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Functional Heme Binding to the Intrinsically Disordered C-Terminal Region of Bach1, a Transcriptional Repressor

机译:函数血红结合到Bach1的本质上无序的C末端区域,转录压缩机

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Heme is one of the key factors involved in the oxidative stress response of cells. The transcriptional repressor Bach1 plays an important role in this response through its heme-binding activity. Heme inhibits the transcriptional-repressor activity of Bach1, and can occur in two binding modes: 5- and 6-coordinated binding. The Cys-Pro (CP) motif has been determined to be the heme-binding motif of Bach family proteins. The sequence of Bach1 includes six CP motifs, and four CP motifs are functional. With the aim of elucidating the molecular mechanism of heme-Bach1 regulation, we conducted biophysical analyses focusing on the C-terminal region of mouse Bach1 (residues 631-739) which is located after the bZip domain and includes one functional CP motif. UV-Vis spectroscopy indicated that the CP motif binds heme via 5-coordinated bond. A mutant, which included a cysteine to alanine substitution at the CP motif, did not show 5-coordination, suggesting that this binding mode is specific to the CP motif. Surface plasmon resonance revealed that the binding affinity and stoichiometry of heme with the Bach1 C-terminal region were K-D= 1.37 x 10(-5) M and 2.3, respectively. The circular dichroism spectrum in the near-UV region exhibited peaks for heme binding to the CP motif. No significant spectral shifts were observed in the far-UV region when samples with and without heme were compared. Therefore, disordered-ordered transition such as "coupled folding and binding" is not involved in the Bach1-heme system. Consequently, the heme response of this C-terminal region is accomplished by disorder-disorder conformational alteration.
机译:血红是细胞氧化应激响应的关键因素之一。转录阻遏物Bach1通过其血红结合活性在这种反应中起重要作用。血红素抑制BACH1的转录 - 阻遏物活性,并且可以以两种结合模式发生:5-和6-配位的结合。 Cys-Pro(CP)MOTIF已被确定为BACH系列蛋白的血红素结合基序。 Bach1的序列包括六个CP图案,四个CP图案是功能性的。旨在阐明血红素BACH1调节的分子机制,我们进行了聚焦在小鼠BACH1(残基631-739)的C末端区域的生物物理分析,其位于BZIP结构域之后,包括一种功能性CP基序。 UV-Vis光谱表明CP基序通过5配位键结合血红素。将突变体包含在CP基序在CP基序中与丙氨酸取代的突变体未显示5-配位,表明该结合模式是特异于CP基序。表面等离子体共振表明,血红素与摇滚1c末端区域的结合亲和力和化学计量分别是K-D = 1.37×10(-5)m和2.3。近紫外区域的圆形二色性谱表现出血红素峰与CP基序的峰。在与血红素的样品进行比较时,在远紫外线区域中没有观察到显着的光谱移位。因此,诸如“耦合折叠和结合”之类的无序有序的转变不参与Bach1-Heme系统。因此,该C末端区域的血红素响应是通过紊乱的构象改变来实现的。

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