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1.
Elife ; 82019 12 19.
Artigo em Inglês | MEDLINE | ID: mdl-31855182

RESUMO

mRNA translation and decay appear often intimately linked although the rules of this interplay are poorly understood. In this study, we combined our recent P-body transcriptome with transcriptomes obtained following silencing of broadly acting mRNA decay and repression factors, and with available CLIP and related data. This revealed the central role of GC content in mRNA fate, in terms of P-body localization, mRNA translation and mRNA stability: P-bodies contain mostly AU-rich mRNAs, which have a particular codon usage associated with a low protein yield; AU-rich and GC-rich transcripts tend to follow distinct decay pathways; and the targets of sequence-specific RBPs and miRNAs are also biased in terms of GC content. Altogether, these results suggest an integrated view of post-transcriptional control in human cells where most translation regulation is dedicated to inefficiently translated AU-rich mRNAs, whereas control at the level of 5' decay applies to optimally translated GC-rich mRNAs.


Assuntos
Composição de Bases/genética , Estabilidade de RNA/genética , RNA Mensageiro Estocado/genética , RNA Mensageiro/genética , Regulação da Expressão Gênica/genética , Humanos , MicroRNAs/química , MicroRNAs/genética , Biossíntese de Proteínas/genética , RNA Mensageiro/química , RNA Mensageiro Estocado/química , Transcriptoma/genética
2.
Am J Hum Genet ; 105(3): 509-525, 2019 09 05.
Artigo em Inglês | MEDLINE | ID: mdl-31422817

RESUMO

The human RNA helicase DDX6 is an essential component of membrane-less organelles called processing bodies (PBs). PBs are involved in mRNA metabolic processes including translational repression via coordinated storage of mRNAs. Previous studies in human cell lines have implicated altered DDX6 in molecular and cellular dysfunction, but clinical consequences and pathogenesis in humans have yet to be described. Here, we report the identification of five rare de novo missense variants in DDX6 in probands presenting with intellectual disability, developmental delay, and similar dysmorphic features including telecanthus, epicanthus, arched eyebrows, and low-set ears. All five missense variants (p.His372Arg, p.Arg373Gln, p.Cys390Arg, p.Thr391Ile, and p.Thr391Pro) are located in two conserved motifs of the RecA-2 domain of DDX6 involved in RNA binding, helicase activity, and protein-partner binding. We use functional studies to demonstrate that the first variants identified (p.Arg373Gln and p.Cys390Arg) cause significant defects in PB assembly in primary fibroblast and model human cell lines. These variants' interactions with several protein partners were also disrupted in immunoprecipitation assays. Further investigation via complementation assays included the additional variants p.Thr391Ile and p.Thr391Pro, both of which, similarly to p.Arg373Gln and p.Cys390Arg, demonstrated significant defects in P-body assembly. Complementing these molecular findings, modeling of the variants on solved protein structures showed distinct spatial clustering near known protein binding regions. Collectively, our clinical and molecular data describe a neurodevelopmental syndrome associated with pathogenic missense variants in DDX6. Additionally, we suggest DDX6 join the DExD/H-box genes DDX3X and DHX30 in an emerging class of neurodevelopmental disorders involving RNA helicases.


Assuntos
RNA Helicases DEAD-box/genética , Deficiência Intelectual/genética , Mutação de Sentido Incorreto , Proteínas Proto-Oncogênicas/genética , RNA/genética , Humanos
4.
Mol Cell ; 68(1): 144-157.e5, 2017 Oct 05.
Artigo em Inglês | MEDLINE | ID: mdl-28965817

RESUMO

Within cells, soluble RNPs can switch states to coassemble and condense into liquid or solid bodies. Although these phase transitions have been reconstituted in vitro, for endogenous bodies the diversity of the components, the specificity of the interaction networks, and the function of the coassemblies remain to be characterized. Here, by developing a fluorescence-activated particle sorting (FAPS) method to purify cytosolic processing bodies (P-bodies) from human epithelial cells, we identified hundreds of proteins and thousands of mRNAs that structure a dense network of interactions, separating P-body from non-P-body RNPs. mRNAs segregating into P-bodies are translationally repressed, but not decayed, and this repression explains part of the poor genome-wide correlation between RNA and protein abundance. P-bodies condense thousands of mRNAs that strikingly encode regulatory processes. Thus, we uncovered how P-bodies, by condensing and segregating repressed mRNAs, provide a physical substrate for the coordinated regulation of posttranscriptional mRNA regulons.


Assuntos
Regulação da Expressão Gênica , Proteoma/genética , RNA Mensageiro/genética , Regulon , Ribonucleoproteínas/genética , Fracionamento Celular , Citoplasma/metabolismo , Grânulos Citoplasmáticos/química , Grânulos Citoplasmáticos/metabolismo , Ontologia Genética , Células HEK293 , Células HeLa , Humanos , Anotação de Sequência Molecular , Transição de Fase , Biossíntese de Proteínas , Proteoma/metabolismo , Estabilidade de RNA , RNA Mensageiro/metabolismo , Ribonucleoproteínas/metabolismo
5.
Nucleic Acids Res ; 44(13): 6318-34, 2016 07 27.
Artigo em Inglês | MEDLINE | ID: mdl-27342281

RESUMO

4E-Transporter binds eIF4E via its consensus sequence YXXXXLΦ, shared with eIF4G, and is a nucleocytoplasmic shuttling protein found enriched in P-(rocessing) bodies. 4E-T inhibits general protein synthesis by reducing available eIF4E levels. Recently, we showed that 4E-T bound to mRNA however represses its translation in an eIF4E-independent manner, and contributes to silencing of mRNAs targeted by miRNAs. Here, we address further the mechanism of translational repression by 4E-T by first identifying and delineating the interacting sites of its major partners by mass spectrometry and western blotting, including DDX6, UNR, unrip, PAT1B, LSM14A and CNOT4. Furthermore, we document novel binding between 4E-T partners including UNR-CNOT4 and unrip-LSM14A, altogether suggesting 4E-T nucleates a complex network of RNA-binding protein interactions. In functional assays, we demonstrate that joint deletion of two short conserved motifs that bind UNR and DDX6 relieves repression of 4E-T-bound mRNA, in part reliant on the 4E-T-DDX6-CNOT1 axis. We also show that the DDX6-4E-T interaction mediates miRNA-dependent translational repression and de novo P-body assembly, implying that translational repression and formation of new P-bodies are coupled processes. Altogether these findings considerably extend our understanding of the role of 4E-T in gene regulation, important in development and neurogenesis.


Assuntos
RNA Helicases DEAD-box/metabolismo , Proteínas de Ligação a DNA/metabolismo , Fator de Iniciação 4E em Eucariotos/metabolismo , Proteínas de Transporte Nucleocitoplasmático/metabolismo , Biossíntese de Proteínas , Proteínas Proto-Oncogênicas/metabolismo , Proteínas de Ligação a RNA/metabolismo , Fatores de Transcrição/metabolismo , Sequência de Aminoácidos/genética , Sítios de Ligação , RNA Helicases DEAD-box/genética , Proteínas de Ligação a DNA/genética , Fator de Iniciação 4E em Eucariotos/genética , Fator de Iniciação Eucariótico 4G/genética , Fator de Iniciação Eucariótico 4G/metabolismo , Regulação da Expressão Gênica/genética , Células HEK293 , Células HeLa , Humanos , Proteínas de Transporte Nucleocitoplasmático/genética , Ligação Proteica , Mapas de Interação de Proteínas/genética , Proteínas Proto-Oncogênicas/genética , RNA Interferente Pequeno/genética , Proteínas de Ligação a RNA/genética , Fatores de Transcrição/genética
6.
Genome Biol Evol ; 8(1): 109-25, 2015 Nov 27.
Artigo em Inglês | MEDLINE | ID: mdl-26615215

RESUMO

Physarum polycephalum is a well-studied microbial eukaryote with unique experimental attributes relative to other experimental model organisms. It has a sophisticated life cycle with several distinct stages including amoebal, flagellated, and plasmodial cells. It is unusual in switching between open and closed mitosis according to specific life-cycle stages. Here we present the analysis of the genome of this enigmatic and important model organism and compare it with closely related species. The genome is littered with simple and complex repeats and the coding regions are frequently interrupted by introns with a mean size of 100 bases. Complemented with extensive transcriptome data, we define approximately 31,000 gene loci, providing unexpected insights into early eukaryote evolution. We describe extensive use of histidine kinase-based two-component systems and tyrosine kinase signaling, the presence of bacterial and plant type photoreceptors (phytochromes, cryptochrome, and phototropin) and of plant-type pentatricopeptide repeat proteins, as well as metabolic pathways, and a cell cycle control system typically found in more complex eukaryotes. Our analysis characterizes P. polycephalum as a prototypical eukaryote with features attributed to the last common ancestor of Amorphea, that is, the Amoebozoa and Opisthokonts. Specifically, the presence of tyrosine kinases in Acanthamoeba and Physarum as representatives of two distantly related subdivisions of Amoebozoa argues against the later emergence of tyrosine kinase signaling in the opisthokont lineage and also against the acquisition by horizontal gene transfer.


Assuntos
Evolução Molecular , Genoma de Protozoário , Physarum polycephalum/genética , Proteínas de Protozoários/genética , Receptores Proteína Tirosina Quinases/genética , Transdução de Sinais , Proteínas de Ciclo Celular/genética , Proteínas de Ciclo Celular/metabolismo , Loci Gênicos , Proteínas de Protozoários/metabolismo , Receptores Proteína Tirosina Quinases/metabolismo , Transcriptoma
7.
Mol Biol Cell ; 26(14): 2579-95, 2015 Jul 15.
Artigo em Inglês | MEDLINE | ID: mdl-25995375

RESUMO

P-bodies are cytoplasmic ribonucleoprotein granules involved in posttranscriptional regulation. DDX6 is a key component of their assembly in human cells. This DEAD-box RNA helicase is known to be associated with various complexes, including the decapping complex, the CPEB repression complex, RISC, and the CCR4/NOT complex. To understand which DDX6 complexes are required for P-body assembly, we analyzed the DDX6 interactome using the tandem-affinity purification methodology coupled to mass spectrometry. Three complexes were prominent: the decapping complex, a CPEB-like complex, and an Ataxin2/Ataxin2L complex. The exon junction complex was also found, suggesting DDX6 binding to newly exported mRNAs. Finally, some DDX6 was associated with polysomes, as previously reported in yeast. Despite its high enrichment in P-bodies, most DDX6 is localized out of P-bodies. Of the three complexes, only the decapping and CPEB-like complexes were recruited into P-bodies. Investigation of P-body assembly in various conditions allowed us to distinguish required proteins from those that are dispensable or participate only in specific conditions. Three proteins were required in all tested conditions: DDX6, 4E-T, and LSM14A. These results reveal the variety of pathways of P-body assembly, which all nevertheless share three key factors connecting P-body assembly to repression.


Assuntos
Grânulos Citoplasmáticos/metabolismo , RNA Helicases DEAD-box/metabolismo , Proteínas Proto-Oncogênicas/metabolismo , Ribonucleoproteínas/metabolismo , Ataxina-2/metabolismo , Humanos , Proteínas do Tecido Nervoso/metabolismo , Proteínas de Transporte Nucleocitoplasmático/metabolismo , Ligação Proteica , RNA Mensageiro/metabolismo
8.
Chromosoma ; 123(6): 577-85, 2014 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-24951952

RESUMO

The addition of hydroxyurea after the onset of S phase allows replication to start and permits the successive detecting of replication-dependent joint DNA molecules and chicken foot structures in the synchronous nuclei of Physarum polycephalum. We find evidence for a very high frequency of reversed replication forks upon replication stress. The formation of these reversed forks is dependent on the presence of joint DNA molecules, the impediment of the replication fork progression by hydroxyurea, and likely on the propensity of some replication origins to reinitiate replication to counteract the action of this compound. As hydroxyurea treatment enables us to successively detect the appearance of joint DNA molecules and then of reversed replication forks, we propose that chicken foot structures are formed both from the regression of hydroxyurea-frozen joint DNA molecules and from hydroxyurea-stalled replication forks. These experiments underscore the transient nature of replication fork regression, which becomes detectable due to the hydroxyurea-induced slowing down of replication fork progression.


Assuntos
Replicação do DNA/efeitos dos fármacos , Physarum polycephalum/genética , Fase S/genética , Estresse Fisiológico/genética , DNA Cruciforme , DNA de Protozoário/metabolismo , Recombinação Homóloga , Hidroxiureia/farmacologia , Physarum polycephalum/efeitos dos fármacos , Physarum polycephalum/metabolismo , Fase S/efeitos dos fármacos
9.
Mol Biol Cell ; 25(1): 169-83, 2014 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24173718

RESUMO

Paraspeckles are subnuclear structures formed around nuclear paraspeckle assembly transcript 1 (NEAT1)/MENε/ß long noncoding RNA (lncRNA). Here we show that paraspeckles become dramatically enlarged after proteasome inhibition. This enlargement is mainly caused by NEAT1 transcriptional up-regulation rather than accumulation of undegraded paraspeckle proteins. Of interest, however, using immuno-electron microscopy, we find that key paraspeckle proteins become effectively depleted from the nucleoplasm by 50% when paraspeckle assembly is enhanced, suggesting a sequestration mechanism. We also perform microarrays from NEAT1-knockdown cells and find that NEAT1 represses transcription of several genes, including the RNA-specific adenosine deaminase B2 (ADARB2) gene. In contrast, the NEAT1-binding paraspeckle protein splicing factor proline/glutamine-rich (SFPQ) is required for ADARB2 transcription. This leads us to hypothesize that ADARB2 expression is controlled by NEAT1-dependent sequestration of SFPQ. Accordingly, we find that ADARB2 expression is strongly reduced upon enhanced SFPQ sequestration by proteasome inhibition, with concomitant reduction in SFPQ binding to the ADARB2 promoter. Finally, NEAT1(-/-) fibroblasts are more sensitive to proteasome inhibition, which triggers cell death, suggesting that paraspeckles/NEAT1 attenuates the cell death pathway. These data further confirm that paraspeckles are stress-responsive nuclear bodies and provide a model in which induced NEAT1 controls target gene transcription by protein sequestration into paraspeckles.


Assuntos
Núcleo Celular/metabolismo , Regulação da Expressão Gênica , RNA Longo não Codificante/genética , Transcrição Gênica , Adenosina Desaminase/genética , Adenosina Desaminase/metabolismo , Núcleo Celular/ultraestrutura , Proteínas de Ligação a DNA , Células HeLa , Humanos , Leupeptinas/farmacologia , Proteínas Associadas à Matriz Nuclear/metabolismo , Fatores de Transcrição de Octâmero/metabolismo , Regiões Promotoras Genéticas , Complexo de Endopeptidases do Proteassoma/metabolismo , Inibidores de Proteassoma/farmacologia , Transporte Proteico , Proteólise , RNA Longo não Codificante/metabolismo , Proteínas de Ligação a RNA/metabolismo
10.
RNA ; 18(9): 1702-15, 2012 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-22836354

RESUMO

Translational repression is achieved by protein complexes that typically bind 3' UTR mRNA motifs and interfere with the formation of the cap-dependent initiation complex, resulting in mRNPs with a closed-loop conformation. We demonstrate here that the human DEAD-box protein Rck/p54, which is a component of such complexes and central to P-body assembly, is in considerable molecular excess with respect to cellular mRNAs and enriched to a concentration of 0.5 mM in P-bodies, where it is organized in clusters. Accordingly, multiple binding of p54 proteins along mRNA molecules was detected in vivo. Consistently, the purified protein bound RNA with no sequence specificity and high nanomolar affinity. Moreover, bound RNA molecules had a relaxed conformation. While RNA binding was ATP independent, relaxing of bound RNA was dependent on ATP, though not on its hydrolysis. We propose that Rck/p54 recruitment by sequence-specific translational repressors leads to further binding of Rck/p54 along mRNA molecules, resulting in their masking, unwinding, and ultimately recruitment to P-bodies. Rck/p54 proteins located at the 5' extremity of mRNA can then recruit the decapping complex, thus coupling translational repression and mRNA degradation.


Assuntos
RNA Helicases DEAD-box/metabolismo , Proteínas Proto-Oncogênicas/metabolismo , RNA Mensageiro/metabolismo , Trifosfato de Adenosina/metabolismo , Células HeLa , Humanos , Modelos Biológicos , Ligação Proteica , Domínios e Motivos de Interação entre Proteínas , Multimerização Proteica
11.
Biochimie ; 94(7): 1572-7, 2012 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-22445682

RESUMO

Micro-RNAs (miRNAs) are major actors of RNA interference (RNAi), a regulation pathway which leads to translational repression and/or degradation of specific mRNAs. They provide target specificity by incorporating into the RISC complex and guiding its binding to mRNA. Since the discovery of RNAi, many progresses have been made on the mechanism of action of the RISC complex and on the identification of target mRNAs. However, the regulation of RNAi has been poorly investigated so far. Recently, various studies have revealed physical and functional relationships between RNAi, P-bodies and mitochondria. This review intends to recapitulate these data and discuss their potential importance in cell metabolism.


Assuntos
Grânulos Citoplasmáticos/genética , Mitocôndrias/genética , Interferência de RNA , Animais , Linhagem Celular , Citosol/metabolismo , Humanos , MicroRNAs/genética
12.
Chromosoma ; 119(6): 601-11, 2010 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-20607271

RESUMO

Transient four stranded joint DNA molecules bridging sister chromatids constitute an intriguing feature of replicating genomes. Here, we studied their structure and frequency of formation in Physarum polycephalum. By "3D gels", we evidenced that they are not made of four continuous DNA strands. Discontinuities, which do not interfere with the unique propensity of the joint DNA molecules to branch migrate in vitro, are linked to the crossover, enhanced by RNaseA, and affect at most half of the DNA strands. We propose a structural model of joint DNA molecules containing ribonucleotides inserted within one strand, a gapped strand, and two continuous DNA strands. We further show that spontaneous joint DNA molecules are short-lived and are as abundant as replication forks. Our results emphasize the highly frequent formation of joint DNA molecules involving newly replicated DNA in an untreated cell and uncover a transitory mechanism connecting the sister chromatids during S phase.


Assuntos
Troca Genética , Replicação do DNA , DNA de Protozoário/genética , Physarum polycephalum/genética , Proteínas de Protozoários/metabolismo , Ribonucleases/metabolismo , Ciclo Celular , Physarum polycephalum/citologia , Physarum polycephalum/enzimologia , Proteínas de Protozoários/genética , Ribonucleases/genética
13.
Nucleic Acids Res ; 35(17): 5763-74, 2007.
Artigo em Inglês | MEDLINE | ID: mdl-17717000

RESUMO

Invariance of temporal order of genome replication in eukaryotic cells and its correlation with gene activity has been well-documented. However, recent data suggest a relax control of replication timing. To evaluate replication schedule accuracy, we detailed the replicational organization of the developmentally regulated php locus that we previously found to be lately replicated, even though php gene is highly transcribed in naturally synchronous plasmodia of Physarum. Unexpectedly, bi-dimensional agarose gel electrophoreses of DNA samples prepared at specific time points of S phase showed that replication of the locus actually begins at the onset of S phase but it proceeds through the first half of S phase, so that complete replication of php-containing DNA fragments occurs in late S phase. Origin mapping located replication initiation upstream php coding region. This proximity and rapid fork progression through the coding region result in an early replication of php gene. We demonstrated that afterwards an unusually low fork rate and unidirectional fork pausing prolong complete replication of php locus, and we excluded random replication timing. Importantly, we evidenced that the origin linked to php gene in plasmodium is not fired in amoebae when php expression dramatically reduced, further illustrating replication-transcription coupling in Physarum.


Assuntos
Período de Replicação do DNA , Physarum polycephalum/genética , Origem de Replicação , Animais , Replicação do DNA/efeitos dos fármacos , Regulação da Expressão Gênica , Genes de Protozoários , Hidroxiureia/farmacologia , Physarum polycephalum/crescimento & desenvolvimento , Regiões Promotoras Genéticas , Fase S/genética , Transcrição Gênica
14.
EMBO Rep ; 4(5): 474-8, 2003 May.
Artigo em Inglês | MEDLINE | ID: mdl-12776736

RESUMO

To determine the extent to which eukaryotic replication origins are developmentally regulated in transcriptionally competent cells, we compared origin use in untreated growing amoebae and plasmodia of Physarum polycephalum. At loci that contain genes transcribed in both developmental stages, such as the ribosomal RNA genes and two unlinked actin genes, we show that there is a similar replicational organization, with the same origins used with comparable efficiencies, as shown by two-dimensional agarose-gel electrophoresis. By contrast, we found cell-type-specific replication patterns for the homologous, unlinked profilin A (proA) and profilin P (proP) genes. proA is replicated from a promoter-proximal origin in amoebae, in which it is highly expressed, and is replicated passively in the plasmodium, in which it is not expressed. Conversely, proP is replicated passively and is not expressed in amoebae, but coincides with an efficient origin when highly expressed in the plasmodium. Our results show a reprogramming of S phase that is linked to the reprogramming of transcription during Physarum cell differentiation. This is achieved by the use of two classes of promoter-associated replication origins: those that are constitutively active and those that are developmentally regulated. This suggests that replication origins, like genes, are under epigenetic control associated with cellular differentiation.


Assuntos
Replicação do DNA/genética , Physarum polycephalum/genética , Origem de Replicação , Actinas/genética , Amoeba/genética , Animais , Ciclo Celular/genética , Proteínas Contráteis/genética , DNA Ribossômico/genética , Diploide , Eletroforese em Gel Bidimensional , Proteínas dos Microfilamentos/genética , Plasmodium/genética , Profilinas , Regiões Promotoras Genéticas , Fase S , Transcrição Gênica
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