DNA Aptamer Targets Mycobacterium tuberculosis DevR/DosR Response Regulator Function by Inhibiting Its Dimerization and DNA Binding Activity

被引:7
作者
Chauhan, Priyanka [1 ,2 ]
Datta, Ishara [1 ,3 ]
Dhiman, Abhijeet [1 ]
Shankar, Uma [4 ]
Kumar, Amit [4 ]
Vashist, Atul [1 ,5 ]
Sharma, Tarun Kumar [6 ,7 ]
Tyagi, Jaya Sivaswami [1 ]
机构
[1] All India Inst Med Sci, Dept Biotechnol, New Delhi 110029, India
[2] Vrije Univ Amsterdam, Amsterdam Inst Life & Environm A LIFE, Fac Sci, AIMMS, Boelelaan 1108, NL-1081 HZ Amsterdam, Netherlands
[3] Be Biopharma Inc, One Kendall Sq, Cambridge, MA 02139 USA
[4] Indian Inst Technol Indore, Dept Biosci & Biomed Engn, Indore 453552, India
[5] Translat Hlth Sci & Technol Inst THSTI, Dept Infect & Immunol, Faridabad 121001, Haryana, India
[6] Translat Hlth Sci & Technol Inst THSTI, Faridabad 121001, Haryana, India
[7] Gujarat Biotechnol Univ GBU, Dept Med Biotechnol, Gandhinagar 382355, Gujarat, India
关键词
aptamer; G-quadruplex; Mycobacterium; dormancy; DevR; DosR inhibitor; DOSR REGULON; DEVR DOSR; ADAPTATION; BIOTIN; ACTIVATION; EXPRESSION; PROTEIN; TRANSCRIPTION; BIOSYNTHESIS; MOLECULES;
D O I
10.1021/acsinfecdis.2c00414
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Tuberculosis is recognized as one of the major public health threats worldwide. The DevR-DevS (DosR/DosS) two-component system is considered a novel drug target in Mycobacterium tuberculosis (Mtb), the etiological agent of tuberculosis, owing to its central role in bacterial adaptation and long-term persistence. An increase in DevR levels and the decreased permeability of the mycobacterial cell wall during hypoxiaassociated dormancy pose formidable challenges to the development of antiDevR compounds. Using an in vitro evolution approach of Systematic Evolution of Ligands by EXponential enrichment (SELEX), we developed a panel of single-stranded DNA aptamers that interacted with Mtb DevR protein in solid-phase binding assays. The best-performing aptamer, APT-6, forms a G-quadruplex structure and inhibits DevR-dependent transcription in Mycobacterium smegmatis. Mechanistic studies indicate that APT-6 functions by inhibiting the dimerization and DNA binding activity of DevR protein. In silico studies reveal that APT-6 interacts majorly with C terminal domain residues that participate in DNA binding and formation of active dimer species of DevR. To the best of our knowledge, this is the first report of a DNA aptamer that inhibits the function of a cytosolic bacterial response regulator. By inhibiting the dimerization of DevR, APT-6 targets an essential step in the DevR activation mechanism, and therefore, it has the potential to universally block the expression of DevR-regulated genes for intercepting dormancy pathways in mycobacteria. These findings also pave the way for exploring aptamer-based approaches to design and develop potent inhibitors against intracellular proteins of various bacterial pathogens of global concern.
引用
收藏
页码:2540 / 2551
页数:12
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