首页> 外文期刊>Journal of Molecular Biology >Vibrio cholerae YaeO is a Structural Homologue of RNA Chaperone Hfq that Inhibits Rho-dependent Transcription Termination by Dissociating its Hexameric State
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Vibrio cholerae YaeO is a Structural Homologue of RNA Chaperone Hfq that Inhibits Rho-dependent Transcription Termination by Dissociating its Hexameric State

机译:Vibrio Cholerae Yaeo是RNA伴侣HFQ的结构性同源物,通过解离其六偏见状态来抑制RHO依赖性转录终止

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Rho-dependent transcription termination is a well-conserved process in bacteria. The Psu and YaeO proteins are the two established inhibitors of the ATP-dependent RNA helicase Rho protein of Escherichia coli. Here, we show a detailed sequence and phylogenetic analysis demonstrating that Vibrio cholerae YaeO (VcYaeO) is significantly distinct from its E. coli counterpart. VcYaeO induces significant growth defect on in vivo expression and inhibits in vitro functions of the V. cholerae Rho on directly binding to the latter. Through various biophysical techniques, we showed that interaction of VcYaeO disrupts the oligomeric state of the VcRho. Structure of VcYaeQ solved at 1.75 angstrom resolution, the first crystal structure of a YaeO protein, demonstrates a beta-sandwich fold distinct from the NMR structure of the EcYaeO. Interestingly, VcYaeO structurally resembles the Hfq protein, and like the latter, it exhibits ssDNA/RNA-binding properties. Docking studies demonstrate probable interactions of VcYaeO with VcRho and mode of inhibition of RNA binding to Rho. We propose that VcYaeO inhibits the function of the Rho protein via disruption of the latter's hexameric assembly and also likely by sequestering the RNA from the Rho primarybinding sites. (C) 2019 Elsevier Ltd. All rights reserved.
机译:Rho依赖性转录终止是细菌中的保守过程。 PSU和YAEO蛋白质是大肠杆菌的ATP依赖性RNA螺旋酶RHO蛋白的两种已建立的抑制剂。在这里,我们展示了详细的序列和系统发育分析,证明了Vibrio Cholerae Yaeo(vcyaeo)显着不同于其大肠杆菌对应物。 vcyaeo在体内表达中诱导显着的生长缺陷,抑制V.霍乱rho与后者直接结合的体外功能。通过各种生物物理技术,我们表明,VCYAEO的相互作用破坏了VCRHO的低聚状态。 Vcyaeq的结构在1.75埃焦分辨率下解决,YAEO蛋白的第一晶体结构,表现出与Ecyaeo的NMR结构不同的β-夹心折叠。有趣的是,Vcyaeo在结构上类似于HFQ蛋白,并且如后者,它表现出SSDNA / RNA结合性质。对接研究证明了VCYAEO与VCRHO的可能相互作用和RNA与RHO结合的抑制模式。我们提出Vcyaeo通过破坏后者的六聚集组件的破坏而抑制Rho蛋白的功能,并且还可能通过从rhO基地弯曲部位螯合RNA。 (c)2019 Elsevier Ltd.保留所有权利。

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