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Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs

Genomic disorders, the syndromes with multiple manifestations, may occur sporadically due to unequal recombination in chromosomal regions with specific architecture. Therefore, each patient may carry an individual structural variant of DNA sequence (SV) with small insertions and deletions (INDELs) s...

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Autores principales: Savvateeva-Popova, Elena V., Zhuravlev, Aleksandr V., Brázda, Václav, Zakharov, Gennady A., Kaminskaya, Alena N., Medvedeva, Anna V., Nikitina, Ekaterina A., Tokmatcheva, Elena V., Dolgaya, Julia F., Kulikova, Dina A., Zatsepina, Olga G., Funikov, Sergei Y., Ryazansky, Sergei S., Evgen‘ev, Michail B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5611441/
https://www.ncbi.nlm.nih.gov/pubmed/28979292
http://dx.doi.org/10.3389/fgene.2017.00123
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author Savvateeva-Popova, Elena V.
Zhuravlev, Aleksandr V.
Brázda, Václav
Zakharov, Gennady A.
Kaminskaya, Alena N.
Medvedeva, Anna V.
Nikitina, Ekaterina A.
Tokmatcheva, Elena V.
Dolgaya, Julia F.
Kulikova, Dina A.
Zatsepina, Olga G.
Funikov, Sergei Y.
Ryazansky, Sergei S.
Evgen‘ev, Michail B.
author_facet Savvateeva-Popova, Elena V.
Zhuravlev, Aleksandr V.
Brázda, Václav
Zakharov, Gennady A.
Kaminskaya, Alena N.
Medvedeva, Anna V.
Nikitina, Ekaterina A.
Tokmatcheva, Elena V.
Dolgaya, Julia F.
Kulikova, Dina A.
Zatsepina, Olga G.
Funikov, Sergei Y.
Ryazansky, Sergei S.
Evgen‘ev, Michail B.
author_sort Savvateeva-Popova, Elena V.
collection PubMed
description Genomic disorders, the syndromes with multiple manifestations, may occur sporadically due to unequal recombination in chromosomal regions with specific architecture. Therefore, each patient may carry an individual structural variant of DNA sequence (SV) with small insertions and deletions (INDELs) sometimes less than 10 bp. The transposable elements of the Tc1/mariner superfamily are often associated with hotspots for homologous recombination involved in human genetic disorders, such as Williams Beuren Syndromes (WBS) with LIM-kinase 1-dependent cognitive defects. The Drosophila melanogaster mutant agn(ts3) has unusual architecture of the agnostic locus harboring LIMK1: it is a hotspot of chromosome breaks, ectopic contacts, underreplication, and recombination. Here, we present the analysis of LIMK1-containing locus sequencing data in agn(ts3) and three D. melanogaster wild-type strains—Canton-S, Berlin, and Oregon-R. We found multiple strain-specific SVs, namely, single base changes and small INDEls. The specific feature of agn(ts3) is 28 bp A/T-rich insertion in intron 1 of LIMK1 and the insertion of mobile S-element from Tc1/mariner superfamily residing ~460 bp downstream LIMK1 3′UTR. Neither of SVs leads to amino acid substitutions in agn(ts3) LIMK1. However, they apparently affect the nucleosome distribution, non-canonical DNA structure formation and transcriptional factors binding. Interestingly, the overall expression of miRNAs including the biomarkers for human neurological diseases, is drastically reduced in agn(ts3) relative to the wild-type strains. Thus, LIMK1 DNA structure per se, as well as the pronounced changes in total miRNAs profile, probably lead to LIMK1 dysregulation and complex behavioral dysfunctions observed in agn(ts3) making this mutant a simple plausible Drosophila model for WBS.
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spelling pubmed-56114412017-10-04 Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs Savvateeva-Popova, Elena V. Zhuravlev, Aleksandr V. Brázda, Václav Zakharov, Gennady A. Kaminskaya, Alena N. Medvedeva, Anna V. Nikitina, Ekaterina A. Tokmatcheva, Elena V. Dolgaya, Julia F. Kulikova, Dina A. Zatsepina, Olga G. Funikov, Sergei Y. Ryazansky, Sergei S. Evgen‘ev, Michail B. Front Genet Genetics Genomic disorders, the syndromes with multiple manifestations, may occur sporadically due to unequal recombination in chromosomal regions with specific architecture. Therefore, each patient may carry an individual structural variant of DNA sequence (SV) with small insertions and deletions (INDELs) sometimes less than 10 bp. The transposable elements of the Tc1/mariner superfamily are often associated with hotspots for homologous recombination involved in human genetic disorders, such as Williams Beuren Syndromes (WBS) with LIM-kinase 1-dependent cognitive defects. The Drosophila melanogaster mutant agn(ts3) has unusual architecture of the agnostic locus harboring LIMK1: it is a hotspot of chromosome breaks, ectopic contacts, underreplication, and recombination. Here, we present the analysis of LIMK1-containing locus sequencing data in agn(ts3) and three D. melanogaster wild-type strains—Canton-S, Berlin, and Oregon-R. We found multiple strain-specific SVs, namely, single base changes and small INDEls. The specific feature of agn(ts3) is 28 bp A/T-rich insertion in intron 1 of LIMK1 and the insertion of mobile S-element from Tc1/mariner superfamily residing ~460 bp downstream LIMK1 3′UTR. Neither of SVs leads to amino acid substitutions in agn(ts3) LIMK1. However, they apparently affect the nucleosome distribution, non-canonical DNA structure formation and transcriptional factors binding. Interestingly, the overall expression of miRNAs including the biomarkers for human neurological diseases, is drastically reduced in agn(ts3) relative to the wild-type strains. Thus, LIMK1 DNA structure per se, as well as the pronounced changes in total miRNAs profile, probably lead to LIMK1 dysregulation and complex behavioral dysfunctions observed in agn(ts3) making this mutant a simple plausible Drosophila model for WBS. Frontiers Media S.A. 2017-09-20 /pmc/articles/PMC5611441/ /pubmed/28979292 http://dx.doi.org/10.3389/fgene.2017.00123 Text en Copyright © 2017 Savvateeva-Popova, Zhuravlev, Brázda, Zakharov, Kaminskaya, Medvedeva, Nikitina, Tokmatcheva, Dolgaya, Kulikova, Zatsepina, Funikov, Ryazansky and Evgen‘ev. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Savvateeva-Popova, Elena V.
Zhuravlev, Aleksandr V.
Brázda, Václav
Zakharov, Gennady A.
Kaminskaya, Alena N.
Medvedeva, Anna V.
Nikitina, Ekaterina A.
Tokmatcheva, Elena V.
Dolgaya, Julia F.
Kulikova, Dina A.
Zatsepina, Olga G.
Funikov, Sergei Y.
Ryazansky, Sergei S.
Evgen‘ev, Michail B.
Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title_full Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title_fullStr Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title_full_unstemmed Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title_short Drosophila Model for the Analysis of Genesis of LIM-kinase 1-Dependent Williams-Beuren Syndrome Cognitive Phenotypes: INDELs, Transposable Elements of the Tc1/Mariner Superfamily and MicroRNAs
title_sort drosophila model for the analysis of genesis of lim-kinase 1-dependent williams-beuren syndrome cognitive phenotypes: indels, transposable elements of the tc1/mariner superfamily and micrornas
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5611441/
https://www.ncbi.nlm.nih.gov/pubmed/28979292
http://dx.doi.org/10.3389/fgene.2017.00123
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