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增强子结合蛋白Nla6调控对黄色粘球菌孢子形成至关重要的发育基因。

The enhancer binding protein Nla6 regulates developmental genes that are important for Myxococcus xanthus sporulation.

作者信息

Giglio Krista M, Zhu Chengjun, Klunder Courtney, Kummer Shelley, Garza Anthony G

机构信息

Department of Biology, Syracuse University, Syracuse, New York, USA.

Department of Biology, Syracuse University, Syracuse, New York, USA

出版信息

J Bacteriol. 2015 Apr;197(7):1276-87. doi: 10.1128/JB.02408-14. Epub 2015 Feb 2.

Abstract

UNLABELLED

In the bacterium Myxococcus xanthus, starvation triggers the formation of multicellular fruiting bodies containing thousands of stress-resistant spores. Recent work showed that fruiting body development is regulated by a cascade of transcriptional activators called enhancer binding proteins (EBPs). The EBP Nla6 is a key component of this cascade; it regulates the promoters of other EBP genes, including a downstream-functioning EBP gene that is crucial for sporulation. In recent expression studies, hundreds of Nla6-dependent genes were identified, suggesting that the EBP gene targets of Nla6 may be part of a much larger regulon. The goal of this study was to identify and characterize genes that belong to the Nla6 regulon. Accordingly, a direct repeat [consensus, C(C/A)ACGNNGNC] binding site for Nla6 was identified using in vitro and in vivo mutational analyses, and the sequence was subsequently used to find 40 potential developmental promoter (88 gene) targets. We showed that Nla6 binds to the promoter region of four new targets (asgE, exo, MXAN2688, and MXAN3259) in vitro and that Nla6 is important for their normal expression in vivo. Phenotypic studies indicate that all of the experimentally confirmed targets of Nla6 are primarily involved in sporulation. These targets include genes involved in transcriptional regulation, cell-cell signal production, and spore differentiation and maturation. Although sporulation occurs late in development, all of the developmental loci analyzed here show an Nla6-dependent burst in expression soon after starvation is induced. This finding suggests that Nla6 starts preparing cells for sporulation very early in the developmental process.

IMPORTANCE

Bacterial development yields a remarkable array of complex multicellular forms. One such form, which is commonly found in nature, is a surface-associated aggregate of cells known as a biofilm. Mature biofilms are structurally complex and contain cells that are highly resistant to antibacterial agents. When starving, the model bacterium Myxococcus xanthus forms a biofilm containing a thin mat of cells and multicellular structures that house a highly resistant cell type called a myxospore. Here, we identify the promoter binding site of the transcriptional activator Nla6, identify genes in the Nla6 regulon, and show that several of the genes in the Nla6 regulon are important for production of stress-resistant spores in starvation-induced M. xanthus biofilms.

摘要

未标记

在粘球菌中,饥饿会触发形成含有数千个抗逆孢子的多细胞子实体。最近的研究表明,子实体发育受一系列称为增强子结合蛋白(EBP)的转录激活因子调控。EBP Nla6是这一调控级联的关键组成部分;它调控其他EBP基因的启动子,包括一个对孢子形成至关重要的下游功能EBP基因。在最近的表达研究中,鉴定出数百个依赖Nla6的基因,这表明Nla6的EBP基因靶点可能是一个大得多的调控子的一部分。本研究的目的是鉴定和表征属于Nla6调控子的基因。因此,通过体外和体内突变分析鉴定出Nla6的一个直接重复序列[共有序列,C(C/A)ACGNNGNC]结合位点,随后利用该序列找到40个潜在的发育启动子(88个基因)靶点。我们证明Nla6在体外与四个新靶点(asgE、exo、MXAN2688和MXAN3259)的启动子区域结合,并且Nla6对它们在体内的正常表达很重要。表型研究表明,Nla6所有经实验证实的靶点主要参与孢子形成。这些靶点包括参与转录调控、细胞间信号产生以及孢子分化和成熟的基因。尽管孢子形成发生在发育后期,但这里分析的所有发育位点在饥饿诱导后不久都显示出依赖Nla6的表达激增。这一发现表明,Nla6在发育过程很早的时候就开始让细胞为孢子形成做准备。

重要性

细菌发育产生了一系列显著复杂的多细胞形式。一种常见于自然界的形式是称为生物膜的细胞表面相关聚集体。成熟的生物膜结构复杂,含有对抗菌剂高度抗性的细胞。饥饿时,模式细菌粘球菌形成一种生物膜,其中包含一层薄的细胞垫和容纳一种称为粘孢子高度抗性细胞类型的多细胞结构。在这里,我们鉴定了转录激活因子Nla6的启动子结合位点,鉴定了Nla6调控子中的基因,并表明Nla6调控子中的几个基因对饥饿诱导的粘球菌生物膜中抗逆孢子的产生很重要。

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