Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout

A pttg gene knockout affects the functional state of erythron in mice which could be associated with structural changes in the structure of erythrocyte membranes. The pttg gene knockout causes a significant modification of fatty acids composition of erythrocyte membrane lipids by reducing the conten...

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Main Authors: О. P. Kanyuka, Ye. Z. Filyak, O. R. Kulachkovskyy, Y. L. Osyp, N. O. Sybirna
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine. 2014-04-01
Series:Ukrainian Biochemical Journal
Subjects:
Online Access:http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Kanyuka_2_14.pdf
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spelling doaj-63c3c2e2164f4140b0e8b3c92a1d6bae2020-11-24T23:56:33ZengNational Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.Ukrainian Biochemical Journal2409-49432413-50032014-04-01862414910.15407/ubj86.02.041Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockoutО. P. Kanyuka0Ye. Z. Filyak1O. R. Kulachkovskyy2Y. L. Osyp3N. O. Sybirna4Ivan Franko Lviv National University, UkraineIvan Franko Lviv National University, UkraineIvan Franko Lviv National University, UkraineLesya Ukrainka Eastern European National University, Lutsk, UkraineIvan Franko Lviv National University, UkraineA pttg gene knockout affects the functional state of erythron in mice which could be associated with structural changes in the structure of erythrocyte membranes. The pttg gene knockout causes a significant modification of fatty acids composition of erythrocyte membrane lipids by reducing the content of palmitic acid and increasing of polyunsaturated fatty acids amount by 18%. Analyzing the erythrocyte surface architectonics of mice under pttg gene knockout, it was found that on the background of reduction of the functionally complete biconcave discs population one could observe an increase of the number of transformed cells at different degeneration stages. Researches have shown that in mice with a pttg gene knockout compared with a control group of animals cytoskeletal protein – β-spectrin was reduced by 17.03%. However, there is a reduction of membrane protein band 3 by 33.04%, simultaneously the content of anion transport protein band 4.5 increases by 35.2% and protein band 4.2 by 32.1%. The lectin blot analysis has helped to reveal changes in the structure of the carbohydrate determinants of ery­throcyte membrane glycoproteins under conditions of directed pttg gene inactivation, accompanied by changes in the type of communication, which joins the terminal residue in carbohydrate determinant of glycoproteins. Thus, a significant redistribution of protein and fatty acids contents in erythrocyte membranes that manifested in the increase of the deformed shape of red blood cells is observed under pttg gene knockout.http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Kanyuka_2_14.pdfarchitectonicscytoskeletonerythrocyte membranefatty acidglycoproteinsprotein band 3pttg gene
collection DOAJ
language English
format Article
sources DOAJ
author О. P. Kanyuka
Ye. Z. Filyak
O. R. Kulachkovskyy
Y. L. Osyp
N. O. Sybirna
spellingShingle О. P. Kanyuka
Ye. Z. Filyak
O. R. Kulachkovskyy
Y. L. Osyp
N. O. Sybirna
Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
Ukrainian Biochemical Journal
architectonics
cytoskeleton
erythrocyte membrane
fatty acid
glycoproteins
protein band 3
pttg gene
author_facet О. P. Kanyuka
Ye. Z. Filyak
O. R. Kulachkovskyy
Y. L. Osyp
N. O. Sybirna
author_sort О. P. Kanyuka
title Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
title_short Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
title_full Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
title_fullStr Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
title_full_unstemmed Quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
title_sort quantitative changes of main components of erythrocyte membranes which define architectonics of cells under pttg gene knockout
publisher National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.
series Ukrainian Biochemical Journal
issn 2409-4943
2413-5003
publishDate 2014-04-01
description A pttg gene knockout affects the functional state of erythron in mice which could be associated with structural changes in the structure of erythrocyte membranes. The pttg gene knockout causes a significant modification of fatty acids composition of erythrocyte membrane lipids by reducing the content of palmitic acid and increasing of polyunsaturated fatty acids amount by 18%. Analyzing the erythrocyte surface architectonics of mice under pttg gene knockout, it was found that on the background of reduction of the functionally complete biconcave discs population one could observe an increase of the number of transformed cells at different degeneration stages. Researches have shown that in mice with a pttg gene knockout compared with a control group of animals cytoskeletal protein – β-spectrin was reduced by 17.03%. However, there is a reduction of membrane protein band 3 by 33.04%, simultaneously the content of anion transport protein band 4.5 increases by 35.2% and protein band 4.2 by 32.1%. The lectin blot analysis has helped to reveal changes in the structure of the carbohydrate determinants of ery­throcyte membrane glycoproteins under conditions of directed pttg gene inactivation, accompanied by changes in the type of communication, which joins the terminal residue in carbohydrate determinant of glycoproteins. Thus, a significant redistribution of protein and fatty acids contents in erythrocyte membranes that manifested in the increase of the deformed shape of red blood cells is observed under pttg gene knockout.
topic architectonics
cytoskeleton
erythrocyte membrane
fatty acid
glycoproteins
protein band 3
pttg gene
url http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Kanyuka_2_14.pdf
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