Affiliation:
1. Department of Biology, Emory University, Atlanta, Georgia 30322
Abstract
ABSTRACT
The
relA
gene from
Streptomyces antibioticus
has been cloned and sequenced. The gene encodes a protein with an
M
r
of 93,653, which is 91% identical to the corresponding protein from
Streptomyces coelicolor
. Disruption of
S. antibioticus relA
produces a strain which grows significantly more slowly on actinomycin production medium than the wild type or a disruptant to which the intact
relA
gene was restored. Moreover, the disruptant was unable to accumulate ppGpp to the levels observed during the normal course of growth and actinomycin production in the wild type. The strain containing the disrupted
relA
gene did not produce actinomycin and contained significantly lower levels of the enzyme phenoxazinone synthase than the wild-type strain. Actinomycin synthetase I, a key enzyme in the actinomycin biosynthetic pathway, was undetectable in the
relA
disruptant. Growth of the disruptant on low-phosphate medium did not restore actinomycin production.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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