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首页> 外文期刊>Acta Biochimica et Biophysica Sinica >The properties of NodD were affected by mere variation in length within its hinge region
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The properties of NodD were affected by mere variation in length within its hinge region

机译:NodD的特性仅受其铰链区内长度变化的影响

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摘要

In Rhizobium leguminosarum bv. viciae, NodD, a member of the LysR-type transcriptional regulators, while auto-regulating, activates transcription of other nod genes in the presence of naringenin. A hinge region of NodD was previously identified in our laboratory as a functional region independent of its N-terminal DNA-binding and C-terminal regulatory domain. Further study was carried out to see the possible effect of the length variation in the hinge region on NodD's properties. To our surprise, as many as seven classes of phenotypes were observed. Class I is deficient of activating nodA transcription and abolishes auto-regulation; class II is able to activate nodA transcription independently of naringenin and abolishes auto-regulation; class III retains auto-regulating but partial activating ability; class IV is able to activate transcription independently of naringenin and retains auto-regulation; in class V, nodA is transcribed constitutively but the transcription level is drastically down-regulated in the presence of naringenin; in class VI, nodA is transcribed constitutively with higher induction ratio; in class VII, nodA is transcribed constitutively with lower induction ratio. To learn more about the possible mechanism, circular permutation assays were done, which showed that the length variation of the hinge of NodD caused by mutation led to the change in bend angles of nod promoter. This finding should help to get an insight into how transcriptional regulation is mediated by NodD at the molecular level as well as to understand the regulatory system of this important family.
机译:在豆科根瘤菌中。蚕豆,NodD,LysR型转录调节因子的成员,在自动调节的同时,在柚皮素存在的情况下激活其他nod基因的转录。之前在我们的实验室中,NodD的铰链区被确定为独立于其N端DNA结合和C端调节域的功能区。进行了进一步的研究,以了解铰链区长度变化对NodD性质的可能影响。令我们惊讶的是,观察到多达七类表型。 I类缺乏激活nodA转录的能力并废除了自动调节功能。 II类能够独立于柚皮苷素激活nodA转录,并消除自动调节功能; III类保留了自动调节但部分激活的能力; IV类能够独立于柚皮苷素激活转录并保持自动调节;在V类中,nodA可以组成型转录,但是在柚皮苷存在的情况下其转录水平被大大下调。在VI类中,nodA以较高的诱导率组成型转录。在VII类中,nodA以较低的诱导率组成型转录。为了了解更多可能的机制,进行了圆形置换分析,结果表明由突变引起的NodD铰链长度变化导致了nod启动子弯曲角度的变化。这一发现应有助于深入了解NodD在分子水平上如何介导转录调控,并有助于理解这一重要家族的调控系统。

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  • 来源
    《Acta Biochimica et Biophysica Sinica》 |2009年第11期|p.963-971|共9页
  • 作者单位

    State Key Laboratory of Molecular Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Graduate School of the Chinese Academy of Sciences, Shanghai 200031, China;

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