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Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing

Sans-fille (SNF) is the Drosophila homologue of mammalian general splicing factors U1A and U2B″, and it is essential in Drosophila sex determination. We found that, besides its ability to bind U1 snRNA, SNF can also bind polyuridine RNA tracts flanking the male-specific exon of the master switch gen...

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Autores principales: Hu, Jicheng, Cui, Gaofeng, Li, Congmin, Liu, Cong, Shang, Erchang, Lai, Luhua, Jin, Changwen, Wang, Jiwu, Xia, Bin
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731243/
https://www.ncbi.nlm.nih.gov/pubmed/19727396
http://dx.doi.org/10.1371/journal.pone.0006890
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author Hu, Jicheng
Cui, Gaofeng
Li, Congmin
Liu, Cong
Shang, Erchang
Lai, Luhua
Jin, Changwen
Wang, Jiwu
Xia, Bin
author_facet Hu, Jicheng
Cui, Gaofeng
Li, Congmin
Liu, Cong
Shang, Erchang
Lai, Luhua
Jin, Changwen
Wang, Jiwu
Xia, Bin
author_sort Hu, Jicheng
collection PubMed
description Sans-fille (SNF) is the Drosophila homologue of mammalian general splicing factors U1A and U2B″, and it is essential in Drosophila sex determination. We found that, besides its ability to bind U1 snRNA, SNF can also bind polyuridine RNA tracts flanking the male-specific exon of the master switch gene Sex-lethal (Sxl) pre-mRNA specifically, similar to Sex-lethal protein (SXL). The polyuridine RNA binding enables SNF directly inhibit Sxl exon 3 splicing, as the dominant negative mutant SNF(1621) binds U1 snRNA but not polyuridine RNA. Unlike U1A, both RNA recognition motifs (RRMs) of SNF can recognize polyuridine RNA tracts independently, even though SNF and U1A share very high sequence identity and overall structure similarity. As SNF RRM1 tends to self-associate on the opposite side of the RNA binding surface, it is possible for SNF to bridge the formation of super-complexes between two introns flanking Sxl exon 3 or between a intron and U1 snRNP, which serves the molecular basis for SNF to directly regulate Sxl splicing. Taken together, a new functional model for SNF in Drosophila sex determination is proposed. The key of the new model is that SXL and SNF function similarly in promoting Sxl male-specific exon skipping with SNF being an auxiliary or backup to SXL, and it is the combined dose of SXL and SNF governs Drosophila sex determination.
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spelling pubmed-27312432009-09-03 Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing Hu, Jicheng Cui, Gaofeng Li, Congmin Liu, Cong Shang, Erchang Lai, Luhua Jin, Changwen Wang, Jiwu Xia, Bin PLoS One Research Article Sans-fille (SNF) is the Drosophila homologue of mammalian general splicing factors U1A and U2B″, and it is essential in Drosophila sex determination. We found that, besides its ability to bind U1 snRNA, SNF can also bind polyuridine RNA tracts flanking the male-specific exon of the master switch gene Sex-lethal (Sxl) pre-mRNA specifically, similar to Sex-lethal protein (SXL). The polyuridine RNA binding enables SNF directly inhibit Sxl exon 3 splicing, as the dominant negative mutant SNF(1621) binds U1 snRNA but not polyuridine RNA. Unlike U1A, both RNA recognition motifs (RRMs) of SNF can recognize polyuridine RNA tracts independently, even though SNF and U1A share very high sequence identity and overall structure similarity. As SNF RRM1 tends to self-associate on the opposite side of the RNA binding surface, it is possible for SNF to bridge the formation of super-complexes between two introns flanking Sxl exon 3 or between a intron and U1 snRNP, which serves the molecular basis for SNF to directly regulate Sxl splicing. Taken together, a new functional model for SNF in Drosophila sex determination is proposed. The key of the new model is that SXL and SNF function similarly in promoting Sxl male-specific exon skipping with SNF being an auxiliary or backup to SXL, and it is the combined dose of SXL and SNF governs Drosophila sex determination. Public Library of Science 2009-09-03 /pmc/articles/PMC2731243/ /pubmed/19727396 http://dx.doi.org/10.1371/journal.pone.0006890 Text en Hu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hu, Jicheng
Cui, Gaofeng
Li, Congmin
Liu, Cong
Shang, Erchang
Lai, Luhua
Jin, Changwen
Wang, Jiwu
Xia, Bin
Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title_full Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title_fullStr Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title_full_unstemmed Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title_short Structure and Novel Functional Mechanism of Drosophila SNF in Sex-Lethal Splicing
title_sort structure and novel functional mechanism of drosophila snf in sex-lethal splicing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731243/
https://www.ncbi.nlm.nih.gov/pubmed/19727396
http://dx.doi.org/10.1371/journal.pone.0006890
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