首页> 美国卫生研究院文献>Journal of Bacteriology >Identification of acoR a regulatory gene for the expression of genes essential for acetoin catabolism in Alcaligenes eutrophus H16.
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Identification of acoR a regulatory gene for the expression of genes essential for acetoin catabolism in Alcaligenes eutrophus H16.

机译:鉴定acoR一种调节基因用于表达真人拟南芥H16中乙酰化分解代谢所必需的基因。

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摘要

Two hundred thirty-nine base pairs upstream from acoXABC, which encodes the Alcaligenes eutrophus H16 structural genes essential for cleavage of acetoin, the 2,004-bp acoR gene was identified. acoR encodes a protein of 668 amino acids with a molecular mass of 72.9 kDa. The amino acid sequence deduced from acoR exhibited homologies to the primary structures of transcriptional activators such as NifA of Azotobacter vinelandii, NtrC of Klebsiella pneumoniae, and HoxA of A. eutrophus. Striking similarities to the central domain of these proteins and the presence of a typical nucleotide-binding site (GETGSGK) as well as of a C-terminal helix-turn-helix motif as a DNA-binding site were revealed. Between acoR and acoXABC, two different types of sequences with dual rotational symmetry [CAC-(N11 to N18)-GTG and TGT-(N10 to N14)-ACA] were found; these sequences are similar to NtrC and NifA upstream activator sequences, respectively. Determination of the N-terminal amino acid sequence of an acoR'-'lacZ gene fusion identified the translational start of acoR. S1 nuclease protection assay identified the transcriptional start site 109 bp upstream of acoR. The promoter region (TTGCGC-N18-TACATT) resembled the sigma 70 consensus sequence of Escherichia coli. Analysis of an acoR'-'lacZ fusion and primer extension studies revealed that acoR was expressed at a low level under all culture conditions, whereas acoXABC was expressed only in acetoin-grown cells. The insertions of Tn5 in six transposon-induced acetoin-negative mutants of A. eutrophus were mapped within acoR. On the basis of these studies, it is probable that AcoR represents a regulatory protein which is required for sigma 54-dependent transcription of acoXABC.
机译:acoXABC上游的239个碱基对编码了2,004 bp的acoR基因,该碱基编码对乙酰丙酮酶裂解必不可少的嗜碱拟南芥H16结构基因。 acoR编码一个668个氨基酸的蛋白质,分子量为72.9 kDa。从acoR推导的氨基酸序列与转录激活因子的主要结构具有同源性,所述转录激活因子例如葡萄固氮菌的NifA,肺炎克雷伯菌的NtrC和真人曲霉的HoxA。揭示了与这些蛋白质的中央结构域的惊人相似之处,以及一个典型的核苷酸结合位点(GETGSGK)以及C末端螺旋-转-螺旋基序作为DNA结合位点的存在。在acoR和acoXABC之间,发现了两种具有双重旋转对称性的序列[CAC-(N11至N18)-GTG和TGT-(N10至N14)-ACA]。这些序列分别类似于NtrC和NifA上游激活子序列。确定acR'-'lacZ基因融合体的N-末端氨基酸序列,确定了acR的翻译起点。 S1核酸酶保护试验确定了acoR上游109 bp的转录起始位点。启动子区域(TTGCGC-N18-TACATT)类似于大肠杆菌的sigma 70共有序列。对acoR'-'lacZ融合和引物延伸研究的分析表明,在所有培养条件下acoR均以低水平表达,而acoXABC仅在乙酰化生长的细胞中表达。 Tn5在六个转座子诱导的大肠曲霉乙酰丙酮阴性突变体中的插入被定位在acoR中。根据这些研究,很可能AcoR代表了acoXABC依赖sigma 54的转录所必需的调节蛋白。

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