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1.
PLoS One ; 8(7): e68412, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23874617

RESUMO

During the assembly process of ribosomal subunits, their structural components, the ribosomal RNAs (rRNAs) and the ribosomal proteins (r-proteins) have to join together in a highly dynamic and defined manner to enable the efficient formation of functional ribosomes. In this work, the assembly of large ribosomal subunit (LSU) r-proteins from the eukaryote S. cerevisiae was systematically investigated. Groups of LSU r-proteins with specific assembly characteristics were detected by comparing the protein composition of affinity purified early, middle, late or mature LSU (precursor) particles by semi-quantitative mass spectrometry. The impact of yeast LSU r-proteins rpL25, rpL2, rpL43, and rpL21 on the composition of intermediate to late nuclear LSU precursors was analyzed in more detail. Effects of these proteins on the assembly states of other r-proteins and on the transient LSU precursor association of several ribosome biogenesis factors, including Nog2, Rsa4 and Nop53, are discussed.


Assuntos
Multimerização Proteica/fisiologia , Proteínas Ribossômicas/metabolismo , Subunidades Ribossômicas Maiores/metabolismo , Saccharomyces cerevisiae/metabolismo , Cromatografia de Afinidade , Espectrometria de Massas , Proteoma/análise , Proteômica/métodos , Precursores de RNA/análise , Precursores de RNA/metabolismo , Processamento Pós-Transcricional do RNA , Proteínas Ribossômicas/química , Subunidades Ribossômicas Maiores/química , Saccharomyces cerevisiae/química , Proteínas de Saccharomyces cerevisiae/química , Proteínas de Saccharomyces cerevisiae/metabolismo
2.
J Cell Sci ; 125(Pt 19): 4532-42, 2012 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-22767511

RESUMO

Understanding the relationship between the topological dynamics of nuclear subdomains and their molecular function is a central issue in nucleus biology. Pre-nucleolar bodies (PNBs) are transient nuclear subdomains, which form at telophase and contain nucleolar proteins, snoRNPs and pre-ribosomal RNAs (pre-rRNAs). These structures gradually disappear in early G1 phase and are currently regarded as reservoirs of nucleolar factors that participate to post-mitotic reassembly of the nucleolus. Here, we provide evidence from fluorescence in situ hybridization and loss-of-function experiments in HeLa cells that PNBs are in fact active ribosome factories in which maturation of the pre-rRNAs transiting through mitosis resumes at telophase. We show that the pre-rRNA spacers are sequentially removed in PNBs when cells enter G1 phase, indicating regular pre-rRNA processing as in the nucleolus. Accordingly, blocking pre-rRNA maturation induces accumulation in PNBs of stalled pre-ribosomes characterised by specific pre-rRNAs and pre-ribosomal factors. The presence of pre-ribosomal particles in PNBs is corroborated by observation of these domains by correlative electron tomography. Most importantly, blocking pre-rRNA maturation also prevents the gradual disappearance of PNBs, which persist for several hours in the nucleoplasm. In a revised model, we propose that PNBs are autonomous extra-nucleolar ribosome maturation sites, whose orderly disassembly in G1 phase is driven by the maturation and release of their pre-ribosome content.


Assuntos
Nucléolo Celular/metabolismo , Mitose/genética , Precursores de RNA/metabolismo , Processamento Pós-Transcricional do RNA/genética , Nucléolo Celular/ultraestrutura , Tomografia com Microscopia Eletrônica , Fase G1/genética , Técnicas de Silenciamento de Genes , Células HeLa , Humanos , Modelos Biológicos , Precursores de RNA/genética , RNA Interferente Pequeno/metabolismo , RNA Nucleolar Pequeno/genética , RNA Nucleolar Pequeno/metabolismo , Proteínas Ribossômicas/metabolismo
3.
RNA Biol ; 9(2): 162-74, 2012 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-22418843

RESUMO

Maturation of the 40S ribosomal subunit precursors in mammals mobilizes several non-ribosomal proteins, including the atypical protein kinase RioK2. Here, we have investigated the involvement of another member of the RIO kinase family, RioK3, in human ribosome biogenesis. RioK3 is a cytoplasmic protein that does not seem to shuttle between nucleus and cytoplasm via a Crm1-dependent mechanism as does RioK2 and which sediments with cytoplasmic 40S ribosomal particles in a sucrose gradient. When the small ribosomal subunit biogenesis is impaired by depletion of either rpS15, rpS19 or RioK2, a concomitant decrease in the amount of RioK3 is observed. Surprisingly, we observed a dramatic and specific increase in the levels of RioK3 when the biogenesis of the large ribosomal subunit is impaired. A fraction of RioK3 is associated with the non ribosomal pre-40S particle components hLtv1 and hEnp1 as well as with the 18S-E pre-rRNA indicating that it belongs to a bona fide cytoplasmic pre-40S particle. Finally, RioK3 depletion leads to an increase in the levels of the 21S rRNA precursor in the 18S rRNA production pathway. Altogether, our results strongly suggest that RioK3 is a novel cytoplasmic component of pre-40S pre-ribosomal particle(s) in human cells, required for normal processing of the 21S pre-rRNA.


Assuntos
Citoplasma/metabolismo , Proteínas Serina-Treonina Quinases/metabolismo , Precursores de RNA/metabolismo , Subunidades Ribossômicas Menores de Eucariotos/enzimologia , Motivos de Aminoácidos , Sequência de Aminoácidos , Células HeLa , Humanos , Dados de Sequência Molecular , Ligação Proteica , Proteínas Serina-Treonina Quinases/química , RNA Ribossômico 18S/metabolismo , Subunidades Ribossômicas Menores de Eucariotos/metabolismo , Alinhamento de Sequência
4.
Nucleic Acids Res ; 39(1): 280-91, 2011 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-20805244

RESUMO

Recent studies reveal that maturation of the 40S ribosomal subunit precursors in mammals includes an additional step during processing of the internal transcribed spacer 1 (ITS1), when compared with yeast Saccharomyces cerevisiae, even though the protein content of the pre-40S particle appears to be the same. Here, we examine by depletion with siRNA treatment the function of human orthologs of two essential yeast pre-ribosomal factors, hEnp1/bystin and hTsr1. Like their yeast orthologs, bystin is required for efficient cleavage of the ITS1 and further processing of this domain within the pre-40S particles, whereas hTsr1 is necessary for the final maturation steps. However, bystin depletion leads to accumulation of an unusual 18S rRNA precursor, revealing a new step in ITS1 processing that potentially involves an exonuclease. In addition, pre-40S particles lacking hTsr1 are partially retained in the nucleus, whereas depletion of Tsr1p in yeast results in strong cytoplasmic accumulation of pre-40S particles. These data indicate that ITS1 processing in human cells may be more complex than currently envisioned and that coordination between maturation and nuclear export of pre-40S particles has evolved differently in yeast and mammalian cells.


Assuntos
Moléculas de Adesão Celular/fisiologia , Processamento Pós-Transcricional do RNA , RNA Ribossômico/metabolismo , Proteínas Ribossômicas/fisiologia , Subunidades Ribossômicas Menores de Eucariotos/metabolismo , Transporte Ativo do Núcleo Celular , Evolução Biológica , Moléculas de Adesão Celular/antagonistas & inibidores , Moléculas de Adesão Celular/química , Núcleo Celular/metabolismo , Técnicas de Silenciamento de Genes , Células HeLa , Humanos , Proteínas Nucleares/química , Precursores de RNA/metabolismo , Proteínas Ribossômicas/antagonistas & inibidores , Proteínas Ribossômicas/química , Proteínas de Saccharomyces cerevisiae/química , Homologia de Sequência de Aminoácidos
5.
J Cell Biol ; 190(5): 853-66, 2010 Sep 06.
Artigo em Inglês | MEDLINE | ID: mdl-20819938

RESUMO

Our knowledge of the functions of metazoan ribosomal proteins in ribosome synthesis remains fragmentary. Using siRNAs, we show that knockdown of 31 of the 32 ribosomal proteins of the human 40S subunit (ribosomal protein of the small subunit [RPS]) strongly affects pre-ribosomal RNA (rRNA) processing, which often correlates with nucleolar chromatin disorganization. 16 RPSs are strictly required for initiating processing of the sequences flanking the 18S rRNA in the pre-rRNA except at the metazoan-specific early cleavage site. The remaining 16 proteins are necessary for progression of the nuclear and cytoplasmic maturation steps and for nuclear export. Distribution of these two subsets of RPSs in the 40S subunit structure argues for a tight dependence of pre-rRNA processing initiation on the folding of both the body and the head of the forming subunit. Interestingly, the functional dichotomy of RPS proteins reported in this study is correlated with the mutation frequency of RPS genes in Diamond-Blackfan anemia.


Assuntos
Proteínas Ribossômicas/genética , Proteínas Ribossômicas/metabolismo , Subunidades Ribossômicas Menores de Eucariotos/metabolismo , Transporte Ativo do Núcleo Celular/genética , Anemia de Diamond-Blackfan/genética , Anemia de Diamond-Blackfan/metabolismo , Nucléolo Celular/genética , Nucléolo Celular/metabolismo , Núcleo Celular/genética , Núcleo Celular/metabolismo , Cromatina/metabolismo , Citoplasma/genética , Citoplasma/metabolismo , Células HeLa , Humanos , Mutação , Precursores de RNA/análise , Precursores de RNA/genética , Precursores de RNA/metabolismo , RNA Ribossômico/química , RNA Ribossômico/genética , RNA Ribossômico/metabolismo , RNA Ribossômico 18S/análise , RNA Ribossômico 18S/genética , RNA Ribossômico 18S/metabolismo , RNA Interferente Pequeno/análise , RNA Interferente Pequeno/genética , RNA Interferente Pequeno/metabolismo , Proteínas Ribossômicas/análise , Ribossomos/química , Ribossomos/genética , Ribossomos/metabolismo
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