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棕色固氮菌nifE缺失突变株(DJ35)钼铁蛋白的特性 被引量:1
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作者 赵颖 边少敏 +4 位作者 张纯喜 周会娜 王煌平 赵剑峰 黄巨富 《科学通报》 EI CAS CSCD 北大核心 2005年第18期1984-1988,共5页
从棕色固氮菌缺失nifE的突变株DJ35中纯化得到纯度约为80%的MoFe蛋白(△nifE Av1).与野生种OP中纯化出的MoFe蛋白(OP Av1)相比,△nifE Av1具有与之相同的亚基组成,并可与OP Av1的抗体发生免疫交叉反应,但在厌氧天然电泳中的迁移率略大于... 从棕色固氮菌缺失nifE的突变株DJ35中纯化得到纯度约为80%的MoFe蛋白(△nifE Av1).与野生种OP中纯化出的MoFe蛋白(OP Av1)相比,△nifE Av1具有与之相同的亚基组成,并可与OP Av1的抗体发生免疫交叉反应,但在厌氧天然电泳中的迁移率略大于OP Av1.金属含量测定表明,△nifE Av1的Mo和Fe含量均显著下降.△nifE Av1单独与OP Fe蛋白互补时不具乙炔还原活性,但可被从OP Av1中抽提出的FeMo-co体外激活.△nifE Av1的圆二色谱450nm附近区域与OP Av1的相似,而电子顺磁共振谱中g≈3.7的信号则完全消失,g≈4.3和2.0处的信号也分别下降75%和50%左右.上述结果表明,从DJ35中纯化出的△nifE Av1是一种FeMo-co缺失而P-cluster正常的MoFe蛋白. 展开更多
关键词 棕色固氮菌 AnifE Av1 FeMo-co P—cluster 电子顺磁共振 NIFE 缺失突变株 钼铁蛋白 MoFe蛋白
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A LuxR family transcriptional regulator AniF promotes the production of anisomycin and its derivatives in Streptomyces hygrospinosus var.beijingensis 被引量:11
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作者 Jufang Shen Lingxin Kong +5 位作者 Yan Li Xiaoqing Zheng Qing Wang Weinan Yang Zixin Deng Delin You 《Synthetic and Systems Biotechnology》 SCIE 2019年第1期40-48,共9页
The protein synthesis inhibitor anisomycin features a unique benzylpyrrolidine system and exhibits potent selective activity against pathogenic protozoa and fungi.It is one of the important effective components in Agr... The protein synthesis inhibitor anisomycin features a unique benzylpyrrolidine system and exhibits potent selective activity against pathogenic protozoa and fungi.It is one of the important effective components in Agricultural Antibiotic120,which has been widely used as naturally-originated agents for treatment of crop decay in China.The chemical synthesis of anisomycin has recently been reported,but the complex process with low productivity made the biosynthesis still to be a vital mainstay in efforts.The biosynthetic gene cluster(BGC)of anisomycin in Streptomyces hygrospinosus var.beijingensis has been identified in our previous work,while poor understanding of the regulatory mechanism limited the yield enhancement via regulation engineering of S.hygrospinosus var.beijingensis.In this study here,we characterized AniF as an indispensable LuxR family transcriptional regulator for the activation of anisomycin biosynthesis.The genetic manipulations of aniF and the real-time quantitative PCR(RT-qPCR)revealed that it positively regulated the transcription of the anisomycin BGC.Moreover,the overexpression of aniF contributed to the improvement of the production of anisomycin and its derivatives.Dissection of the mechanism underlying the function of AniF revealed that it directly activated the transcription of the genes aniR-G involved in anisomycin biosynthesis.Especially,one AniF-binding site in the promoter region of aniR was identified by DNase I footprinting assay and an inverted repeat sequence(5′-GGGC-3′)composed of two 4-nt half sites in the protected region was found.Taken together,our systematic study confirmed the positive regulatory role of AniF and might facilitate the future construction of engineering strains with high productivity of anisomycin and its derivatives. 展开更多
关键词 ANISOMYCIN Agricultural Antibiotic120 BIOSYNTHESIS AniF LuxR regulator STREPTOMYCES
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