NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS

The aim of this work was evaluation of binding affinity of thiamine to malate dehydrogenase isoforms. The methods of affinity chromatography, SDS PAGE electrophoresis, and MALDI-TOF mass spectroscopy, as well as molecular modeling in silico were used in the study. Affinity sorbent (T-AS) contained C...

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Main Authors: O. Mezhenska, A. Rebriev, O. Kobzar, N. Zlatoust, A. Vovk, Yu. Parkhomenko
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine. 2020-08-01
Series:Biotechnologia Acta
Subjects:
Online Access:http://biotechnology.kiev.ua/images/storage/4_2020/mezhenska_4_2020.pdf
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spelling doaj-26a1017ccc7d41029a91f3c85d49a93f2020-11-25T03:26:58ZengNational Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.Biotechnologia Acta2410-77512410-776X2020-08-01134263810.15407/biotech13.04.026NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMSO. Mezhenska0A. Rebriev1O. Kobzar2N. Zlatoust 3A. Vovk4Yu. Parkhomenko5 Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine, Kyiv Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine, KyivKukhar Institute of Bioorganic Chemistry and Petrochemistry of the National Academy of Sciences of Ukraine, Kyiv Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine, KyivKukhar Institute of Bioorganic Chemistry and Petrochemistry of the National Academy of Sciences of Ukraine, Kyiv Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine, KyivThe aim of this work was evaluation of binding affinity of thiamine to malate dehydrogenase isoforms. The methods of affinity chromatography, SDS PAGE electrophoresis, and MALDI-TOF mass spectroscopy, as well as molecular modeling in silico were used in the study. Affinity sorbent (T-AS) contained C2-conjugated thiamine fragment as an anchor which was bound to activated Sepharose 4B via a spacer composed of N-4-azobenzoylcaproic acid hydrazide. A commercial preparation of MDH from the porcine heart was chosen for the experimental study. Analysis of the protein content in fractions performed by the Bradford method showed that three separate protein peaks with malate dehydrogenase activity were obtained after elution with a thiamine solution. The results of one-dimensional electrophoresis of the initial MDH preparation and pooled fraction of proteins which were eluted from the affinity sorbent with a thiamine solution demonstrated that almost all protein fractions detected in the commercial MDH preparation were also present in eluates obtained by T-AS affinity chromatography. Four isoforms of MDH, including cytoplasmic malate dehydrogenase (MDH1), mitochondrial malate dehydrogenase (MDH2) and its isoform, and malate dehydrogenase 1B (MDH1B) were specifically bound to the affinity sorbent. According to the molecular docking results, the most preferred for both monomeric and homodimeric MDH1 and MDH2 could be ligand position at the NAD (NADH) binding site. Additional binding site could be located between two subunits of the homodimeric form of enzyme. Our results confirm the previously obtained data and expand an idea of ability of MDH isoforms to interact with the thiamine molecule in vivo. These data can also be useful for identification of thiamine binding protein (ThBP) which was previously isolated from rat brain, taking into account the possible partial homology of this protein with proteins that show MDH activity.http://biotechnology.kiev.ua/images/storage/4_2020/mezhenska_4_2020.pdfthiamineaffinity chromatographymalate dehydrogenaseprotein affinity for thiaminemolecular dockingthiamine binding protein.
collection DOAJ
language English
format Article
sources DOAJ
author O. Mezhenska
A. Rebriev
O. Kobzar
N. Zlatoust
A. Vovk
Yu. Parkhomenko
spellingShingle O. Mezhenska
A. Rebriev
O. Kobzar
N. Zlatoust
A. Vovk
Yu. Parkhomenko
NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
Biotechnologia Acta
thiamine
affinity chromatography
malate dehydrogenase
protein affinity for thiamine
molecular docking
thiamine binding protein.
author_facet O. Mezhenska
A. Rebriev
O. Kobzar
N. Zlatoust
A. Vovk
Yu. Parkhomenko
author_sort O. Mezhenska
title NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
title_short NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
title_full NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
title_fullStr NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
title_full_unstemmed NON-COENZYME PROPERTIES OF THIAMINE: EVALUATION OF BINDING AFFINITY TO MALATE DEHYDROGENASE ISOFORMS
title_sort non-coenzyme properties of thiamine: evaluation of binding affinity to malate dehydrogenase isoforms
publisher National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.
series Biotechnologia Acta
issn 2410-7751
2410-776X
publishDate 2020-08-01
description The aim of this work was evaluation of binding affinity of thiamine to malate dehydrogenase isoforms. The methods of affinity chromatography, SDS PAGE electrophoresis, and MALDI-TOF mass spectroscopy, as well as molecular modeling in silico were used in the study. Affinity sorbent (T-AS) contained C2-conjugated thiamine fragment as an anchor which was bound to activated Sepharose 4B via a spacer composed of N-4-azobenzoylcaproic acid hydrazide. A commercial preparation of MDH from the porcine heart was chosen for the experimental study. Analysis of the protein content in fractions performed by the Bradford method showed that three separate protein peaks with malate dehydrogenase activity were obtained after elution with a thiamine solution. The results of one-dimensional electrophoresis of the initial MDH preparation and pooled fraction of proteins which were eluted from the affinity sorbent with a thiamine solution demonstrated that almost all protein fractions detected in the commercial MDH preparation were also present in eluates obtained by T-AS affinity chromatography. Four isoforms of MDH, including cytoplasmic malate dehydrogenase (MDH1), mitochondrial malate dehydrogenase (MDH2) and its isoform, and malate dehydrogenase 1B (MDH1B) were specifically bound to the affinity sorbent. According to the molecular docking results, the most preferred for both monomeric and homodimeric MDH1 and MDH2 could be ligand position at the NAD (NADH) binding site. Additional binding site could be located between two subunits of the homodimeric form of enzyme. Our results confirm the previously obtained data and expand an idea of ability of MDH isoforms to interact with the thiamine molecule in vivo. These data can also be useful for identification of thiamine binding protein (ThBP) which was previously isolated from rat brain, taking into account the possible partial homology of this protein with proteins that show MDH activity.
topic thiamine
affinity chromatography
malate dehydrogenase
protein affinity for thiamine
molecular docking
thiamine binding protein.
url http://biotechnology.kiev.ua/images/storage/4_2020/mezhenska_4_2020.pdf
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