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DNA condensation and self-aggregation of Escherichia coli Dps are coupled phenomena related to the properties of the N-terminus

机译:大肠杆菌Dps的DNA浓缩和自聚集是与N末端特性相关的耦合现象

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Escherichia coli Dps ((d) under bar NA-binding (P) under bar roteins from (S) under bar tarved cells) is the prototype of a DNA-protecting protein family expressed by bacteria under nutritional and oxidative stress. The role of the lysine-rich and highly mobile Dps N-terminus in DNA protection has been investigated by comparing the self-aggregation and DNA-condensation capacity of wild-type Dps and two N-terminal deletion mutants, DpsDelta8 and DpsDelta18, lacking two or all three lysine residues, respectively. Gel mobility and atomic force microscopy imaging showed that at pH 6.3, both wild type and DpsDelta8 self-aggregate, leading to formation of oligomers of variable size, and condense DNA with formation of large Dps-DNA complexes. Conversely, DpsDelta18 does not self-aggregate and binds DNA without causing condensation. At pH 8.2, DpsDelta8 and DpsDelta18 neither self-aggregate nor cause DNA condensation, a behavior also displayed by wild-type Dps at pH 8.7. Thus, Dps self-aggregation and Dps-driven DNA condensation are parallel phenomena that reflect the properties of the N-terminus. DNA protection against the toxic action of Fe(II) and H2O2 is not affected by the N-terminal deletions either in vitro or in vivo, in accordance with the different structural basis of this property.
机译:大肠杆菌Dps((d)在bar NA结合蛋白下的(d)在bar tarved细胞下的(S)的bar roteins下)是细菌在营养和氧化胁迫下表达的DNA保护蛋白家族的原型。通过比较野生型Dps和两个缺少两个的N末端缺失突变体DpsDelta8和DpsDelta18的自聚集和DNA缩合能力,研究了富含赖氨酸和高度移动的Dps N末端在DNA保护中的作用。或所有三个赖氨酸残基。凝胶迁移率和原子力显微镜成像显示,在pH 6.3时,野生型和DpsDelta8都会自聚集,导致形成大小可变的寡聚物,并使DNA凝缩并形成大的Dps-DNA复合物。相反,DpsDelta18不会自聚集并结合DNA而不会引起冷凝。在pH 8.2时,DpsDelta8和DpsDelta18既不会自聚集也不会引起DNA缩合,在pH 8.7时,野生型Dps也表现出这种行为。因此,Dps自聚集和Dps驱动的DNA缩合是反映N末端特性的平行现象。根据此特性的不同结构基础,在体外或体内,针对Fe(II)和H2O2毒性作用的DNA保护不受N末端缺失的影响。

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