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对黄色粘球菌发育至关重要的基因的组合调控涉及一个响应调节因子和一个LysR型调节因子。

Combinatorial regulation of genes essential for Myxococcus xanthus development involves a response regulator and a LysR-type regulator.

作者信息

Viswanathan Poorna, Ueki Toshiyuki, Inouye Sumiko, Kroos Lee

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 May 8;104(19):7969-74. doi: 10.1073/pnas.0701569104. Epub 2007 Apr 30.

Abstract

Myxococcus xanthus is a bacterium that undergoes multicellular development. C-signaling influences gene expression and movement of cells into aggregates. Expression of the dev operon, which includes genes essential for efficient sporulation, depends in part on C-signaling and reaches its highest level in cells within aggregates, ensuring that spores form within fruiting bodies. Here, an upstream DNA element was found to be essential for dev promoter activity and was bound by FruA, a response regulator in the C-signaling pathway. A second positive regulatory element, located approximately 350 bp downstream of the dev transcriptional start site, was bound by LadA, a newly identified transcription factor in the LysR family. Typically, LysR-type transcription factors bind upstream of the promoter and activate transcription in response to a coinducer. LadA appears to activate transcription from an unusual location for a LysR family member and likely subjects dev transcription to a different cue than does FruA. A ladA mutant exhibited similar developmental defects as dev mutants, suggesting that LadA may be devoted to dev regulation, unlike FruA, which regulates many developmental genes. FruA and LadA act on a regulatory region spanning >400 bp to bring about proper temporal and spatial expression of the dev operon, resembling the regulation of developmental genes in multicellular eukaryotes.

摘要

黄色粘球菌是一种能进行多细胞发育的细菌。C信号影响基因表达以及细胞向聚集体中的移动。dev操纵子的表达(该操纵子包含高效形成孢子所必需的基因)部分依赖于C信号,并且在聚集体中的细胞内达到最高水平,从而确保孢子在子实体中形成。在此,发现一个上游DNA元件对dev启动子活性至关重要,并且被C信号通路中的应答调节因子FruA所结合。第二个正向调节元件位于dev转录起始位点下游约350 bp处,被LysR家族中一个新鉴定的转录因子LadA所结合。通常,LysR型转录因子结合在启动子上游,并响应共诱导剂激活转录。LadA似乎从一个对于LysR家族成员来说不寻常的位置激活转录,并且可能使dev转录受到与FruA不同的信号的影响。一个ladA突变体表现出与dev突变体相似的发育缺陷,这表明与调节许多发育基因的FruA不同,LadA可能专门负责dev调控。FruA和LadA作用于一个跨越>400 bp的调控区域,以实现dev操纵子正确的时间和空间表达,这类似于多细胞真核生物中发育基因的调控。

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