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确定细菌Lon蛋白酶中用于DNA结合和处理与DNA相互作用底物的关键结构域和氨基酸残基。

Defining the crucial domain and amino acid residues in bacterial Lon protease for DNA binding and processing of DNA-interacting substrates.

作者信息

Karlowicz Anna, Wegrzyn Katarzyna, Gross Marta, Kaczynska Dagmara, Ropelewska Malgorzata, Siemiątkowska Małgorzata, Bujnicki Janusz M, Konieczny Igor

机构信息

From the Department of Molecular and Cellular Biology, Intercollegiate Faculty of Biotechnology, University of Gdansk, Abrahama 58, 80-307 Gdansk, Poland.

Laboratory of Bioinformatics and Protein Engineering, International Institute of Molecular and Cell Biology in Warsaw, Księcia Trojdena 4, 02-109 Warsaw, Poland, and.

出版信息

J Biol Chem. 2017 May 5;292(18):7507-7518. doi: 10.1074/jbc.M116.766709. Epub 2017 Mar 14.

Abstract

Lon protease previously has been shown to interact with DNA, but the role of this interaction for Lon proteolytic activity has not been characterized. In this study, we used truncated Lon constructs, bioinformatics analysis, and site-directed mutagenesis to identify Lon domains and residues crucial for Lon binding with DNA and effects on Lon proteolytic activity. We found that deletion of Lon's ATPase domain abrogated interactions with DNA. Substitution of positively charged amino acids in this domain in full-length Lon with residues conferring a net negative charge disrupted binding of Lon to DNA. These changes also affected the degradation of nucleic acid-binding protein substrates of Lon, intracellular localization of Lon, and cell morphology. tests revealed that Lon-DNA interactions are essential for Lon activity in cell division control. In summary, we demonstrate that the ability of Lon to bind DNA is determined by its ATPase domain, that this binding is required for processing protein substrates in nucleoprotein complexes, and that Lon may help regulate DNA replication in response to growth conditions.

摘要

Lon蛋白酶此前已被证明可与DNA相互作用,但这种相互作用对Lon蛋白水解活性的作用尚未得到表征。在本研究中,我们使用截短的Lon构建体、生物信息学分析和定点诱变来鉴定对Lon与DNA结合以及对Lon蛋白水解活性有影响的Lon结构域和残基。我们发现,Lon的ATP酶结构域缺失消除了与DNA的相互作用。用赋予净负电荷的残基取代全长Lon中该结构域带正电荷的氨基酸会破坏Lon与DNA的结合。这些变化还影响了Lon的核酸结合蛋白底物的降解、Lon的细胞内定位和细胞形态。测试表明,Lon与DNA的相互作用对于Lon在细胞分裂控制中的活性至关重要。总之,我们证明Lon与DNA结合的能力由其ATP酶结构域决定,这种结合是处理核蛋白复合物中蛋白质底物所必需的,并且Lon可能有助于根据生长条件调节DNA复制。

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