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Structural and functional characterization of the transcriptional repressor CsoR from Thermus thermophilus HB8

机译:来自热嗜热HB8的转录阻遏物CSOR的结构和功能表征

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The TTHA1719 gene from Thermus thermophilus HB8 encodes an orthologue of the copper-sensing transcriptional repressor CsoR. X-ray crystal structure analysis of T. thermophilus CsoR indicated that it forms a homotetramer. The structures of the CsoR monomer and dimer are similar to those of Mycobacterium tuberculosis CsoR. In the absence of copper ions, T. thermophilus CsoR bound to the promoter region of the copper-sensitive operon copZ-csoR-copA, which encodes the copper chaperone CopZ, CsoR and the copper efflux P-type ATPase CopA, to repress their expression, while in the presence of approximately an equal amount of copper ion, CsoR was released from the DNA, to allow expression of the downstream genes. Both Cu(II) and Cu(I) ions could bind CsoR, and were effective for transcriptional derepression. Additionally, CsoR could also sense various other metal ions, such as Zn(II), Ag(I), Cd(II) and Ni(II), which led to transcriptional derepression. The copper-binding motif of T. thermophilus CsoR contains C-H-H, while those of most orthologues contain C-H-C. The X-ray crystal structure of T. thermophilus CsoR suggests that a histidine residue in the N-terminal domain is also involved in metal-ion binding; that is, the binding motif could be H-C-H-H, like that of Escherichiacoli RcnR, which binds Ni(II)/Co(II). The non-conserved H70 residue in the metal-binding motif of T. thermophilus CsoR is important for its DNA-binding affinity and metal-ion responsiveness.
机译:来自Hexthevus Hotherulus HB8的TTHA1719基因编码铜传感转录抑制体CSOR的正向性。 T.Mirthophilus CSOR的X射线晶体结构分析表明它形成同种带状体。 CSOR单体和二聚体的结构类似于结核分枝杆菌CSOR的结构。在没有铜离子的情况下,嗜热素CSOR与铜敏感型摩尔康的促进剂区结合,它们编码铜伴侣COPZ,CSOR和铜渗透P型ATPASE COPA,以抑制它们的表达,而在大致相等量的铜离子存在下,CSOR被从DNA释放,以允许下游基因的表达。 Cu(II)和Cu(I)离子均可结合CSOR,并对转录Dereplatess有效。另外,CSOR还可以感测各种其他金属离子,例如Zn(II),Ag(I),CD(II)和Ni(II),其导致转录Dereplatession。 T.Mirthophilus CSOR的铜结合基序含有C-H-H,而大多数直肠的含量含有C-H-C。 T.Thermophilus CSOR的X射线晶体结构表明N-末端结构域中的组氨酸残基也参与金属离子结合;也就是说,结合基序可以是H-C-H-H,如Escherichiacoli RCNR的H-C-H-H,其结合Ni(II)/ CO(II)。 T.Thermophilus CSOR金属结合基序中的非保守H70残基对其DNA结合亲和力和金属离子反应性很重要。

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