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Generation of a Useful roX1 Allele by Targeted Gene Conversion

Methods for altering the sequence of endogenous Drosophila melanogaster genes remain labor-intensive. We have tested a relatively simple strategy that enables the introduction of engineered mutations in the vicinity of existing P-elements. This method was used to generate useful alleles of the roX1...

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Autores principales: Apte, Manasi S., Moran, Victoria A., Menon, Debashish U., Rattner, Barbara P., Barry, Kathryn Hughes, Zunder, Rachel M., Kelley, Richard, Meller, Victoria H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3887531/
https://www.ncbi.nlm.nih.gov/pubmed/24281425
http://dx.doi.org/10.1534/g3.113.008508
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author Apte, Manasi S.
Moran, Victoria A.
Menon, Debashish U.
Rattner, Barbara P.
Barry, Kathryn Hughes
Zunder, Rachel M.
Kelley, Richard
Meller, Victoria H.
author_facet Apte, Manasi S.
Moran, Victoria A.
Menon, Debashish U.
Rattner, Barbara P.
Barry, Kathryn Hughes
Zunder, Rachel M.
Kelley, Richard
Meller, Victoria H.
author_sort Apte, Manasi S.
collection PubMed
description Methods for altering the sequence of endogenous Drosophila melanogaster genes remain labor-intensive. We have tested a relatively simple strategy that enables the introduction of engineered mutations in the vicinity of existing P-elements. This method was used to generate useful alleles of the roX1 gene, which produces a noncoding RNA involved in dosage compensation. The desired change was first introduced into a genomic clone of roX1 and transgenic flies were generated that carry this sequence in a P-element. Targeted transposition was then used to move the P-element into roX1. Remobilization of the targeted insertion produced large numbers of offspring carrying chromosomes that had precisely introduced the engineered sequences into roX1. We postulate that this occurred by gap repair, using the P-element on the sister chromatid as template. This strategy was used to introduce six MS2 loops into the roX1 gene (roX1(MS2-6)), enabling detection of roX1 RNA by a MCP-GFP fusion protein in embryos. The roX1(MS2-6) remains under the control of the authentic promoter and within the correct genomic context, features expected to contribute to normal roX1 function. The ability to replace relatively large blocks of sequence suggests that this method will be of general use.
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spelling pubmed-38875312014-01-10 Generation of a Useful roX1 Allele by Targeted Gene Conversion Apte, Manasi S. Moran, Victoria A. Menon, Debashish U. Rattner, Barbara P. Barry, Kathryn Hughes Zunder, Rachel M. Kelley, Richard Meller, Victoria H. G3 (Bethesda) Investigations Methods for altering the sequence of endogenous Drosophila melanogaster genes remain labor-intensive. We have tested a relatively simple strategy that enables the introduction of engineered mutations in the vicinity of existing P-elements. This method was used to generate useful alleles of the roX1 gene, which produces a noncoding RNA involved in dosage compensation. The desired change was first introduced into a genomic clone of roX1 and transgenic flies were generated that carry this sequence in a P-element. Targeted transposition was then used to move the P-element into roX1. Remobilization of the targeted insertion produced large numbers of offspring carrying chromosomes that had precisely introduced the engineered sequences into roX1. We postulate that this occurred by gap repair, using the P-element on the sister chromatid as template. This strategy was used to introduce six MS2 loops into the roX1 gene (roX1(MS2-6)), enabling detection of roX1 RNA by a MCP-GFP fusion protein in embryos. The roX1(MS2-6) remains under the control of the authentic promoter and within the correct genomic context, features expected to contribute to normal roX1 function. The ability to replace relatively large blocks of sequence suggests that this method will be of general use. Genetics Society of America 2013-11-26 /pmc/articles/PMC3887531/ /pubmed/24281425 http://dx.doi.org/10.1534/g3.113.008508 Text en Copyright © 2014 Apte et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Apte, Manasi S.
Moran, Victoria A.
Menon, Debashish U.
Rattner, Barbara P.
Barry, Kathryn Hughes
Zunder, Rachel M.
Kelley, Richard
Meller, Victoria H.
Generation of a Useful roX1 Allele by Targeted Gene Conversion
title Generation of a Useful roX1 Allele by Targeted Gene Conversion
title_full Generation of a Useful roX1 Allele by Targeted Gene Conversion
title_fullStr Generation of a Useful roX1 Allele by Targeted Gene Conversion
title_full_unstemmed Generation of a Useful roX1 Allele by Targeted Gene Conversion
title_short Generation of a Useful roX1 Allele by Targeted Gene Conversion
title_sort generation of a useful rox1 allele by targeted gene conversion
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3887531/
https://www.ncbi.nlm.nih.gov/pubmed/24281425
http://dx.doi.org/10.1534/g3.113.008508
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