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首页> 外文期刊>Biochemistry >Electrostatic interactions during acidic phospholipid reactivation of DnaA protein, the Escherichia coli initiator of chromosomal replication.
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Electrostatic interactions during acidic phospholipid reactivation of DnaA protein, the Escherichia coli initiator of chromosomal replication.

机译:DnaA蛋白(染色体复制的大肠杆菌引发剂)的酸性磷脂激活过程中的静电相互作用。

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摘要

The initiation of Escherichia coli chromosomal replication by DnaA protein is strongly influenced by the tight binding of the nucleotides ATP and ADP. Anionic phospholipids in a fluid bilayer promote the conversion of inactive ADP-DnaA protein to replicatively active ATP-DnaA protein in vitro, and thus likely play a key role in regulating DnaA activity. Previous studies have revealed that, during this reactivation, a specific region of DnaA protein inserts into the hydrophobic portion of the lipid bilayer in an acidic phospholipid-dependent manner. To elucidate the requirement for acidic phospholipids in the reactivation process, the contribution of electrostatic forces in the interaction of DnaA and lipid was examined. DnaA-lipid binding required anionic phospholipids, and DnaA-lipid binding as well as lipid-mediated release of DnaA-bound nucleotide were inhibited by increased ionic strength, suggesting the involvement of electrostatic interactions in these processes. As the vesicular content of acidic phospholipids was increased, both nucleotide release and DnaA-lipid binding increased in a linear, parallel manner. Given that DnaA-membrane binding, the insertion of DnaA into the membrane, and the consequent nucleotide release all require anionic phospholipids, the acidic headgroup may be necessary to recruit DnaA protein to the membrane for insertion and subsequent reactivation for replication.
机译:DnaA蛋白启动大肠杆菌染色体复制受到核苷酸ATP和ADP紧密结合的强烈影响。流体双层中的阴离子磷脂在体外促进非活性ADP-DnaA蛋白向具有复制活性的ATP-DnaA蛋白的转化,因此可能在调节DnaA活性中起关键作用。先前的研究表明,在此重新激活过程中,DnaA蛋白的特定区域以酸性磷脂依赖的方式插入脂质双层的疏水部分。为了阐明在重新激活过程中对酸性磷脂的要求,研究了静电力在DnaA和脂质相互作用中的作用。 DnaA-脂质结合需要阴离子磷脂,DnaA-脂质结合以及脂质介导的DnaA结合核苷酸的释放受到离子强度增加的抑制,表明静电相互作用参与了这些过程。随着酸性磷脂的囊泡含量增加,核苷酸释放和DnaA-脂质结合均以线性,平行方式增加。考虑到DnaA膜的结合,将DnaA插入膜中以及随后的核苷酸释放都需要阴离子磷脂,酸性头基对于将DnaA蛋白募集到膜上以进行插入和随后的活化以进行复制可能是必需的。

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