INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING

The aim of the present study was to find out the role of Ruk/CIN85 in modulation of activities/content of key enzymes/components of glycolysis and hydrogen peroxide using as a model human NSCLC MOR wild type and resistant to drugs MOR/0.2R cells. Materials and methods. MOR (ECACC 84112312) and M...

Full description

Bibliographic Details
Main Authors: Y.S.RAYNICH, T.D. SKATERNA, D.S. GERASHENKO, O. O. HUDKOVA, T. O. KISHKO, N. V. LATYSHKO
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry 2023-04-01
Series:Biotechnologia Acta
Subjects:
Online Access:https://biotechnology.kiev.ua/images/BTA/2023/2_2023/Raynich_2_2023.pdf
_version_ 1797772898030583808
author Y.S.RAYNICH
T.D. SKATERNA
D.S. GERASHENKO
O. O. HUDKOVA
T. O. KISHKO
N. V. LATYSHKO
author_facet Y.S.RAYNICH
T.D. SKATERNA
D.S. GERASHENKO
O. O. HUDKOVA
T. O. KISHKO
N. V. LATYSHKO
author_sort Y.S.RAYNICH
collection DOAJ
description The aim of the present study was to find out the role of Ruk/CIN85 in modulation of activities/content of key enzymes/components of glycolysis and hydrogen peroxide using as a model human NSCLC MOR wild type and resistant to drugs MOR/0.2R cells. Materials and methods. MOR (ECACC 84112312) and MOR/0.2R (ECACC 96042335), drug-resistant cell line, were cultured in the complete RPMI medium under standard conditions. Enzymes activity, content of metabolites and protein in cell extracts and the conditioned cell culture medium were estimated by spectrophotometric and fluorometric assays. Results. Using RT2-PCR it was revealed that the level of Ruk/CIN85 mRNA in drug-resistant MOR cells was 10 times higher than in parental MOR cells. The activities of lysyl oxidase (LOX) and diamine oxidase (DAO) were significantly higher in resistant cells It has been shown that these enzymes are associated with aggressiveness of tumor cells. Based on the obtained results, we draw a conclusion that observed changes in the intensity of glycolysis, amine oxidases activities and content of hydrogen peroxide in doxorubicin-resistant MOR/0.2R cells positively correlate with the expression level of the adaptor protein studied. Conclusions. In conclusion, it can be assumed that the adaptor protein Ruk/CIN85 is involved in metabolome reprogramming and may function as an important component of regulatory networks required for the acquisition of drug resistant phenotype by NSCLC cells.
first_indexed 2024-03-12T21:58:28Z
format Article
id doaj.art-dba8ed4a9a914cd1867fcd368692457b
institution Directory Open Access Journal
issn 2410-7751
2410-776X
language English
last_indexed 2024-03-12T21:58:28Z
publishDate 2023-04-01
publisher National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry
record_format Article
series Biotechnologia Acta
spelling doaj.art-dba8ed4a9a914cd1867fcd368692457b2023-07-25T13:39:38ZengNational Academy of Sciences of Ukraine, Palladin Institute of BiochemistryBiotechnologia Acta2410-77512410-776X2023-04-01162424310.15407/biotech16.02.042INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING Y.S.RAYNICH0T.D. SKATERNA1D.S. GERASHENKO2O. O. HUDKOVA3T. O. KISHKO4N. V. LATYSHKO5 Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv Palladin Institute of Biochemistry of NAS of Ukraine, Kyiv Palladin Institute of Biochemistry of NAS of Ukraine, KyivThe aim of the present study was to find out the role of Ruk/CIN85 in modulation of activities/content of key enzymes/components of glycolysis and hydrogen peroxide using as a model human NSCLC MOR wild type and resistant to drugs MOR/0.2R cells. Materials and methods. MOR (ECACC 84112312) and MOR/0.2R (ECACC 96042335), drug-resistant cell line, were cultured in the complete RPMI medium under standard conditions. Enzymes activity, content of metabolites and protein in cell extracts and the conditioned cell culture medium were estimated by spectrophotometric and fluorometric assays. Results. Using RT2-PCR it was revealed that the level of Ruk/CIN85 mRNA in drug-resistant MOR cells was 10 times higher than in parental MOR cells. The activities of lysyl oxidase (LOX) and diamine oxidase (DAO) were significantly higher in resistant cells It has been shown that these enzymes are associated with aggressiveness of tumor cells. Based on the obtained results, we draw a conclusion that observed changes in the intensity of glycolysis, amine oxidases activities and content of hydrogen peroxide in doxorubicin-resistant MOR/0.2R cells positively correlate with the expression level of the adaptor protein studied. Conclusions. In conclusion, it can be assumed that the adaptor protein Ruk/CIN85 is involved in metabolome reprogramming and may function as an important component of regulatory networks required for the acquisition of drug resistant phenotype by NSCLC cells. https://biotechnology.kiev.ua/images/BTA/2023/2_2023/Raynich_2_2023.pdfnon-small-cell lung carcinoma (nsclc)adaptor protein ruk/cin85chemoresistancemetabolome reprogrammingmetabolic enzymeshydrogen peroxide
spellingShingle Y.S.RAYNICH
T.D. SKATERNA
D.S. GERASHENKO
O. O. HUDKOVA
T. O. KISHKO
N. V. LATYSHKO
INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
Biotechnologia Acta
non-small-cell lung carcinoma (nsclc)
adaptor protein ruk/cin85
chemoresistance
metabolome reprogramming
metabolic enzymes
hydrogen peroxide
title INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
title_full INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
title_fullStr INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
title_full_unstemmed INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
title_short INCREASED EXPRESSION LEVEL OF ADAPTOR PROTEIN Ruk/CIN85 IN DOXORUBICIN-RESISTANT HUMAN NON-SMALL LUNG ADENOCARCINOMA MOR CELLS IS ASSOCIATED WITH THEIR METABOLIC REPROGRAMMING
title_sort increased expression level of adaptor protein ruk cin85 in doxorubicin resistant human non small lung adenocarcinoma mor cells is associated with their metabolic reprogramming
topic non-small-cell lung carcinoma (nsclc)
adaptor protein ruk/cin85
chemoresistance
metabolome reprogramming
metabolic enzymes
hydrogen peroxide
url https://biotechnology.kiev.ua/images/BTA/2023/2_2023/Raynich_2_2023.pdf
work_keys_str_mv AT ysraynich increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming
AT tdskaterna increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming
AT dsgerashenko increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming
AT oohudkova increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming
AT tokishko increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming
AT nvlatyshko increasedexpressionlevelofadaptorproteinrukcin85indoxorubicinresistanthumannonsmalllungadenocarcinomamorcellsisassociatedwiththeirmetabolicreprogramming