首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Effects of pH and ionic strength on the assembly and bundling of FtsZ protofilaments: A possible role of electrostatic interactions in the bundling of protofilaments
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Effects of pH and ionic strength on the assembly and bundling of FtsZ protofilaments: A possible role of electrostatic interactions in the bundling of protofilaments

机译:pH和离子强度对FtsZ原型丝束组装和捆绑的影响:静电相互作用在原型丝束捆绑中的可能作用

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Assembly, bundling and stability of FtsZ protofilaments are important for the formation and functioning of the cytokinetic Z-ring during bacterial division. We found that the bundling of FtsZ protofilaments decreased strongly with increasing pH from 6.0 to 7.9, while the assembly of FtsZ monomers did not decrease considerably. In addition, the disassembly of FtsZ protofilaments was strongly suppressed at pH 6.0 as compared to the elevated pHs. The far-UV circular dichroism spectra of the native FtsZ and the tryptophan emission spectra of mutated FtsZ (Y371W) did not change by increasing pH from 6 to 7.9 indicating that the structure of FtsZ was not altered significantly. Further, the inhibition of bundling of FtsZ protofilaments predominantly, and the inhibition of assembly to a lesser extent by salt indicated that electrostatic interactions are important for the assembly and bundling of FtsZ protofilaments. These observations are supported by the results of computational docking of Escherichia coli dimer structure. The results suggest that the basic intracellular pH (7.4-7.8) of E. coli may play a role in regulating the assembly dynamics of FtsZ in the Z-fing by reducing protofilament stability and bundling in bacterial cytoplasm. (c) 2006 Elsevier B.V. All rights reserved.
机译:FtsZ原型丝的组装,捆绑和稳定性对于细菌分裂过程中细胞动力学Z环的形成和功能很重要。我们发现,随着pH从6.0增加到7.9,FtsZ原型丝的束缚大大降低,而FtsZ单体的组装没有明显减少。另外,与升高的pH相比,在pH 6.0下FtsZ原丝的分解被强烈抑制。 pH值从6增加到7.9不会改变天然FtsZ的远紫外圆二色性光谱和突变的FtsZ(Y371W)的色氨酸发射光​​谱,表明FtsZ的结构没有明显改变。此外,主要是抑制FtsZ原丝的束缚,而对组装的抑制作用则被盐抑制的程度较小,这表明静电相互作用对于FtsZ原丝的组装和束缚很重要。这些观察结果得到了大肠杆菌二聚体结构的计算对接的结果。结果表明,大肠杆菌的基本细胞内pH(7.4-7.8)可能通过降低原丝的稳定性和在细菌细胞质中的聚集来调节Z-fing中FtsZ的装配动力学。 (c)2006 Elsevier B.V.保留所有权利。

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