1995
DOI: 10.1007/bf00156354
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Metabolic conversion of aclacinomycins B and Y to A by pH shift during fermentation with Streptomyces lavendofoliae DKRS

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Cited by 3 publications
(2 citation statements)
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“…It is challenging to separate ACM-A from its analogues due to similar structures. To increase ACM-A and accordingly reduce analogues, S. lavendofoliae ATCC 15872 was mutated, leading to S. lavendofoliae DKRS, which produced 125 mg/L ACM-A [ 127 ]. Adjusting the pH value at the late stage of fermentation could also promote ACM-B conversion to ACM-A and thereby facilitate the purification of ACM-A [ 128 ].…”
Section: Strategies For Improving Acm-a Productionmentioning
confidence: 99%
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“…It is challenging to separate ACM-A from its analogues due to similar structures. To increase ACM-A and accordingly reduce analogues, S. lavendofoliae ATCC 15872 was mutated, leading to S. lavendofoliae DKRS, which produced 125 mg/L ACM-A [ 127 ]. Adjusting the pH value at the late stage of fermentation could also promote ACM-B conversion to ACM-A and thereby facilitate the purification of ACM-A [ 128 ].…”
Section: Strategies For Improving Acm-a Productionmentioning
confidence: 99%
“…To increase ACM-A and accordingly reduce analogues, S. lavendofoliae ATCC 15872 was mutated, leading to S. lavendofoliae DKRS, which produced 125 mg/L ACM-A [ 127 ]. Adjusting the pH value at the late stage of fermentation could also promote ACM-B conversion to ACM-A and thereby facilitate the purification of ACM-A [ 128 ]. Interestingly, the mutants of S. galilaeus H026 caused by the treatment of N-methyl-N′-nitro-N-nitrosoguanidine (NTG) could convert AcmB to AcmA, but could not catalyze AcmA to AcmB, which is conducive to the industrial production of AcmA [ 129 ].…”
Section: Strategies For Improving Acm-a Productionmentioning
confidence: 99%