Ikeda K, Masujima T, Suzuki K, Sugiyama M
Institute of Pharmaceutical Sciences, Hiroshima University School of Medicine, Japan.
Appl Microbiol Biotechnol. 1996 Mar;45(1-2):80-5. doi: 10.1007/s002530050652.
Streptomyces castaneoglobisporus HUT6202 overproduces a diffusible melanin-like pigment. An operon, designated mel, containing a gene that encodes tyrosinase, which is involved in the synthesis of melanin pigment, was cloned from the chromosomal DNA of the microorganism into the high-copy plasmid pAK114 and expressed in S. lividans. The tyrosinase activity of the transformed cells was at approximately a 110-fold higher level than that of the same host carrying the plasmid pIJ702, which has the same replication origin as pAK114 and carries the mel operon from S. antibioticus. The sequence analysis of the S. castaneoglobisporus mel operon revealed that an open-reading frame consisting of 378 base pairs(bp), designated ORF378, was found upstream of the tyrosinase gene (TYRC) consisting of 819 bp. In the present study, we constructed a chimeric mel operon consisting of ORF378 from S. castaneoglobisporus and the tyrosinase gene (TYRA) from S. antibioticus. The chimeric mel operon or the S. antibioticus mel operon, which consists of ORF438 and TYRA, expressed the tyrosinase activity in Escherichia coli intracellularly when located under the control of lacZ promoter, and the tyrosinase activity from the former was at a 30-fold higher level than that from the latter. This suggests that the gene contributing to the high expression of the tyrosinase activity in S. castaneoglobisporus is ORF378, rather than TYRC.
栗褐球孢链霉菌HUT6202过量产生一种可扩散的类黑色素色素。从该微生物的染色体DNA中克隆出一个名为mel的操纵子,其中包含一个编码酪氨酸酶的基因,该基因参与黑色素的合成,并将其克隆到高拷贝质粒pAK114中,然后在淡紫链霉菌中表达。转化细胞的酪氨酸酶活性比携带质粒pIJ702的同一宿主细胞高约110倍,pIJ702与pAK114具有相同的复制起点,并携带来自抗生链霉菌的mel操纵子。栗褐球孢链霉菌mel操纵子的序列分析表明,在由819个碱基对组成的酪氨酸酶基因(TYRC)上游发现了一个由378个碱基对(bp)组成的开放阅读框,命名为ORF378。在本研究中,我们构建了一个嵌合mel操纵子,它由栗褐球孢链霉菌的ORF378和抗生链霉菌的酪氨酸酶基因(TYRA)组成。当位于lacZ启动子控制下时,该嵌合mel操纵子或由ORF438和TYRA组成的抗生链霉菌mel操纵子在大肠杆菌细胞内表达酪氨酸酶活性,前者的酪氨酸酶活性比后者高30倍。这表明,在栗褐球孢链霉菌中导致酪氨酸酶活性高表达的基因是ORF378,而不是TYRC。