Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair

The Mre11 and Rad50 proteins are found in all domains of life and form a complex that locates and binds to DNA double-strand breaks (DSBs). The complex tethers DNA ends and coordinates the repair of DSBs. In Haloferax volcanii, mre11rad50 mutants are more resistant to DNA damage than the wild-type....

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Main Author: Wickham-Smith, Charlie
Format: Thesis (University of Nottingham only)
Language:English
Published: 2015
Online Access:https://eprints.nottingham.ac.uk/30816/
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author Wickham-Smith, Charlie
author_facet Wickham-Smith, Charlie
author_sort Wickham-Smith, Charlie
building Nottingham Research Data Repository
collection Online Access
description The Mre11 and Rad50 proteins are found in all domains of life and form a complex that locates and binds to DNA double-strand breaks (DSBs). The complex tethers DNA ends and coordinates the repair of DSBs. In Haloferax volcanii, mre11rad50 mutants are more resistant to DNA damage than the wild-type. Mre11-Rad50 is believed to restrain repair of DSBs by homologous recombination (HR) while other repair pathways can operate. Mutants of mre11rad50 cannot utilise this restraining mechanism so HR is believed to solely repair DSBs, leading to an increase in DNA damage resistance. H. volcanii is highly polyploid, possessing up to 20 copies of its genome. This restraining method of repair will prevent DNA ends engaging with multiple partners, which could be highly toxic. The specific details of how H. volcanii repair DSBs are unknown, including the protein interaction of Mre11-Rad50. Mre11-Rad50 has been labelled with His6 and StrepII tags then purified on gravity columns. Several proteins have been shown to co-purify with His6/StrepII-tagged Mre11-Rad50 under normal growth conditions. To discover whether these proteins are present during DSB repair, protein purification following incubation with DNA damaging agents is required. Further analysis of these proteins will reveal their identity and whether they are playing a role in DSB repair in H. volcanii
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format Thesis (University of Nottingham only)
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spelling nottingham-308162025-02-28T13:22:02Z https://eprints.nottingham.ac.uk/30816/ Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair Wickham-Smith, Charlie The Mre11 and Rad50 proteins are found in all domains of life and form a complex that locates and binds to DNA double-strand breaks (DSBs). The complex tethers DNA ends and coordinates the repair of DSBs. In Haloferax volcanii, mre11rad50 mutants are more resistant to DNA damage than the wild-type. Mre11-Rad50 is believed to restrain repair of DSBs by homologous recombination (HR) while other repair pathways can operate. Mutants of mre11rad50 cannot utilise this restraining mechanism so HR is believed to solely repair DSBs, leading to an increase in DNA damage resistance. H. volcanii is highly polyploid, possessing up to 20 copies of its genome. This restraining method of repair will prevent DNA ends engaging with multiple partners, which could be highly toxic. The specific details of how H. volcanii repair DSBs are unknown, including the protein interaction of Mre11-Rad50. Mre11-Rad50 has been labelled with His6 and StrepII tags then purified on gravity columns. Several proteins have been shown to co-purify with His6/StrepII-tagged Mre11-Rad50 under normal growth conditions. To discover whether these proteins are present during DSB repair, protein purification following incubation with DNA damaging agents is required. Further analysis of these proteins will reveal their identity and whether they are playing a role in DSB repair in H. volcanii 2015-12-09 Thesis (University of Nottingham only) NonPeerReviewed application/pdf en arr https://eprints.nottingham.ac.uk/30816/1/CWS%20MRes%20Thesis%20Corrected.pdf Wickham-Smith, Charlie (2015) Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair. MRes thesis, University of Nottingham.
spellingShingle Wickham-Smith, Charlie
Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title_full Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title_fullStr Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title_full_unstemmed Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title_short Identifying the protein interactions of Mre11-Rad50 in Haloferax volcanii during double-strand break repair
title_sort identifying the protein interactions of mre11-rad50 in haloferax volcanii during double-strand break repair
url https://eprints.nottingham.ac.uk/30816/