Talpaert et al., 1975 - Google Patents
Lipiarmycin: an antibiotic inhibiting nucleic acid polymerasesTalpaert et al., 1975
- Document ID
- 17192320780221990840
- Author
- Talpaert M
- Campagnari F
- Clerici L
- Publication year
- Publication venue
- Biochemical and Biophysical Research Communications
External Links
Snippet
Lipiarmycin, a new antibiotic from a strain of Actinoplanes, was found to inhibit RNA polymerase from E. coli by blocking the initiation step of RNA synthesis like rifampicin. The drug was a much less potent and specific inhibitor than rifampicin: doses 10 to 20 times …
- 229960000628 fidaxomicin 0 title abstract description 41
Classifications
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICRO-ORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING OR MAINTAINING MICRO-ORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N9/00—Enzymes; Proenzymes; Compositions thereof; Processes for preparing, activating, inhibiting, separating or purifying enzymes
- C12N9/10—Transferases (2.)
- C12N9/12—Transferases (2.) transferring phosphorus containing groups, e.g. kinases (2.7)
- C12N9/1241—Nucleotidyltransferases (2.7.7)
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12Q—MEASURING OR TESTING PROCESSES INVOLVING ENZYMES OR MICRO-ORGANISMS; COMPOSITIONS OR TEST PAPERS THEREFOR; PROCESSES OF PREPARING SUCH COMPOSITIONS; CONDITION RESPONSIVE CONTROL IN MICROBIOLOGICAL OR ENZYMOLOGICAL PROCESSES
- C12Q1/00—Measuring or testing processes involving enzymes, nucleic acids or micro-organisms; Compositions therefor; Processes of preparing such compositions
- C12Q1/68—Measuring or testing processes involving enzymes, nucleic acids or micro-organisms; Compositions therefor; Processes of preparing such compositions involving nucleic acids
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICRO-ORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING OR MAINTAINING MICRO-ORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N15/00—Mutation or genetic engineering; DNA or RNA concerning genetic engineering, vectors, e.g. plasmids, or their isolation, preparation or purification; Use of hosts therefor
- C12N15/09—Recombinant DNA-technology
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICRO-ORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING OR MAINTAINING MICRO-ORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N9/00—Enzymes; Proenzymes; Compositions thereof; Processes for preparing, activating, inhibiting, separating or purifying enzymes
- C12N9/14—Hydrolases (3)
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICRO-ORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING OR MAINTAINING MICRO-ORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N2310/00—Structure or type of the nucleic acid
- C12N2310/10—Type of nucleic acid
-
- C—CHEMISTRY; METALLURGY
- C12—BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
- C12N—MICRO-ORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING OR MAINTAINING MICRO-ORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
- C12N1/00—Micro-organisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving micro-organisms or compositions thereof; Processes of preparing or isolating a composition containing a micro-organism; Culture media therefor
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US11535846B2 (en) | Chemically modified guide RNAS for CRISPR/Cas-mediated gene regulation | |
Talpaert et al. | Lipiarmycin: an antibiotic inhibiting nucleic acid polymerases | |
Furth et al. | Inhibition of mammalian DNA polymerase by the 5′-triphosphate of 1-β-d-arabinofuranosylcytosine and the 5′-triphosphate of 9-β-d-arabinofuranosyladenine | |
Fox et al. | The Enzymatic Synthesis of Ribonucleic Acid: V. THE INTERACTION OF RIBONUCLEIC ACID POLYMERASE WITH NUCLEIC ACIDS | |
Kassavetis et al. | Pausing and termination of transcription within the early region of bacteriophage T7 DNA in vitro. | |
Stadtman et al. | Multiple molecular forms of glutamine synthetase produced by enzyme catalyzed adenylylation and deadenylylation reactions | |
Lin et al. | (A) BC excinuclease: the Escherichia coli nucleotide excision repair enzyme | |
Huber et al. | Interaction of mutant thioredoxins of Escherichia coli with the gene 5 protein of phage T7. The redox capacity of thioredoxin is not required for stimulation of DNA polymerase activity. | |
Chamberlin et al. | Mechanism of RNA polymerase action: characterization of the DNA-dependent synthesis of polyadenylic acid | |
Riva et al. | Active site labeling of the RNA polymerases A, B, and C from yeast. | |
Schmidt et al. | Amplification and isolation of E. coli nusA protein and studies of its effects on in vitro RNA chain elongation | |
Yoshida et al. | Inhibition of DNA polymerase-α and-β of calf thymus by 1-β-D-arabinofuranosylcytosine-5′-triphosphate | |
Towle et al. | Purification and characterization of bacteriophage gh-I-induced deoxyribonucleic acid-dependent ribonucleic acid polymerase from Pseudomonas putida. | |
Siegal et al. | A 5'to 3'exonuclease functionally interacts with calf DNA polymerase epsilon. | |
Wickner et al. | DNA replication in Escherichia coli made permeable by treatment with high sucrose | |
Klemme | Regulation of intracellular pyrophosphatase-activity and conservation of the phosphoanhydride-energy of inorganic pyrophosphate in microbial metabolism | |
Jordan et al. | Ribonucleotide reduction in Pseudomonas species: simultaneous presence of active enzymes from different classes | |
Brown et al. | Terminal riboadenylate transferase: a poly A polymerase in purified vaccinia virus | |
Peterson et al. | Independent fluctuations of cytidine and adenosine diphosphate reductase activities in cultured Chinese hamster fibroblasts | |
Boehlein et al. | Arginine 30 and asparagine 74 have functional roles in the glutamine dependent activities of Escherichia coli asparagine synthetase B. | |
Turpaev et al. | Ap3A and Ap4A are primers for oligoadenylate synthesis catalyzed by interferon-inducible 2-5A synthetase | |
Modak | Biochemistry of terminal deoxynucleotidyltransferase. Mechanism of manganese-dependent inhibition by deoxyadenosine 5'-triphosphate and biological implications | |
McLaughlin et al. | Donor activation in the T4 RNA ligase reaction | |
Klein | Studies on the substrate-induced arginase synthesis in animal cell strains cultured in vitro | |
Kreutzer et al. | Footprinting of tRNAPhe transcripts from Thermus thermophilus HB8 with the homologues phenylalanyl-tRNA synthetase reveals a novel mode of interaction |