Sequence
gtgaactggctcaactccgaggccttcgtcctgttcgaccagcacatcatctggtcggacatggtcggcaacatcctgggcctcatcaccctcgcgctgggcttccggcgctccctgtggacctggccggtccagttcctctccggcctcgtcctgttcggcgccttctacggccatctgaccggcagcgccggcaagcaggccgtcgtcatggccgtcgcgctgtacggctggtaccagtggaaccgcggcaccgacaaggccgccgacggcaaggtctccgtccgcttcgccacctgggcggagcgcggcgcgatgatcgcggcggccgccgtcggcaccgtcgcggtggccctgctcttcaaggcgtacccgagcctgtcctgggacccttggccggacgcctacatcttcgtcggcacgatcgtcgccatgtacgcccaggcgcgcggcatggtcgagttctggttcgcctggctcctcgtcgacctcgtcggcgtcccgctgaacttcgcgaacggctacgccttctccggcttcgtctacgtcatctacggcgcactcgtcctgtggggcatgcgcgactggtggctgcgctcccgcagggactcgcggcccgtcctggaaggagcgcccgcgtga

ribM encodes a riboflavin/roseoflavin transporter from Streptomyces davawensis that exports riboflavin without ATP consumption. Its heterologous expression in Bacillus subtilis markedly enhances riboflavin production; in contrast, constitutive expression of ribM in Escherichia coli increases metabolic burden and reduces riboflavin yield without affecting growth [345].

Gene size:
Protein size:
Compounds affected riboflavin

Databases
EraGene: 2197909
KEGG: sdv:BN159_7145