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Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity

LINE-1 (L1) retrotransposons are mobile genetic elements whose extensive proliferation resulted in the generation of ∼34% of the human genome. They have been shown to be a cause of single-gene diseases. Moreover, L1-encoded endonuclease can elicit double-strand breaks that may lead to genomic instab...

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Autores principales: Horn, Axel V., Klawitter, Sabine, Held, Ulrike, Berger, André, Jaguva Vasudevan, Ananda Ayyappan, Bock, Anja, Hofmann, Henning, Hanschmann, Kay-Martin O., Trösemeier, Jan-Hendrik, Flory, Egbert, Jabulowsky, Robert A., Han, Jeffrey S., Löwer, Johannes, Löwer, Roswitha, Münk, Carsten, Schumann, Gerald G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874205/
https://www.ncbi.nlm.nih.gov/pubmed/24101588
http://dx.doi.org/10.1093/nar/gkt898
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author Horn, Axel V.
Klawitter, Sabine
Held, Ulrike
Berger, André
Jaguva Vasudevan, Ananda Ayyappan
Bock, Anja
Hofmann, Henning
Hanschmann, Kay-Martin O.
Trösemeier, Jan-Hendrik
Flory, Egbert
Jabulowsky, Robert A.
Han, Jeffrey S.
Löwer, Johannes
Löwer, Roswitha
Münk, Carsten
Schumann, Gerald G.
author_facet Horn, Axel V.
Klawitter, Sabine
Held, Ulrike
Berger, André
Jaguva Vasudevan, Ananda Ayyappan
Bock, Anja
Hofmann, Henning
Hanschmann, Kay-Martin O.
Trösemeier, Jan-Hendrik
Flory, Egbert
Jabulowsky, Robert A.
Han, Jeffrey S.
Löwer, Johannes
Löwer, Roswitha
Münk, Carsten
Schumann, Gerald G.
author_sort Horn, Axel V.
collection PubMed
description LINE-1 (L1) retrotransposons are mobile genetic elements whose extensive proliferation resulted in the generation of ∼34% of the human genome. They have been shown to be a cause of single-gene diseases. Moreover, L1-encoded endonuclease can elicit double-strand breaks that may lead to genomic instability. Mammalian cells adopted strategies restricting mobility and deleterious consequences of uncontrolled retrotransposition. The human APOBEC3 protein family of polynucleotide cytidine deaminases contributes to intracellular defense against retroelements. APOBEC3 members inhibit L1 retrotransposition by 35–99%. However, genomic L1 retrotransposition events that occurred in the presence of L1-restricting APOBEC3 proteins are devoid of detectable G-to-A hypermutations, suggesting one or multiple deaminase-independent L1 restricting mechanisms. We set out to uncover the mechanism of APOBEC3C (A3C)-mediated L1 inhibition and found that it is deaminase independent, requires an intact dimerization site and the RNA-binding pocket mutation R122A abolishes L1 restriction by A3C. Density gradient centrifugation of L1 ribonucleoprotein particles, subcellular co-localization of L1-ORF1p and A3C and co-immunoprecipitation experiments indicate that an RNA-dependent physical interaction between L1 ORF1p and A3C dimers is essential for L1 restriction. Furthermore, we demonstrate that the amount of L1 complementary DNA synthesized by L1 reverse transcriptase is reduced by ∼50% if overexpressed A3C is present.
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spelling pubmed-38742052013-12-28 Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity Horn, Axel V. Klawitter, Sabine Held, Ulrike Berger, André Jaguva Vasudevan, Ananda Ayyappan Bock, Anja Hofmann, Henning Hanschmann, Kay-Martin O. Trösemeier, Jan-Hendrik Flory, Egbert Jabulowsky, Robert A. Han, Jeffrey S. Löwer, Johannes Löwer, Roswitha Münk, Carsten Schumann, Gerald G. Nucleic Acids Res Genome Integrity, Repair and Replication LINE-1 (L1) retrotransposons are mobile genetic elements whose extensive proliferation resulted in the generation of ∼34% of the human genome. They have been shown to be a cause of single-gene diseases. Moreover, L1-encoded endonuclease can elicit double-strand breaks that may lead to genomic instability. Mammalian cells adopted strategies restricting mobility and deleterious consequences of uncontrolled retrotransposition. The human APOBEC3 protein family of polynucleotide cytidine deaminases contributes to intracellular defense against retroelements. APOBEC3 members inhibit L1 retrotransposition by 35–99%. However, genomic L1 retrotransposition events that occurred in the presence of L1-restricting APOBEC3 proteins are devoid of detectable G-to-A hypermutations, suggesting one or multiple deaminase-independent L1 restricting mechanisms. We set out to uncover the mechanism of APOBEC3C (A3C)-mediated L1 inhibition and found that it is deaminase independent, requires an intact dimerization site and the RNA-binding pocket mutation R122A abolishes L1 restriction by A3C. Density gradient centrifugation of L1 ribonucleoprotein particles, subcellular co-localization of L1-ORF1p and A3C and co-immunoprecipitation experiments indicate that an RNA-dependent physical interaction between L1 ORF1p and A3C dimers is essential for L1 restriction. Furthermore, we demonstrate that the amount of L1 complementary DNA synthesized by L1 reverse transcriptase is reduced by ∼50% if overexpressed A3C is present. Oxford University Press 2014-01-01 2013-10-05 /pmc/articles/PMC3874205/ /pubmed/24101588 http://dx.doi.org/10.1093/nar/gkt898 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by/3.0/), which permits non-commercial reuse, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Genome Integrity, Repair and Replication
Horn, Axel V.
Klawitter, Sabine
Held, Ulrike
Berger, André
Jaguva Vasudevan, Ananda Ayyappan
Bock, Anja
Hofmann, Henning
Hanschmann, Kay-Martin O.
Trösemeier, Jan-Hendrik
Flory, Egbert
Jabulowsky, Robert A.
Han, Jeffrey S.
Löwer, Johannes
Löwer, Roswitha
Münk, Carsten
Schumann, Gerald G.
Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title_full Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title_fullStr Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title_full_unstemmed Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title_short Human LINE-1 restriction by APOBEC3C is deaminase independent and mediated by an ORF1p interaction that affects LINE reverse transcriptase activity
title_sort human line-1 restriction by apobec3c is deaminase independent and mediated by an orf1p interaction that affects line reverse transcriptase activity
topic Genome Integrity, Repair and Replication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3874205/
https://www.ncbi.nlm.nih.gov/pubmed/24101588
http://dx.doi.org/10.1093/nar/gkt898
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