible for arginine chemotaxis in the archaeon Halobacterium salinarum | Q41901736 | ||
Genome organization in Halobacterium halobium: a 70 kb island of more (AT) rich DNA in the chromosome | Q43018625 | ||
Genome-wide proteomics of Natronomonas pharaonis. | Q43021896 | ||
P433 | issue | 4 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | laboratory | Q483242 |
Halobacterium salinarum | Q3782756 | ||
P304 | page(s) | 335-346 | |
P577 | publication date | 2008-03-03 | |
P1433 | published in | Genomics | Q5533503 |
P1476 | title | Evolution in the laboratory: the genome of Halobacterium salinarum strain R1 compared to that of strain NRC-1 | |
P478 | volume | 91 |
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