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Defining the Functionally Important Domain and Amino Acid Residues in Mycobacterium tuberculosis Integration Host Factor for Genome Stability, DNA Binding, and Integrative Recombination

机译:为基因组稳定性,DNA结合和整合重组定义结核分枝杆菌整合宿主因子中功能上重要的结构域和氨基酸残基

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摘要

The integration host factor of Mycobacterium tuberculosis (mIHF) consists of a single polypeptide chain, the product of the ihf gene. We previously revealed that mIHF is a novel member of a new class of nucleoid-associated proteins that have important roles in DNA damage response, nucleoid compaction, and integrative recombination. The mIHF contains a region of 86 amino acids at its N terminus, absent from both alpha- and beta-subunits of Escherichia coli IHF. However, the functional significance of an extra 86-amino-acid region in the full-length protein remains unknown. Here, we report the structure/function relationship of the DNA-binding and integrative recombination-stimulating activity of mIHF. Deletion mutagenesis showed that an extra 86-amino-acid region at the N terminus is dispensable; the C-terminal region possesses the sequences essential for its known biological functions, including the ability to suppress the sensitivity of E. coli Delta ihfA and.ihfB cells to DNA-damaging agents, DNA binding, DNA multimerization-circularization, and stimulation of phage L5 integrase-catalyzed integrative recombination. Single and double alanine substitutions at positions Arg170 and Arg171, located at the mIHF DNA-binding site, abrogated its capacity to suppress the sensitivity of E. coli Delta ihfA and.ihfB cells to DNA-damaging agents. The variants encoded by these mutant alleles failed to bind DNA and stimulate integrative recombination. Interestingly, the DNA-binding activity of the mIHF-R173A variant remained largely unaffected; however, it was unable to stimulate integrative recombination, thus revealing a separation-of-function allele of mIHF. The functional and structural characterization of this separation-of-function allele of mIHF could reveal previously unknown functions of IHF. IMPORTANCE The integration host factor of Mycobacterium tuberculosis is a novel nucleoid-associated protein. mIHF plays a vital role in DNA damage response, nucleoid compaction, and integrative recombination. Intriguingly, mIHF contains an extra 86-amino-acid region at its N terminus, absent from both alpha- and beta-subunits of Escherichia coli IHF, whose functional significance is unknown. Furthermore, a triad of arginine residues located at the mIHF-DNA interface have been implicated in a range of its functions. Here, we reveal the roles of N-and C-terminal regions of mIHF and the individual residues in the Arg triad for their ability to provide protection in vivo against DNA damage, bind DNA, and stimulate integrase-catalyzed site-specific recombination.
机译:结核分枝杆菌(mIHF)的整合宿主因子由一条多肽链(ihf基因的产物)组成。我们以前发现,mIHF是一类新型的类核苷酸相关蛋白,在DNA损伤反应,类核苷酸紧实和整合重组中具有重要作用。 mIHF在其N末端包含86个氨基酸的区域,而大肠杆菌IHF的α和β亚基都不存在。但是,全长蛋白质中额外的86个氨基酸区域的功能意义仍然未知。在这里,我们报告了mIHF DNA结合和整合重组刺激活性的结构/功能关系。缺失诱变表明,在N末端有一个额外的86个氨基酸区域是可有可无的。 C端区域具有对其已知生物学功能必不可少的序列,包括抑制大肠杆菌Delta ihfA和ihfB细胞对DNA破坏剂的敏感性,DNA结合,DNA多聚化环化和噬菌体刺激的能力。 L5整合酶催化的整合重组。位于mIHF DNA结合位点的Arg170和Arg171处的单和双丙氨酸取代,取消了其抑制大肠杆菌Delta ihfA和ihfB细胞对DNA破坏剂敏感性的能力。这些突变等位基因编码的变体无法结合DNA,并刺激整合重组。有趣的是,mIHF-R173A变体的DNA结合活性在很大程度上未受影响。然而,它不能刺激整合重组,从而揭示了mIHF的功能分离等位基因。 mIHF的功能分离等位基因的功能和结构表征可以揭示IHF以前未知的功能。重要结核分枝杆菌的整合宿主因子是一种新型的核苷酸相关蛋白。 mIHF在DNA损伤反应,核苷紧实和整合重组中起着至关重要的作用。有趣的是,mIHF在其N末端含有一个额外的86个氨基酸区域,而大肠杆菌IHF的α和β亚基均不存在,其功能意义尚不清楚。此外,位于mIHF-DNA界面的精氨酸残基三联体也涉及其一系列功能。在这里,我们揭示了mIHF的N和C端区域以及Arg三联体中各个残基的作用,因为它们能够在体内提供针对DNA损伤的保护作用,结合DNA并刺激整合酶催化的位点特异性重组。

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