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首页> 外文期刊>Applied Microbiology and Biotechnology >AveI, an AtrA homolog of Streptomyces avermitilis, controls avermectin and oligomycin production, melanogenesis, and morphological differentiation
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AveI, an AtrA homolog of Streptomyces avermitilis, controls avermectin and oligomycin production, melanogenesis, and morphological differentiation

机译:Avermitilis的ATRA同源物,控制Avermectin和寡霉素生产,素质生成和形态学分化

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摘要

Streptomyces avermitilis is well known as the producer of anthelmintic agent avermectins, which are widely used in agriculture, veterinary medicine, and human medicine. aveI encodes a TetR-family regulator, which is the homolog of AtrA. It was reported that deletion of aveI caused enhanced avermectin production. In this study, we investigated the regulatory function of the AveI in S. avermitilis. By binding to the 15-nt palindromic sequence in the promoter regions, AveI directly regulates at least 35 genes. AveI represses avermectin production by directly regulating the transcription of the cluster-situated regulator gene aveR and structural genes aveA1, aveA3, and aveD. AveI represses oligomycin production by repressing the CSR gene olmRII and structural genes olmC. AveI activates melanin biosynthesis by activating the expression of melC1C2 operon. AveI activates morphological differentiation by activating the expression of ssgR and ssgD genes, repressing the expression of wblI gene. Besides, AveI regulates many genes involved in primary metabolism, including substrates transport, the metabolism of amino acids, lipids, and carbohydrates. Therefore, AveI functions as a global regulator in S. avermitilis, controls not only secondary metabolism and morphological differentiation, but also primary metabolism.
机译:Streptomyces Avermitilis是众所周知的,众所周知,广泛用于农业,兽医和人类药物。 Avei编码了一系列的四类稳压器,这是ATRA的同源物。据报道,缺失Avei引起增强的Avermectin生产。在这项研究中,我们调查了Avermitilis的Avei的调节功能。通过在启动子区中的15-NT-新突变序列结合,AVEI直接调节至少35个基因。 Avei通过直接调节簇定位的调节因子基因(AREA1,AVEA3和AVED的簇定位的调节因子基因AVER和结构基因的转录来抑制AVECECTIN生产。通过压制CSR基因olmRII和结构基因OLMC来抑制寡霉素生产。 Avei通过激活MelC1C2操纵子的表达来激活黑色素生物合成。通过激活SSGR和SSGD基因的表达,抑制WBLI基因的表达来激活形态分辨率。此外,AVEI调节涉及原发性代谢的许多基因,包括底物转运,氨基酸,脂质和碳水化合物的代谢。因此,AVEI作为S. Avermitilis的全球调节剂,不仅控制次级新陈代谢和形态学分化,而且还控制着初级代谢。

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