Abstract:
The present disclosure provides for an expression system for the production of blue pigment indigoidine. The system comprises a heterologous host cell, a DNA sequence encoding a Sc-IndB protein, and a DNA sequence encoding a Sc-IndC protein. The system may be configured for the co-expression of the Sc-IndB and Sc-IndC. DNA sequences encoding the Sc-IndB and Sc-IndC may be provided on at least one vector. Alternatively, the DNA sequences encoding the Sc-IndB and Sc-IndC may optionally be integrated into the genome of the heterologous host genome. The expression system may further comprise a sfp gene or a PPTase.
Abstract:
The present invention relates to an in vitro or in vivo process for producing a glucuronide comprising a glucuronic acid moiety bound to a phenolic hydroxyl group or a phenolic carboxyl group. Also provided are expression vectors, nucleic acids, polypeptides, and recombinant microbial cells useful in carrying out the process and prodrugs produced by the process.
Abstract:
The present invention relates to an in vitro or in vivo process for producing a glucuronide comprising a glucuronic acid moiety bound to a phenolic hydroxyl group or a phenolic carboxyl group. Also provided are expression vectors, nucleic acids, polypeptides, and recombinant microbial cells useful in carrying out the process and prodrugs produced by the process.
Abstract:
The present disclosure provides for an expression system for the production of blue pigment indigoidine. The system comprises a heterologous host cell, a DNA sequence encoding a Sc-IndB protein, and a DNA sequence encoding a Sc-IndC protein. The system may be configured for the co-expression of the Sc-IndB and Sc-IndC. DNA sequences encoding the Sc-IndB and Sc-IndC may be provided on at least one vector. Alternatively, the DNA sequences encoding the Sc-IndB and Sc-IndC may optionally be integrated into the genome of the heterologous host genome. The expression system may further comprise a sfp gene or a PPTase.
Abstract:
The present disclosure relates to an isolated or purified nucleotide sequence comprising a cDNA sequence of an rdc2 at least 60%, 70%, 90%, 95%, 98%, or 100% identical to SEQ ID NO. 1. In a second embodiment, the invention provides for a flavin-dependent halogenase comprising an amino acid sequence of an Rdc2 halogenase at least 60%, 70%, 90%, 95%, 98%, or 100% identical to SEQ ID NO. 2. In related embodiments there are provided herein methods for halogenating compounds by using an Rdc2 halogenase of the present invention.
Abstract translation:本公开涉及分离或纯化的核苷酸序列,其包含与SEQ ID NO:1的至少60%,70%,90%,95%,98%或100%同一性的rdc2的cDNA序列。 在第二个实施方案中,本发明提供一种黄素依赖性卤化酶,其包含与SEQ ID NO的至少60%,70%,90%,95%,98%或100%同一性的Rdc2卤代酶的氨基酸序列 。 在相关实施方案中,本文提供了使用本发明的Rdc2卤素酶使化合物卤化的方法。