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1
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J Bacteriol. 1999 Mar;181(5):1544-54. doi: 10.1128/JB.181.5.1544-1554.1999.
2
Bradyrhizobium (Arachis) sp. strain NC92 contains two nodD genes involved in the repression of nodA and a nolA gene required for the efficient nodulation of host plants.慢生根瘤菌(落花生)菌株NC92含有两个参与nodA基因抑制作用的nodD基因以及一个宿主植物高效结瘤所需的nolA基因。
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3
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4
Population density-dependent regulation of the Bradyrhizobium japonicum nodulation genes.慢生根瘤菌结瘤基因的群体密度依赖性调控。
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Proc Natl Acad Sci U S A. 1991 Jan 15;88(2):637-41. doi: 10.1073/pnas.88.2.637.
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A two-component regulator mediates population-density-dependent expression of the Bradyrhizobium japonicum nodulation genes.一种双组分调节因子介导日本慢生根瘤菌结瘤基因的群体密度依赖性表达。
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Characterization of a fixLJ-regulated Bradyrhizobium japonicum gene sharing similarity with the Escherichia coli fnr and Rhizobium meliloti fixK genes.与大肠杆菌fnr基因和苜蓿中华根瘤菌fixK基因具有相似性的慢生根瘤菌中受fixLJ调控基因的特性分析
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The Iron control element, acting in positive and negative control of iron-regulated Bradyrhizobium japonicum genes, is a target for the Irr protein.铁调控元件对日本慢生根瘤菌的铁调节基因发挥正调控和负调控作用,是Irr蛋白的作用靶点。
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The bldC developmental locus of Streptomyces coelicolor encodes a member of a family of small DNA-binding proteins related to the DNA-binding domains of the MerR family.天蓝色链霉菌的bldC发育基因座编码一种小DNA结合蛋白家族的成员,该家族与MerR家族的DNA结合结构域相关。
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NodZ of Bradyrhizobium extends the nodulation host range of Rhizobium by adding a fucosyl residue to nodulation signals.慢生根瘤菌属的NodZ通过向结瘤信号添加一个岩藻糖基残基来扩展根瘤菌属的结瘤宿主范围。
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日本慢生根瘤菌nolA基因编码三种功能不同的蛋白质。

The Bradyrhizobium japonicum nolA gene encodes three functionally distinct proteins.

作者信息

Loh J, Stacey M G, Sadowsky M J, Stacey G

机构信息

Center for Legume Research, The University of Tennessee, Knoxville, Tennessee 37996, USA.

出版信息

J Bacteriol. 1999 Mar;181(5):1544-54. doi: 10.1128/JB.181.5.1544-1554.1999.

DOI:10.1128/JB.181.5.1544-1554.1999
PMID:10049387
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC93545/
Abstract

Examination of nolA revealed that NolA can be uniquely translated from three ATG start codons. Translation from the first ATG (ATG1) predicts a protein (NolA1) having an N-terminal, helix-turn-helix DNA-binding motif similar to the DNA-binding domains of the MerR-type regulatory proteins. Translation from ATG2 and ATG3 would give the N-terminally truncated proteins NolA2 and NolA3, respectively, lacking the DNA-binding domain. Consistent with this, immunoblot analyses of Bradyrhizobium japonicum extracts with a polyclonal antiserum to NolA revealed three distinct polypeptides whose molecular weights were consistent with translation of nolA from the three ATG initiation sites. Site-directed mutagenesis was used to produce derivatives of nolA in which ATG start sites were sequentially deleted. Immunoblots revealed a corresponding absence of the polypeptide whose ATG start site was removed. Translational fusions of the nolA mutants to a promoterless lacZ yielded functional fusion proteins in both Escherichia coli and B. japonicum. Expression of NolA is inducible upon addition of extracts from 5-day-old etiolated soybean seedlings but is not inducible by genistein, a known inducer of the B. japonicum nod genes. The expression of both NolA2 and NolA3 requires the presence of NolA1. NolA1 or NolA3 is required for the genotype-specific nodulation of soybean genotype PI 377578.

摘要

对nolA的研究表明,NolA可通过三个ATG起始密码子进行独特的翻译。从第一个ATG(ATG1)开始翻译预测会产生一种蛋白质(NolA1),其N端具有螺旋-转角-螺旋DNA结合基序,类似于MerR型调节蛋白的DNA结合结构域。从ATG2和ATG3开始翻译将分别产生N端截短的蛋白质NolA2和NolA3,它们缺乏DNA结合结构域。与此一致的是,用针对NolA的多克隆抗血清对慢生根瘤菌提取物进行免疫印迹分析,发现了三种不同的多肽,其分子量与从三个ATG起始位点翻译nolA一致。利用定点诱变产生了nolA的衍生物,其中ATG起始位点被依次删除。免疫印迹显示相应地缺失了其ATG起始位点被去除的多肽。nolA突变体与无启动子lacZ的翻译融合在大肠杆菌和慢生根瘤菌中均产生了功能性融合蛋白。添加5日龄黄化大豆幼苗的提取物可诱导NolA的表达,但已知的慢生根瘤菌结瘤基因诱导剂染料木黄酮不能诱导其表达。NolA2和NolA3的表达都需要NolA1的存在。NolA1或NolA3是大豆基因型PI 377578基因型特异性结瘤所必需的。