Literature DB >> 29529283

Investigation of sliding DNA clamp dynamics by single-molecule fluorescence, mass spectrometry and structure-based modeling.

Varun V Gadkari1,2, Sophie R Harvey1,3, Austin T Raper1,2, Wen-Ting Chu4, Jin Wang4,5, Vicki H Wysocki1, Zucai Suo1,2.   

Abstract

Proliferating cell nuclear antigen (PCNA) is a trimeric ring-shaped clamp protein that encircles DNA and interacts with many proteins involved in DNA replication and repair. Despite extensive structural work to characterize the monomeric, dimeric, and trimeric forms of PCNA alone and in complex with interacting proteins, no structure of PCNA in a ring-open conformation has been published. Here, we use a multidisciplinary approach, including single-molecule Förster resonance energy transfer (smFRET), native ion mobility-mass spectrometry (IM-MS), and structure-based computational modeling, to explore the conformational dynamics of a model PCNA from Sulfolobus solfataricus (Sso), an archaeon. We found that Sso PCNA samples ring-open and ring-closed conformations even in the absence of its clamp loader complex, replication factor C, and transition to the ring-open conformation is modulated by the ionic strength of the solution. The IM-MS results corroborate the smFRET findings suggesting that PCNA dynamics are maintained in the gas phase and further establishing IM-MS as a reliable strategy to investigate macromolecular motions. Our molecular dynamic simulations agree with the experimental data and reveal that ring-open PCNA often adopts an out-of-plane left-hand geometry. Collectively, these results implore future studies to define the roles of PCNA dynamics in DNA loading and other PCNA-mediated interactions.

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Year:  2018        PMID: 29529283      PMCID: PMC5888646          DOI: 10.1093/nar/gky125

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  87 in total

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10.  Dynamics of Open DNA Sliding Clamps.

Authors:  Aaron J Oakley
Journal:  PLoS One       Date:  2016-05-05       Impact factor: 3.240

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Review 3.  Surface-induced Dissociation Mass Spectrometry as a Structural Biology Tool.

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