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首页> 外文期刊>Biochemistry >Structure and Function of the Universal Stress Protein TeaD and Its Role in Regulating the Ectoine Transporter TeaABC of Halomonas elongata DSM 2581T5
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Structure and Function of the Universal Stress Protein TeaD and Its Role in Regulating the Ectoine Transporter TeaABC of Halomonas elongata DSM 2581T5

机译:通用应激蛋白TeaD的结构和功能及其在调控Halomonas elongata DSM 2581T5的电子转运蛋白TeaABC中的作用

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摘要

The halophilic bacterium Halomonas elongata takes up the compatible solute ectoine via the osmoregulated TRAP transporter TeaABC. A fourth orf (teaD) is located adjacent to the teaABC locus that encodes a putative universal stress protein (USP). By RT-PCR experiments we proved a cotranscription of teaD along with teaABC. Deletion of teaD resulted in an enhanced uptake for ectoine by the transporter TeaABC and hence a negative activity regulation of TeaABC by TeaD. A transcriptional regulation via DNA binding could be excluded. ATP binding to native TeaD was shown by HPLC, and the crystal structure of TeaD was solved in complex with ATP to a resolution of 1.9 A by molecular replacement. TeaD forms a dimer—dimer complex with one ATP molecule bound to each monomer, which has a Rossmann-like a//3 overall fold. Our results reveal an ATP-dependent oligomerization of TeaD, which might have a functional role in the regulatory mechanism of TeaD. USP-encoding orf), which are located adjacent to genes encoding for TeaABC homologues, could be identified in several other organisms, and their physiological role in balancing the internal cellular ectoine pool is discussed.
机译:嗜盐细菌长单胞菌Halomonas elongata通过渗透调节的TRAP转运蛋白TeaABC吸收了相容的溶质素。第四个orf(teaD)位于teaABC基因座附近,该基因座编码假定的普遍应激蛋白(USP)。通过RT-PCR实验,我们证明了teaD与teaABC的共转录。删除teaD会导致转运蛋白TeaABC对ectoine的吸收增加,从而导致TeaD对TeaABC的负活性调节。可以排除通过DNA结合的转录调控。 HPLC显示ATP与天然TeaD的结合,并且通过分子置换将TeaD的晶体结构与ATP复合解析为1.9A的分辨率。 TeaD形成一个二聚体-二聚体复合物,每个单体结合一个ATP分子,其整体折叠度类似于Rossmann的a // 3。我们的结果揭示了TeaD的ATP依赖性寡聚化,这可能在TeaD的调控机制中具有功能性作用。可以在其他几种生物中鉴定出与编码TeaABC同源基因的基因相邻的USP编码orf),并讨论了它们在平衡内部细胞外泌素池中的生理作用。

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