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Titlebook: Genetics and Product Formation in Streptomyces; Book 1991

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https://doi.org/10.1007/978-3-540-75983-6ts on classical antibiotic screening and further derivatisation of known substances versus increasing interest in new applications and new means of production (e.g. hybrid antibiotics or biotransformations), or booming academical interest in basic research on genetics and regulation of antibiotic bi
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https://doi.org/10.1007/978-3-662-06521-1duction. Details about most of individual enzymes involved in the definitive biosynthetic pathway of tetracyclines, in which the sequence of essential reaction steps was ascertained more than 20 years ago, have also remained unknown.
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https://doi.org/10.1007/978-3-658-18045-4A tRNA species from . A3(2) was isolated and sequenced. The tRNA has a glycine specific anticodon CCC. The GC-content of the sequenced tRNA 55%, is much lower than the average of 74% GC for . genomes, but similar to glycine tRNAs from other bacteria.
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https://doi.org/10.1007/978-3-662-06520-4. Tü24 and . ATCC 10762 both produce the antibiotics tetracycline and 7-chlorotetracycline. The biosynthetic pathway for tetracycline and 7-chlorotetracvcline is identical with the exception of the chlorination step (1, Fig. 1).
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Proteins Post-Translationally Modified by ADP-Ribosylation During the Life CycleThe physiology and regulatory processes of differentiation in Streptomycetes are still obsurce in many respects. Since the problem is very complex it can be approached from different sides. One of these is the investigation of the physiologicl role of post-translational regulation by ADP-ribosylation in ...
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