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霍乱弧菌中铁调节毒力基因的正转录调控

Positive transcriptional regulation of an iron-regulated virulence gene in Vibrio cholerae.

作者信息

Goldberg M B, Boyko S A, Calderwood S B

机构信息

Infectious Disease Unit, Massachusetts General Hospital, Boston 02114.

出版信息

Proc Natl Acad Sci U S A. 1991 Feb 15;88(4):1125-9. doi: 10.1073/pnas.88.4.1125.

Abstract

We have previously described a virulence gene in Vibrio cholerae (irgA) that is more than 850-fold regulated in response to iron. Negative regulation of irgA by iron occurred at the transcriptional level, and there was a dyad symmetric nucleotide sequence in the vicinity of the irgA promoter homologous to the Fur binding site in Escherichia coli. When irgA was cloned into E. coli, we showed that transcription of irgA required 900 base pairs of DNA upstream of the irgA promoter that contained an open reading frame in inverse orientation to irgA. In the present study, we show that this upstream region of DNA encodes a gene in inverse orientation to irgA (named irgB) that is also negatively regulated by iron. Insertional inactivation of irgB on the V. cholerae chromosome leads to loss of expression of a chromosomal irgA'-'phoA fusion (in which the primes indicate truncated genes), which is restored to normal by provision of irgB on a plasmid in trans. DNA sequencing of irgB shows that the protein product (IrgB) is homologous to the LysR family of positive transcriptional activators, and secondary structure analysis of IrgB predicts a helix-turn-helix DNA binding motif. The promoters of irgB and irgA are divergent but overlap each other and the previously defined Fur-binding site. We propose a model for iron regulation of irgA expression in V. cholerae. In the presence of sufficient iron, transcription of both irgA and irgB is negatively regulated by a Fur-like protein. In low iron conditions, negative regulation of transcription is removed, and production of IrgB leads to positive transcriptional activation of irgA. It seems likely that the high induction ratio of irgA expression under low- and high-iron conditions (850-fold) relates to the fact that its cognate positive transcriptional activator (irgB) is itself negatively regulated by iron.

摘要

我们之前曾描述过霍乱弧菌中的一个毒力基因(irgA),其表达受铁的调控,调控倍数超过850倍。铁对irgA的负调控发生在转录水平,并且irgA启动子附近存在一个与大肠杆菌中Fur结合位点同源的二元对称核苷酸序列。当irgA被克隆到大肠杆菌中时,我们发现irgA的转录需要irgA启动子上游900个碱基对的DNA,该区域包含一个与irgA方向相反的开放阅读框。在本研究中,我们表明这个上游DNA区域编码一个与irgA方向相反的基因(命名为irgB),它也受铁的负调控。irgB在霍乱弧菌染色体上的插入失活导致染色体irgA'-'phoA融合基因(其中的撇号表示截短的基因)表达丧失,通过在质粒上反式提供irgB可使其恢复正常。irgB的DNA测序表明其蛋白质产物(IrgB)与正转录激活因子的LysR家族同源,IrgB的二级结构分析预测有一个螺旋-转角-螺旋DNA结合基序。irgB和irgA的启动子方向相反但相互重叠,且与先前定义的Fur结合位点重叠。我们提出了一个霍乱弧菌中irgA表达的铁调控模型。在铁充足的情况下,irgA和irgB的转录均受一种类似Fur的蛋白质负调控。在低铁条件下,转录的负调控被解除,IrgB的产生导致irgA的正转录激活。irgA在低铁和高铁条件下表达的高诱导倍数(850倍)似乎与以下事实有关,即其同源的正转录激活因子(irgB)本身受铁的负调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5983/50969/ae7b08ac3ed9/pnas01054-0052-a.jpg

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