Archaebacteria and eukaryotes possess DNA‐dependent RNA polymerases of a common type.
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Summary
Eukaryotic and archaebacterial RNA polymerases are indeed of the same type, distinct from the eubacterial enzymes, which, however, are also derived from a common ancestral structure.
- Type
- article
- Published
- 1983-08-01
- Cited by
- 135
- References
- 4
- Access
- Open access
- OpenAlex
- https://openalex.org/W182034678
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28226281
Keywords
Biology, Genetics, Polymerase, DNA, RNA
References
Cited by
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- Sulfolobus as a model organism for the study of diverse biological interests : forays into thermal virology and oxidative stress
- Localization of yeast RNA polymerase I core subunits by immunoelectron microscopy.
- Cell architecture and flagella of hyperthermophilic Archaea
- Comparative studies on elongation and termination of the three RNA polymerases from S. cerevisiae in vitro
- Thermostable DNA polymerases in replication, repair and biotechnology
- Basal and regulated transcription in archaea.
- Aphidicolin inhibits growth and DNA synthesis in halophilic arachaebacteria
- ATP-dependent DNA topoisomerase from the archaebacterium Sulfolobus acidocaldarius. Relaxation of supercoiled DNA at high temperature.
- Genetic Analysis of RadB, a Paralogue of the Archaeal Rad51/RecA Homologue, RadA
- Archaeal genetics — the third way
- Characterization of the upstream region of the formate dehydrogenase operon of Methanobacterium formicicum
- Nuclear function and organization: the potential of immunochemical approaches.
- High resolution contact probing of the Lrp‐like DNA‐binding protein Ss‐Lrp from the hyperthermoacidophilic crenarchaeote Sulfolobus solfataricus P2
- Expression of the thermostable beta-galactosidase gene from the archaebacterium Sulfolobus solfataricus in Saccharomyces cerevisiae and characterization of a new inducible promoter for heterologous expression
- Computational Genome and Pathway Analysis of Halophilic Archaea
- Model organisms for genetics in the domain Archaea: methanogens, halophiles, Thermococcales and Sulfolobales.
- Diversity, dynamics and activity of mesophilic Archaea in stratified feshwater lakes. Implications in biogeochemical cycles
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