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Translation (Nguyen et al., 2003; Takano et al., 2003). Translational regulation is via a very rare UUA codon in the adpA mRNA, falling between the segments encoding the two domains of AdpA. UUA is the only one of the six leucine codons to comprise only A and U residues, so the corresponding TTA codon is comparatively rare in GC-rich genomes ?it occurs in only 147 chromosomal genes in S. coelicolo
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Translation (Nguyen et al., 2003; Takano et al., 2003). Translational regulation is via a very rare UUA codon in the adpA mRNA, falling between the segments encoding the two domains of AdpA. UUA is the only one of the six leucine codons to comprise only A and U residues, so the corresponding TTA codon is comparatively rare in GC-rich genomes ?it occurs in only 147 chromosomal genes in S. coelicolo
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Translation (Nguyen et al., 2003; Takano et al., 2003). Translational regulation is via a very rare UUA codon in the adpA mRNA, falling between the segments encoding the two domains of AdpA. UUA is the only one of the six leucine codons to comprise only A and U residues, so the corresponding TTA codon is comparatively rare in GC-rich genomes ?it occurs in only 147 chromosomal genes in S. coelicolo
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Translation (Nguyen et al., 2003; Takano et al., 2003). Translational regulation is via a very rare UUA codon in the adpA mRNA, falling between the segments encoding the two domains of AdpA. UUA is the only one of the six leucine codons to comprise only A and U residues, so the corresponding TTA codon is comparatively rare in GC-rich genomes ?it occurs in only 147 chromosomal genes in S. coelicolo
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Nse regulator, WhiI (Fig. 3).The key developmental regulator AdpA emerged along with complex mycelial growth and is bldA-dependent only in StreptomycineaeBldD targets also include adpA, known as bldH in S. coelicolor (den Hengst et al., 2010). AdpA has been most comprehensively described in S. griseus, in which it is the agent of the effects of the hormone-like A-factor (Horinouchi, 2002). It comp
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Nse regulator, WhiI (Fig. 3).The key developmental regulator AdpA emerged along with complex mycelial growth and is bldA-dependent only in StreptomycineaeBldD targets also include adpA, known as bldH in S. coelicolor (den Hengst et al., 2010). AdpA has been most comprehensively described in S. griseus, in which it is the agent of the effects of the hormone-like A-factor (Horinouchi, 2002). It comp
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Nse regulator, WhiI (Fig. 3).The key developmental regulator AdpA emerged along with complex mycelial growth and is bldA-dependent only in StreptomycineaeBldD targets also include adpA, known as bldH in S. coelicolor (den Hengst et al., 2010). AdpA has been most comprehensively described in S. griseus, in which it is the agent of the effects of the hormone-like A-factor (Horinouchi, 2002). It comp
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Herefore be expected to overexpress rsbN, the resulting increase in anti-BldN activity might interfere with the expression of BldN-dependent genes and contribute significantly to the bald phenotype of bldD mutants. The most well-studied target of BldN is bldM, which encodes an orphan response regulator (Molle Buttner,FEMS Microbiol Rev 38 (2014) 345??2013 The Author. FEMS Microbiology Reviews pu