Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation
While the toxicity of metals and metalloids, like arsenic, cadmium, mercury, lead and chromium, is undisputed, the underlying molecular mechanisms are not entirely clear. General consensus holds that proteins are the prime targets; heavy metals interfere with the physiological activity of specific,...
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doaj-df564839e9854234b01b6a375a35661c2020-11-24T21:11:44ZengMDPI AGBiomolecules2218-273X2014-02-014125226710.3390/biom4010252biom4010252Heavy Metals and Metalloids As a Cause for Protein Misfolding and AggregationMarkus J. Tamás0Sandeep K. Sharma1Sebastian Ibstedt2Therese Jacobson3Philipp Christen4Department of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg S-405 30, SwedenDepartment of Biochemistry, University of Zurich, Zürich CH-8057, SwitzerlandDepartment of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg S-405 30, SwedenDepartment of Chemistry and Molecular Biology, University of Gothenburg, Gothenburg S-405 30, SwedenDepartment of Biochemistry, University of Zurich, Zürich CH-8057, SwitzerlandWhile the toxicity of metals and metalloids, like arsenic, cadmium, mercury, lead and chromium, is undisputed, the underlying molecular mechanisms are not entirely clear. General consensus holds that proteins are the prime targets; heavy metals interfere with the physiological activity of specific, particularly susceptible proteins, either by forming a complex with functional side chain groups or by displacing essential metal ions in metalloproteins. Recent studies have revealed an additional mode of metal action targeted at proteins in a non-native state; certain heavy metals and metalloids have been found to inhibit the in vitro refolding of chemically denatured proteins, to interfere with protein folding in vivo and to cause aggregation of nascent proteins in living cells. Apparently, unfolded proteins with motile backbone and side chains are considerably more prone to engage in stable, pluridentate metal complexes than native proteins with their well-defined 3D structure. By interfering with the folding process, heavy metal ions and metalloids profoundly affect protein homeostasis and cell viability. This review describes how heavy metals impede protein folding and promote protein aggregation, how cells regulate quality control systems to protect themselves from metal toxicity and how metals might contribute to protein misfolding disorders.http://www.mdpi.com/2218-273X/4/1/252protein foldingprotein aggregationchaperoneprotein degradationproteinmetal toxicitymetalloid toxicityyeast |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Markus J. Tamás Sandeep K. Sharma Sebastian Ibstedt Therese Jacobson Philipp Christen |
spellingShingle |
Markus J. Tamás Sandeep K. Sharma Sebastian Ibstedt Therese Jacobson Philipp Christen Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation Biomolecules protein folding protein aggregation chaperone protein degradation protein metal toxicity metalloid toxicity yeast |
author_facet |
Markus J. Tamás Sandeep K. Sharma Sebastian Ibstedt Therese Jacobson Philipp Christen |
author_sort |
Markus J. Tamás |
title |
Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation |
title_short |
Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation |
title_full |
Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation |
title_fullStr |
Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation |
title_full_unstemmed |
Heavy Metals and Metalloids As a Cause for Protein Misfolding and Aggregation |
title_sort |
heavy metals and metalloids as a cause for protein misfolding and aggregation |
publisher |
MDPI AG |
series |
Biomolecules |
issn |
2218-273X |
publishDate |
2014-02-01 |
description |
While the toxicity of metals and metalloids, like arsenic, cadmium, mercury, lead and chromium, is undisputed, the underlying molecular mechanisms are not entirely clear. General consensus holds that proteins are the prime targets; heavy metals interfere with the physiological activity of specific, particularly susceptible proteins, either by forming a complex with functional side chain groups or by displacing essential metal ions in metalloproteins. Recent studies have revealed an additional mode of metal action targeted at proteins in a non-native state; certain heavy metals and metalloids have been found to inhibit the in vitro refolding of chemically denatured proteins, to interfere with protein folding in vivo and to cause aggregation of nascent proteins in living cells. Apparently, unfolded proteins with motile backbone and side chains are considerably more prone to engage in stable, pluridentate metal complexes than native proteins with their well-defined 3D structure. By interfering with the folding process, heavy metal ions and metalloids profoundly affect protein homeostasis and cell viability. This review describes how heavy metals impede protein folding and promote protein aggregation, how cells regulate quality control systems to protect themselves from metal toxicity and how metals might contribute to protein misfolding disorders. |
topic |
protein folding protein aggregation chaperone protein degradation protein metal toxicity metalloid toxicity yeast |
url |
http://www.mdpi.com/2218-273X/4/1/252 |
work_keys_str_mv |
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