Structural and chemical profiling of the human cytosolic sulfotransferases.
The human cytosolic sulfotransfases (hSULTs) comprise a family of 12 phase II enzymes involved in the metabolism of drugs and hormones, the bioactivation of carcinogens, and the detoxification of xenobiotics. Knowledge of the structural and mechanistic basis of substrate specificity and activity is...
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doaj-b16aa60a578740d2ac8dcb3a1c09342a2021-07-02T21:21:59ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852007-05-0155e9710.1371/journal.pbio.0050097Structural and chemical profiling of the human cytosolic sulfotransferases.Abdellah Allali-HassaniPatricia W PanLudmila DombrovskiRafael NajmanovichWolfram TempelAiping DongPeter LoppnauFernando MartinJanet ThorntonAled M EdwardsAlexey BochkarevAlexander N PlotnikovMasoud VedadiCheryl H ArrowsmithThe human cytosolic sulfotransfases (hSULTs) comprise a family of 12 phase II enzymes involved in the metabolism of drugs and hormones, the bioactivation of carcinogens, and the detoxification of xenobiotics. Knowledge of the structural and mechanistic basis of substrate specificity and activity is crucial for understanding steroid and hormone metabolism, drug sensitivity, pharmacogenomics, and response to environmental toxins. We have determined the crystal structures of five hSULTs for which structural information was lacking, and screened nine of the 12 hSULTs for binding and activity toward a panel of potential substrates and inhibitors, revealing unique "chemical fingerprints" for each protein. The family-wide analysis of the screening and structural data provides a comprehensive, high-level view of the determinants of substrate binding, the mechanisms of inhibition by substrates and environmental toxins, and the functions of the orphan family members SULT1C3 and SULT4A1. Evidence is provided for structural "priming" of the enzyme active site by cofactor binding, which influences the spectrum of small molecules that can bind to each enzyme. The data help explain substrate promiscuity in this family and, at the same time, reveal new similarities between hSULT family members that were previously unrecognized by sequence or structure comparison alone.https://doi.org/10.1371/journal.pbio.0050097 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abdellah Allali-Hassani Patricia W Pan Ludmila Dombrovski Rafael Najmanovich Wolfram Tempel Aiping Dong Peter Loppnau Fernando Martin Janet Thornton Aled M Edwards Alexey Bochkarev Alexander N Plotnikov Masoud Vedadi Cheryl H Arrowsmith |
spellingShingle |
Abdellah Allali-Hassani Patricia W Pan Ludmila Dombrovski Rafael Najmanovich Wolfram Tempel Aiping Dong Peter Loppnau Fernando Martin Janet Thornton Aled M Edwards Alexey Bochkarev Alexander N Plotnikov Masoud Vedadi Cheryl H Arrowsmith Structural and chemical profiling of the human cytosolic sulfotransferases. PLoS Biology |
author_facet |
Abdellah Allali-Hassani Patricia W Pan Ludmila Dombrovski Rafael Najmanovich Wolfram Tempel Aiping Dong Peter Loppnau Fernando Martin Janet Thornton Aled M Edwards Alexey Bochkarev Alexander N Plotnikov Masoud Vedadi Cheryl H Arrowsmith |
author_sort |
Abdellah Allali-Hassani |
title |
Structural and chemical profiling of the human cytosolic sulfotransferases. |
title_short |
Structural and chemical profiling of the human cytosolic sulfotransferases. |
title_full |
Structural and chemical profiling of the human cytosolic sulfotransferases. |
title_fullStr |
Structural and chemical profiling of the human cytosolic sulfotransferases. |
title_full_unstemmed |
Structural and chemical profiling of the human cytosolic sulfotransferases. |
title_sort |
structural and chemical profiling of the human cytosolic sulfotransferases. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Biology |
issn |
1544-9173 1545-7885 |
publishDate |
2007-05-01 |
description |
The human cytosolic sulfotransfases (hSULTs) comprise a family of 12 phase II enzymes involved in the metabolism of drugs and hormones, the bioactivation of carcinogens, and the detoxification of xenobiotics. Knowledge of the structural and mechanistic basis of substrate specificity and activity is crucial for understanding steroid and hormone metabolism, drug sensitivity, pharmacogenomics, and response to environmental toxins. We have determined the crystal structures of five hSULTs for which structural information was lacking, and screened nine of the 12 hSULTs for binding and activity toward a panel of potential substrates and inhibitors, revealing unique "chemical fingerprints" for each protein. The family-wide analysis of the screening and structural data provides a comprehensive, high-level view of the determinants of substrate binding, the mechanisms of inhibition by substrates and environmental toxins, and the functions of the orphan family members SULT1C3 and SULT4A1. Evidence is provided for structural "priming" of the enzyme active site by cofactor binding, which influences the spectrum of small molecules that can bind to each enzyme. The data help explain substrate promiscuity in this family and, at the same time, reveal new similarities between hSULT family members that were previously unrecognized by sequence or structure comparison alone. |
url |
https://doi.org/10.1371/journal.pbio.0050097 |
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