The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.

BACKGROUND: NORE1A and RASSF1A are growth and tumour suppressors inactivated in a variety of cancers. Methylation of NORE1A and RASSF1A promoters is the predominant mechanism for downregulation of these proteins; however, other mechanisms are likely to exist. METHODOLOGY/PRINCIPAL FINDINGS: Here we...

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Main Authors: Sergey Kuznetsov, Andrei V Khokhlatchev
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2008-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2602596?pdf=render
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spelling doaj-773922b6a2f247a88fbc489313740d202020-11-25T01:46:42ZengPublic Library of Science (PLoS)PLoS ONE1932-62032008-01-01312e399710.1371/journal.pone.0003997The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.Sergey KuznetsovAndrei V KhokhlatchevBACKGROUND: NORE1A and RASSF1A are growth and tumour suppressors inactivated in a variety of cancers. Methylation of NORE1A and RASSF1A promoters is the predominant mechanism for downregulation of these proteins; however, other mechanisms are likely to exist. METHODOLOGY/PRINCIPAL FINDINGS: Here we describe a proteolysis of NORE1A and RASSF1A by calpains as alternative mechanism of their downregulation. Extracts of H358 cell line, a human bronchoalveolar carcinoma, and H460, a large cell carcinoma, were capable of proteolysis of NORE1A protein in the calpain-dependent manner. Likewise, RASSF1A tumor suppressor was proteolyzed by the H358 cell extract. Addition of calpain inhibitor to H358 and H460 cells growing in tissue culture resulted in re-expression of endogenous NORE1A. A survey of 10 human lung tumours revealed that three of them contain an activity capable of inducing NORE1A degradation. CONCLUSIONS/SIGNIFICANCE: Thus, degradation by calpains is a novel mechanism for downregulation of NORE1A and RASSF1A proteins and might be the mechanism allowing cancer cells to escape growth suppression.http://europepmc.org/articles/PMC2602596?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Sergey Kuznetsov
Andrei V Khokhlatchev
spellingShingle Sergey Kuznetsov
Andrei V Khokhlatchev
The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
PLoS ONE
author_facet Sergey Kuznetsov
Andrei V Khokhlatchev
author_sort Sergey Kuznetsov
title The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
title_short The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
title_full The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
title_fullStr The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
title_full_unstemmed The growth and tumor suppressors NORE1A and RASSF1A are targets for calpain-mediated proteolysis.
title_sort growth and tumor suppressors nore1a and rassf1a are targets for calpain-mediated proteolysis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2008-01-01
description BACKGROUND: NORE1A and RASSF1A are growth and tumour suppressors inactivated in a variety of cancers. Methylation of NORE1A and RASSF1A promoters is the predominant mechanism for downregulation of these proteins; however, other mechanisms are likely to exist. METHODOLOGY/PRINCIPAL FINDINGS: Here we describe a proteolysis of NORE1A and RASSF1A by calpains as alternative mechanism of their downregulation. Extracts of H358 cell line, a human bronchoalveolar carcinoma, and H460, a large cell carcinoma, were capable of proteolysis of NORE1A protein in the calpain-dependent manner. Likewise, RASSF1A tumor suppressor was proteolyzed by the H358 cell extract. Addition of calpain inhibitor to H358 and H460 cells growing in tissue culture resulted in re-expression of endogenous NORE1A. A survey of 10 human lung tumours revealed that three of them contain an activity capable of inducing NORE1A degradation. CONCLUSIONS/SIGNIFICANCE: Thus, degradation by calpains is a novel mechanism for downregulation of NORE1A and RASSF1A proteins and might be the mechanism allowing cancer cells to escape growth suppression.
url http://europepmc.org/articles/PMC2602596?pdf=render
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