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Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution

Tumor suppressor p53 is a sequence-specific DNA-binding protein and its central DNA-binding domain (DBD) harbors six hotspots (Arg175, Gly245, Arg248, Arg249, Arg273 and Arg282) for human cancers. Here, the crystal structure of a low-frequency hotspot mutant, p53DBD(R282Q), is reported at 1.54 Å res...

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Autores principales: Tu, Chao, Tan, Yu-Hong, Shaw, Gary, Zhou, Zheng, Bai, Yawen, Luo, Ray, Ji, Xinhua
Formato: Texto
Lenguaje:English
Publicado: International Union of Crystallography 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2631104/
https://www.ncbi.nlm.nih.gov/pubmed/18453682
http://dx.doi.org/10.1107/S0907444908003338
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author Tu, Chao
Tan, Yu-Hong
Shaw, Gary
Zhou, Zheng
Bai, Yawen
Luo, Ray
Ji, Xinhua
author_facet Tu, Chao
Tan, Yu-Hong
Shaw, Gary
Zhou, Zheng
Bai, Yawen
Luo, Ray
Ji, Xinhua
author_sort Tu, Chao
collection PubMed
description Tumor suppressor p53 is a sequence-specific DNA-binding protein and its central DNA-binding domain (DBD) harbors six hotspots (Arg175, Gly245, Arg248, Arg249, Arg273 and Arg282) for human cancers. Here, the crystal structure of a low-frequency hotspot mutant, p53DBD(R282Q), is reported at 1.54 Å resolution together with the results of molecular-dynamics simulations on the basis of the structure. In addition to eliminating a salt bridge, the R282Q mutation has a significant impact on the properties of two DNA-binding loops (L1 and L3). The L1 loop is flexible in the wild type, but it is not flexible in the mutant. The L3 loop of the wild type is not flexible, whereas it assumes two conformations in the mutant. Molecular-dynamics simulations indicated that both conformations of the L3 loop are accessible under biological conditions. It is predicted that the elimination of the salt bridge and the inversion of the flexibility of L1 and L3 are directly or indirectly responsible for deactivating the tumor suppressor p53.
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spelling pubmed-26311042009-03-05 Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution Tu, Chao Tan, Yu-Hong Shaw, Gary Zhou, Zheng Bai, Yawen Luo, Ray Ji, Xinhua Acta Crystallogr D Biol Crystallogr Research Papers Tumor suppressor p53 is a sequence-specific DNA-binding protein and its central DNA-binding domain (DBD) harbors six hotspots (Arg175, Gly245, Arg248, Arg249, Arg273 and Arg282) for human cancers. Here, the crystal structure of a low-frequency hotspot mutant, p53DBD(R282Q), is reported at 1.54 Å resolution together with the results of molecular-dynamics simulations on the basis of the structure. In addition to eliminating a salt bridge, the R282Q mutation has a significant impact on the properties of two DNA-binding loops (L1 and L3). The L1 loop is flexible in the wild type, but it is not flexible in the mutant. The L3 loop of the wild type is not flexible, whereas it assumes two conformations in the mutant. Molecular-dynamics simulations indicated that both conformations of the L3 loop are accessible under biological conditions. It is predicted that the elimination of the salt bridge and the inversion of the flexibility of L1 and L3 are directly or indirectly responsible for deactivating the tumor suppressor p53. International Union of Crystallography 2008-05-01 2008-04-19 /pmc/articles/PMC2631104/ /pubmed/18453682 http://dx.doi.org/10.1107/S0907444908003338 Text en © International Union of Crystallography 2008
spellingShingle Research Papers
Tu, Chao
Tan, Yu-Hong
Shaw, Gary
Zhou, Zheng
Bai, Yawen
Luo, Ray
Ji, Xinhua
Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title_full Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title_fullStr Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title_full_unstemmed Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title_short Impact of low-frequency hotspot mutation R282Q on the structure of p53 DNA-binding domain as revealed by crystallography at 1.54 Å resolution
title_sort impact of low-frequency hotspot mutation r282q on the structure of p53 dna-binding domain as revealed by crystallography at 1.54 å resolution
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2631104/
https://www.ncbi.nlm.nih.gov/pubmed/18453682
http://dx.doi.org/10.1107/S0907444908003338
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