Literature DB >> 30207701

Characterization of Catalytic Activities and Heme Coordination Structures of Heme-DNA Complexes Composed of Some Chemically Modified Hemes and an All Parallel-Stranded Tetrameric G-Quadruplex DNA Formed from d(TTAGGG).

Ryosuke Shinomiya1, Yuya Katahira1, Haruka Araki1, Tomokazu Shibata1, Atsuya Momotake1, Sachiko Yanagisawa2, Takashi Ogura2, Akihiro Suzuki3, Saburo Neya4, Yasuhiko Yamamoto1,5,6.   

Abstract

Heme binds selectively to the 3'-terminal G-quartet (G6 G-quartet) of an all parallel-stranded tetrameric G-quadruplex DNA, [d(TTAGGG)]4, to form a heme-DNA complex. Complexes between [d(TTAGGG)]4 and a series of chemically modified hemes possessing a heme Fe atom with a variety of electron densities were characterized in terms of their peroxidase activities to evaluate the effect of a change in the electron density of the heme Fe atom (ρFe) on their activities. The peroxidase activity of a complex decreased with a decreasing ρFe, supporting the idea that the activity of the complex is elicited through a reaction mechanism similar to that of a peroxidase. In the ferrous heme-DNA complex, carbon monoxide (CO) can bind to the heme Fe atom on the side of the heme opposite the G6 G-quartet, and a water molecule (H2O) is coordinated to the Fe atom as another axial ligand, trans to the CO. The stretching frequencies of Fe-bound COCO) and the Fe-C bond (νFe-C) of CO adducts of the heme-DNA complexes were determined to investigate the structural and electronic natures of the axial ligands coordinated to the heme Fe atom. Comparison of the νCO and νFe-C values of the heme-DNA complexes with those of myoglobin (Mb) revealed that the donor strength of the axial ligation trans to the CO in a complex is considerably weaker than that of the proximal histidine in Mb, as expected from the coordination of H2O trans to the CO in the complex.

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Year:  2018        PMID: 30207701     DOI: 10.1021/acs.biochem.8b00793

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  3 in total

1.  A heme•DNAzyme activated by hydrogen peroxide catalytically oxidizes thioethers by direct oxygen atom transfer rather than by a Compound I-like intermediate.

Authors:  Nisreen M Shumayrikh; Jeffrey J Warren; Andrew J Bennet; Dipankar Sen
Journal:  Nucleic Acids Res       Date:  2021-02-26       Impact factor: 16.971

2.  Human ribosomal G-quadruplexes regulate heme bioavailability.

Authors:  Santi Mestre-Fos; Chieri Ito; Courtney M Moore; Amit R Reddi; Loren Dean Williams
Journal:  J Biol Chem       Date:  2020-08-13       Impact factor: 5.157

3.  G-quadruplex-forming aptamer enhances the peroxidase activity of myoglobin against luminol.

Authors:  Kaori Tsukakoshi; Yasuko Yamagishi; Mana Kanazashi; Kenta Nakama; Daiki Oshikawa; Nasa Savory; Akimasa Matsugami; Fumiaki Hayashi; Jinhee Lee; Taiki Saito; Koji Sode; Kanjana Khunathai; Hitoshi Kuno; Kazunori Ikebukuro
Journal:  Nucleic Acids Res       Date:  2021-06-21       Impact factor: 16.971

  3 in total

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