The structure and cellular regulation of p73: Their implication in anticancer therapy
p73 protein belongs, together with p63, to the p53 family. It is a relatively poorly studied structural and functional homolog of the well-described tumor suppressor protein p53, also known as the guardian of the genome. p73 protein, like p53, becomes activated by, for example, DNA damaging agents a...
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doaj-b5239a4887b54f40ade771411c6356152020-11-25T00:13:49ZengIndex Copernicus International S.A.Postępy Higieny i Medycyny Doświadczalnej0032-54491732-26932010-02-01648405377886The structure and cellular regulation of p73: Their implication in anticancer therapyJoanna Zawacka-PankauKatarzyna MaleńczykAlicja Sznarkowskap73 protein belongs, together with p63, to the p53 family. It is a relatively poorly studied structural and functional homolog of the well-described tumor suppressor protein p53, also known as the guardian of the genome. p73 protein, like p53, becomes activated by, for example, DNA damaging agents and it targets the same promoter sequences as p53. Both proteins participate in pathways of signal transduction whose activation leads to apoptosis induction or cell-cycle arrest. Studies concerning anticancer treatment focusing on the activation of p53 have been carried out extensively for about 10 years. It appears that a similar therapeutic strategy can be successfully applied in p73 activation as well. Unlike the [i]TP53[/i] gene, the gene encoding p73 protein is rarely mutated in tumors although the protein is found to be inactive. This can become very useful when designing molecules which will selectively activate p73 and consequently induce cancer-cell death. The aim of the present study was to describe in detail the structure, function, as well as cellular regulation of p73 in light of its therapeutic potential.http://journals.indexcopernicus.com/fulltxt.php?ICID=905554białko supresoru nowotworu p73apoptozaterapia przeciwnowotworowazwiązki niskocząsteczkowe |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Joanna Zawacka-Pankau Katarzyna Maleńczyk Alicja Sznarkowska |
spellingShingle |
Joanna Zawacka-Pankau Katarzyna Maleńczyk Alicja Sznarkowska The structure and cellular regulation of p73: Their implication in anticancer therapy Postępy Higieny i Medycyny Doświadczalnej białko supresoru nowotworu p73 apoptoza terapia przeciwnowotworowa związki niskocząsteczkowe |
author_facet |
Joanna Zawacka-Pankau Katarzyna Maleńczyk Alicja Sznarkowska |
author_sort |
Joanna Zawacka-Pankau |
title |
The structure and cellular regulation of p73: Their implication in anticancer therapy |
title_short |
The structure and cellular regulation of p73: Their implication in anticancer therapy |
title_full |
The structure and cellular regulation of p73: Their implication in anticancer therapy |
title_fullStr |
The structure and cellular regulation of p73: Their implication in anticancer therapy |
title_full_unstemmed |
The structure and cellular regulation of p73: Their implication in anticancer therapy |
title_sort |
structure and cellular regulation of p73: their implication in anticancer therapy |
publisher |
Index Copernicus International S.A. |
series |
Postępy Higieny i Medycyny Doświadczalnej |
issn |
0032-5449 1732-2693 |
publishDate |
2010-02-01 |
description |
p73 protein belongs, together with p63, to the p53 family. It is a relatively poorly studied structural and functional homolog of the well-described tumor suppressor protein p53, also known as the guardian of the genome. p73 protein, like p53, becomes activated by, for example, DNA damaging agents and it targets the same promoter sequences as p53. Both proteins participate in pathways of signal transduction whose activation leads to apoptosis induction or cell-cycle arrest. Studies concerning anticancer treatment focusing on the activation of p53 have been carried out extensively for about 10 years. It appears that a similar therapeutic strategy can be successfully applied in p73 activation as well. Unlike the [i]TP53[/i] gene, the gene encoding p73 protein is rarely mutated in tumors although the protein is found to be inactive. This can become very useful when designing molecules which will selectively activate p73 and consequently induce cancer-cell death. The aim of the present study was to describe in detail the structure, function, as well as cellular regulation of p73 in light of its therapeutic potential. |
topic |
białko supresoru nowotworu p73 apoptoza terapia przeciwnowotworowa związki niskocząsteczkowe |
url |
http://journals.indexcopernicus.com/fulltxt.php?ICID=905554 |
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