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Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function

Encapsulins are protein nanocages capable of harboring smaller proteins (cargo proteins) within their cavity. The function of the encapsulin systems is related to the encapsulated cargo proteins. The Myxococcus xanthus encapsulin (EncA) naturally encapsulates ferritin-like proteins EncB and EncC as...

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Autores principales: Almeida, Ana V., Carvalho, Ana J., Calmeiro, Tomás, Jones, Nykola C., Hoffmann, Søren V., Fortunato, Elvira, Pereira, Alice S., Tavares, Pedro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321382/
https://www.ncbi.nlm.nih.gov/pubmed/35887179
http://dx.doi.org/10.3390/ijms23147829
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author Almeida, Ana V.
Carvalho, Ana J.
Calmeiro, Tomás
Jones, Nykola C.
Hoffmann, Søren V.
Fortunato, Elvira
Pereira, Alice S.
Tavares, Pedro
author_facet Almeida, Ana V.
Carvalho, Ana J.
Calmeiro, Tomás
Jones, Nykola C.
Hoffmann, Søren V.
Fortunato, Elvira
Pereira, Alice S.
Tavares, Pedro
author_sort Almeida, Ana V.
collection PubMed
description Encapsulins are protein nanocages capable of harboring smaller proteins (cargo proteins) within their cavity. The function of the encapsulin systems is related to the encapsulated cargo proteins. The Myxococcus xanthus encapsulin (EncA) naturally encapsulates ferritin-like proteins EncB and EncC as cargo, resulting in a large iron storage nanocompartment, able to accommodate up to 30,000 iron atoms per shell. In the present manuscript we describe the binding and protection of circular double stranded DNA (pUC19) by EncA using electrophoretic mobility shift assays (EMSA), atomic force microscopy (AFM), and DNase protection assays. EncA binds pUC19 with an apparent dissociation constant of 0.3 ± 0.1 µM and a Hill coefficient of 1.4 ± 0.1, while EncC alone showed no interaction with DNA. Accordingly, the EncAC complex displayed a similar DNA binding capacity as the EncA protein. The data suggest that initially, EncA converts the plasmid DNA from a supercoiled to a more relaxed form with a beads-on-a-string morphology. At higher concentrations, EncA self-aggregates, condensing the DNA. This process physically protects DNA from enzymatic digestion by DNase I. The secondary structure and thermal stability of EncA and the EncA−pUC19 complex were evaluated using synchrotron radiation circular dichroism (SRCD) spectroscopy. The overall secondary structure of EncA is maintained upon interaction with pUC19 while the melting temperature of the protein (T(m)) slightly increased from 76 ± 1 °C to 79 ± 1 °C. Our work reports, for the first time, the in vitro capacity of an encapsulin shell to interact and protect plasmid DNA similarly to other protein nanocages that may be relevant in vivo.
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spelling pubmed-93213822022-07-27 Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function Almeida, Ana V. Carvalho, Ana J. Calmeiro, Tomás Jones, Nykola C. Hoffmann, Søren V. Fortunato, Elvira Pereira, Alice S. Tavares, Pedro Int J Mol Sci Article Encapsulins are protein nanocages capable of harboring smaller proteins (cargo proteins) within their cavity. The function of the encapsulin systems is related to the encapsulated cargo proteins. The Myxococcus xanthus encapsulin (EncA) naturally encapsulates ferritin-like proteins EncB and EncC as cargo, resulting in a large iron storage nanocompartment, able to accommodate up to 30,000 iron atoms per shell. In the present manuscript we describe the binding and protection of circular double stranded DNA (pUC19) by EncA using electrophoretic mobility shift assays (EMSA), atomic force microscopy (AFM), and DNase protection assays. EncA binds pUC19 with an apparent dissociation constant of 0.3 ± 0.1 µM and a Hill coefficient of 1.4 ± 0.1, while EncC alone showed no interaction with DNA. Accordingly, the EncAC complex displayed a similar DNA binding capacity as the EncA protein. The data suggest that initially, EncA converts the plasmid DNA from a supercoiled to a more relaxed form with a beads-on-a-string morphology. At higher concentrations, EncA self-aggregates, condensing the DNA. This process physically protects DNA from enzymatic digestion by DNase I. The secondary structure and thermal stability of EncA and the EncA−pUC19 complex were evaluated using synchrotron radiation circular dichroism (SRCD) spectroscopy. The overall secondary structure of EncA is maintained upon interaction with pUC19 while the melting temperature of the protein (T(m)) slightly increased from 76 ± 1 °C to 79 ± 1 °C. Our work reports, for the first time, the in vitro capacity of an encapsulin shell to interact and protect plasmid DNA similarly to other protein nanocages that may be relevant in vivo. MDPI 2022-07-15 /pmc/articles/PMC9321382/ /pubmed/35887179 http://dx.doi.org/10.3390/ijms23147829 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Almeida, Ana V.
Carvalho, Ana J.
Calmeiro, Tomás
Jones, Nykola C.
Hoffmann, Søren V.
Fortunato, Elvira
Pereira, Alice S.
Tavares, Pedro
Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title_full Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title_fullStr Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title_full_unstemmed Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title_short Condensation and Protection of DNA by the Myxococcus xanthus Encapsulin: A Novel Function
title_sort condensation and protection of dna by the myxococcus xanthus encapsulin: a novel function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9321382/
https://www.ncbi.nlm.nih.gov/pubmed/35887179
http://dx.doi.org/10.3390/ijms23147829
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