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Structure and Function of Human DnaJ Homologue Subfamily A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer
[Image: see text] Pancreatic cancer has a dismal 5 year survival rate of 5.5% that has not been improved over the past 25 years despite an enormous amount of effort. Thus, there is an urgent need to identify truly novel yet druggable protein targets for drug discovery. The human protein DnaJ homolog...
Autores principales: | , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American
Chemical Society
2014
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3985919/ https://www.ncbi.nlm.nih.gov/pubmed/24512202 http://dx.doi.org/10.1021/bi401329a |
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author | Stark, Jaime L. Mehla, Kamiya Chaika, Nina Acton, Thomas B. Xiao, Rong Singh, Pankaj K. Montelione, Gaetano T. Powers, Robert |
author_facet | Stark, Jaime L. Mehla, Kamiya Chaika, Nina Acton, Thomas B. Xiao, Rong Singh, Pankaj K. Montelione, Gaetano T. Powers, Robert |
author_sort | Stark, Jaime L. |
collection | PubMed |
description | [Image: see text] Pancreatic cancer has a dismal 5 year survival rate of 5.5% that has not been improved over the past 25 years despite an enormous amount of effort. Thus, there is an urgent need to identify truly novel yet druggable protein targets for drug discovery. The human protein DnaJ homologue subfamily A member 1 (DNAJA1) was previously shown to be downregulated 5-fold in pancreatic cancer cells and has been targeted as a biomarker for pancreatic cancer, but little is known about the specific biological function for DNAJA1 or the other members of the DnaJ family encoded in the human genome. Our results suggest the overexpression of DNAJA1 suppresses the stress response capabilities of the oncogenic transcription factor, c-Jun, and results in the diminution of cell survival. DNAJA1 likely activates a DnaK protein by forming a complex that suppresses the JNK pathway, the hyperphosphorylation of c-Jun, and the anti-apoptosis state found in pancreatic cancer cells. A high-quality nuclear magnetic resonance solution structure of the J-domain of DNAJA1 combined with a bioinformatics analysis and a ligand affinity screen identifies a potential DnaK binding site, which is also predicted to overlap with an inhibitory binding site, suggesting DNAJA1 activity is highly regulated. |
format | Online Article Text |
id | pubmed-3985919 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American
Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-39859192015-02-10 Structure and Function of Human DnaJ Homologue Subfamily A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer Stark, Jaime L. Mehla, Kamiya Chaika, Nina Acton, Thomas B. Xiao, Rong Singh, Pankaj K. Montelione, Gaetano T. Powers, Robert Biochemistry [Image: see text] Pancreatic cancer has a dismal 5 year survival rate of 5.5% that has not been improved over the past 25 years despite an enormous amount of effort. Thus, there is an urgent need to identify truly novel yet druggable protein targets for drug discovery. The human protein DnaJ homologue subfamily A member 1 (DNAJA1) was previously shown to be downregulated 5-fold in pancreatic cancer cells and has been targeted as a biomarker for pancreatic cancer, but little is known about the specific biological function for DNAJA1 or the other members of the DnaJ family encoded in the human genome. Our results suggest the overexpression of DNAJA1 suppresses the stress response capabilities of the oncogenic transcription factor, c-Jun, and results in the diminution of cell survival. DNAJA1 likely activates a DnaK protein by forming a complex that suppresses the JNK pathway, the hyperphosphorylation of c-Jun, and the anti-apoptosis state found in pancreatic cancer cells. A high-quality nuclear magnetic resonance solution structure of the J-domain of DNAJA1 combined with a bioinformatics analysis and a ligand affinity screen identifies a potential DnaK binding site, which is also predicted to overlap with an inhibitory binding site, suggesting DNAJA1 activity is highly regulated. American Chemical Society 2014-02-10 2014-03-04 /pmc/articles/PMC3985919/ /pubmed/24512202 http://dx.doi.org/10.1021/bi401329a Text en Copyright © 2014 American Chemical Society |
spellingShingle | Stark, Jaime L. Mehla, Kamiya Chaika, Nina Acton, Thomas B. Xiao, Rong Singh, Pankaj K. Montelione, Gaetano T. Powers, Robert Structure and Function of Human DnaJ Homologue Subfamily A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title | Structure and Function of Human DnaJ Homologue Subfamily
A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title_full | Structure and Function of Human DnaJ Homologue Subfamily
A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title_fullStr | Structure and Function of Human DnaJ Homologue Subfamily
A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title_full_unstemmed | Structure and Function of Human DnaJ Homologue Subfamily
A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title_short | Structure and Function of Human DnaJ Homologue Subfamily
A Member 1 (DNAJA1) and Its Relationship to Pancreatic Cancer |
title_sort | structure and function of human dnaj homologue subfamily
a member 1 (dnaja1) and its relationship to pancreatic cancer |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3985919/ https://www.ncbi.nlm.nih.gov/pubmed/24512202 http://dx.doi.org/10.1021/bi401329a |
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