Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast
The mechanisms of pre-mRNA splicing regulation are poorly understood. Here we dissect how the Saccharomyces cerevisiae ribosomal L30 protein blocks splicing of its pre-mRNA upon binding a kink-turn structure including the 5' splice site. We show that L30 binds the nascent RPL30 transcript witho...
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Universitat Pompeu Fabra
2008
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ndltd-TDX_UPF-oai-www.tdx.cat-10803-71122013-07-11T03:41:52ZMechanism of regulation of the RPL30 pre-mRNA splicing in yeastMacías Ribela, Sarapoylpyrimidine tract (Ppy tract)branch site (BS)' splice site (3'ss)5' splice site (5'ss)intronL30RPL30U2 snRNPU1 snRNPtranscriptionregulation of splicingspliceosome assemblysplicinggene expression57The mechanisms of pre-mRNA splicing regulation are poorly understood. Here we dissect how the Saccharomyces cerevisiae ribosomal L30 protein blocks splicing of its pre-mRNA upon binding a kink-turn structure including the 5' splice site. We show that L30 binds the nascent RPL30 transcript without preventing recognition of the 5' splice site by U1 snRNP but blocking U2 snRNP association with the branch site. Interaction of the factors BBP and Mud2p with the intron, relevant for U2 snRNP recruitment, is not affected by L30. Furthermore, the functions of neither the DEAD-box protein Sub2p in the incipient spliceosome, nor of the U2 snRNP factor Cus2p on branch site recognition, are required for L30 inhibition. These findings contrast with the effects caused by binding a heterologous protein to the same region, completely blocking intron recognition. Collectively, our data suggest that L30 represses a spliceosomal rearrangement required for U2 snRNP association with the nascent RPL30 transcript.Universitat Pompeu FabraVilardell, JosepUniversitat Pompeu Fabra. Departament de Ciències Experimentals i de la Salut2008-06-13info:eu-repo/semantics/doctoralThesisinfo:eu-repo/semantics/publishedVersionapplication/pdfhttp://hdl.handle.net/10803/7112urn:isbn:9788469216910TDX (Tesis Doctorals en Xarxa)engADVERTIMENT. L'accés als continguts d'aquesta tesi doctoral i la seva utilització ha de respectar els drets de la persona autora. Pot ser utilitzada per a consulta o estudi personal, així com en activitats o materials d'investigació i docència en els termes establerts a l'art. 32 del Text Refós de la Llei de Propietat Intel·lectual (RDL 1/1996). Per altres utilitzacions es requereix l'autorització prèvia i expressa de la persona autora. En qualsevol cas, en la utilització dels seus continguts caldrà indicar de forma clara el nom i cognoms de la persona autora i el títol de la tesi doctoral. No s'autoritza la seva reproducció o altres formes d'explotació efectuades amb finalitats de lucre ni la seva comunicació pública des d'un lloc aliè al servei TDX. Tampoc s'autoritza la presentació del seu contingut en una finestra o marc aliè a TDX (framing). Aquesta reserva de drets afecta tant als continguts de la tesi com als seus resums i índexs.info:eu-repo/semantics/openAccess |
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language |
English |
format |
Doctoral Thesis |
sources |
NDLTD |
topic |
poylpyrimidine tract (Ppy tract) branch site (BS) ' splice site (3'ss) 5' splice site (5'ss) intron L30 RPL30 U2 snRNP U1 snRNP transcription regulation of splicing spliceosome assembly splicing gene expression 57 |
spellingShingle |
poylpyrimidine tract (Ppy tract) branch site (BS) ' splice site (3'ss) 5' splice site (5'ss) intron L30 RPL30 U2 snRNP U1 snRNP transcription regulation of splicing spliceosome assembly splicing gene expression 57 Macías Ribela, Sara Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
description |
The mechanisms of pre-mRNA splicing regulation are poorly understood. Here we dissect how the Saccharomyces cerevisiae ribosomal L30 protein blocks splicing of its pre-mRNA upon binding a kink-turn structure including the 5' splice site. We show that L30 binds the nascent RPL30 transcript without preventing recognition of the 5' splice site by U1 snRNP but blocking U2 snRNP association with the branch site. Interaction of the factors BBP and Mud2p with the intron, relevant for U2 snRNP recruitment, is not affected by L30. Furthermore, the functions of neither the DEAD-box protein Sub2p in the incipient spliceosome, nor of the U2 snRNP factor Cus2p on branch site recognition, are required for L30 inhibition. These findings contrast with the effects caused by binding a heterologous protein to the same region, completely blocking intron recognition. Collectively, our data suggest that L30 represses a spliceosomal rearrangement required for U2 snRNP association with the nascent RPL30 transcript. |
author2 |
Vilardell, Josep |
author_facet |
Vilardell, Josep Macías Ribela, Sara |
author |
Macías Ribela, Sara |
author_sort |
Macías Ribela, Sara |
title |
Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
title_short |
Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
title_full |
Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
title_fullStr |
Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
title_full_unstemmed |
Mechanism of regulation of the RPL30 pre-mRNA splicing in yeast |
title_sort |
mechanism of regulation of the rpl30 pre-mrna splicing in yeast |
publisher |
Universitat Pompeu Fabra |
publishDate |
2008 |
url |
http://hdl.handle.net/10803/7112 http://nbn-resolving.de/urn:isbn:9788469216910 |
work_keys_str_mv |
AT maciasribelasara mechanismofregulationoftherpl30premrnasplicinginyeast |
_version_ |
1716592762698072064 |