首页> 外文OA文献 >CbbR, a LysR-type transcriptional activator, is required for expression of the autotrophic CO2 fixation enzymes of Xanthobacter flavus.
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CbbR, a LysR-type transcriptional activator, is required for expression of the autotrophic CO2 fixation enzymes of Xanthobacter flavus.

机译:CbbR,LysR型转录激活因子,是表达黄杆菌的自养CO2固定酶所必需的。

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摘要

Xanthobacter flavus is able to grow autotrophically with the enzymes of the Calvin cycle for the fixation of CO2, which are specified by the cbbLSXFP gene cluster. Previously, the 5' end of an open reading frame (cbbR), displaying a high sequence similarity to the LysR family of regulatory proteins and transcribed divergently from cbbLSXFP, was identified (W. G. Meijer, A. C. Arnberg, H. G. Enequist, P. Terpstra, M. E. Lidstrom, and L. Dijkhuizen, Mol. Gen. Genet. 225:320-330, 1991). This paper reports the complete nucleotide sequence of cbbR and a functional characterization of the gene. The cbbR gene of X. flavus specifies a 333-amino-acid polypeptide, with a molecular weight of 35,971. Downstream from cbbR, the 3' end of an open reading frame displaying a high similarity to ORF60K from Pseudomonas putida and ORF261 from Bacillus subtilis was identified. ORF60K and ORF261 are located at the replication origin of the bacterial chromosome. Inactivation of cbbR, via the insertion of an antibiotic resistance gene, rendered X. flavus unable to grow autotrophically. This was caused not by an inability to oxidize autotrophic substrates (e.g., formate) but by a complete lack of expression of the cbb genes. The expression of the CbbR protein in Escherichia coli was achieved by placing cbbR behind a strong promoter and optimization of the translational signals of cbbR. CbbR binds specifically to two binding sites in the cbbR-cbbL intergenic region.
机译:黄杆菌杆菌能够与卡尔文循环的酶自养生长,以固定二氧化碳,这由cbbLSXFP基因簇确定。以前,已鉴定出一个开放阅读框(cbbR)的5'端,它与LysR调控蛋白家族具有高度的序列相似性,并从cbbLSXFP转录而来(转录是由Meijer,AC Arnberg,HG Enequist,P。Terpstra,ME Lidstrom和L.Dijkhuizen,分子遗传学杂志225:320-330,1991)。本文报道了cbbR的完整核苷酸序列和该基因的功能特性。黄曲霉的cbbR基因指定了一个333个氨基酸的多肽,分子量为35,971。在cbbR的下游,确定了一个开放阅读框的3'末端,该阅读框与恶臭假单胞菌的ORF60K和枯草芽孢杆菌的ORF261具有高度相似性。 ORF60K和ORF261位于细菌染色体的复制起点。通过插入抗生素抗性基因使cbbR失活,导致黄萎病菌无法自养生长。这不是由于不能氧化自养底物(例如甲酸盐),而是由于完全缺乏cbb基因的表达。通过将cbbR置于强启动子后面并优化cbbR的翻译信号,可实现CbbR蛋白在大肠杆菌中的表达。 CbbR与cbbR-cbbL基因间区域中的两个结合位点特异性结合。

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