Search results for "Dosage compensation"

showing 10 items of 14 documents

MYC dosage compensation is mediated by miRNA-transcription factor interactions in aneuploid cancer

2021

Summary We hypothesize that dosage compensation of critical genes arises from systems-level properties for cancer cells to withstand the negative effects of aneuploidy. We identified several candidate genes in cancer multiomics data and developed a biocomputational platform to construct a mathematical model of their interaction network with micro-RNAs and transcription factors, where the property of dosage compensation emerged for MYC and was dependent on the kinetic parameters of its feedback interactions with three micro-RNAs. These circuits were experimentally validated using a genetic tug-of-war technique to overexpress an exogenous MYC, leading to overexpression of the three microRNAs …

Candidate geneMultidisciplinaryDosage compensationColorectal cancerBioinformaticsScienceQCancerMycBiologymedicine.diseaseArticleDownregulation and upregulationCancer cellmicroRNATranscription factorsmedicineCancer researchcancerDosage compensationaneuploidyMathematical biosciencesSystems biologyTranscription factormiRNAiScience
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The evolution of dosage-compensation mechanisms

2000

Dosage compensation is the process by which the expression levels of sex-linked genes are altered in one sex to offset a difference in sex-chromosome number between females and males of a heterogametic species. Degeneration of a sex-limited chromosome to produce heterogamety is a common, perhaps unavoidable, feature of sex-chromosome evolution. Selective pressure to equalize sex-linked gene expression in the two sexes accompanies degeneration, thereby driving the evolution of dosage-compensation mechanisms. Studies of model species indicate that what appear to be very different mechanisms have evolved in different lineages: the male X chromosome is hypertranscribed in drosophilid flies, bot…

GeneticsDosage compensationHermaphroditeGene expressionChromosomeBiologyGeneGeneral Biochemistry Genetics and Molecular BiologyHeterogametic sexX chromosomeSex linkageBioEssays
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<i>MYC</i> Dosage Compensation is Mediated by miRNA-Transcription Factor Interactions in Aneuploid Cancer

2021

Cancer complexity is consequence of genomic instability leading to aneuploidy. We hypothesize that dosage compensation of critical genes arise from systems-level properties for cancer cells to withstand the negative effects of aneuploidy. We developed a computational platform to identify a network of miRNAs and transcription factors interacting with candidate dosage-compensated genes using NCI-60 multi-omic data. We next constructed a mathematical model where the property of dosage compensation emerged for MYC and STAT3 and was dependent on the kinetic parameters of their feedback and feed-forward interactions with four miRNAs. We developed a genetic tug-of-war approach by overexpressing an…

Genome instabilityDosage compensationColorectal cancermicroRNACancer cellCancer researchmedicineCancerBiologymedicine.diseaseGene dosageTranscription factorSSRN Electronic Journal
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MYC dosage compensation is mediated by miRNA-transcription factor interactions in aneuploid cancer

2021

SummaryWe hypothesize that dosage compensation of critical genes arises from systems-level properties for cancer cells to withstand the negative effects of aneuploidy. We identified several candidate genes in cancer multi-omics data and developed a biocomputational platform to construct a mathematical model of their interaction network with miRNAs and transcription factors, where the property of dosage compensation emerged for MYC and was dependent on the kinetic parameters of its feedback interactions with three micro-RNAs. These circuits were experimentally validated with a novel genetic tug-of-war technique by overexpressing an exogenous MYC leading to over-expression of the three microR…

Genome instabilityDosage compensationColorectal cancermicroRNACancer cellmedicineCancer researchCancerBiologymedicine.diseaseGene dosageTranscription factor
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ISWI Regulates Higher-Order Chromatin Structure and Histone H1 Assembly In Vivo

2007

Imitation SWI (ISWI) and other ATP-dependent chromatin-remodeling factors play key roles in transcription and other processes by altering the structure and positioning of nucleosomes. Recent studies have also implicated ISWI in the regulation of higher-order chromatin structure, but its role in this process remains poorly understood. To clarify the role of ISWI in vivo, we examined defects in chromosome structure and gene expression resulting from the loss of Iswi function in Drosophila. Consistent with a broad role in transcriptional regulation, the expression of a large number of genes is altered in Iswi mutant larvae. The expression of a dominant-negative form of ISWI leads to dramatic a…

Imitation SWINucleosome assemblyTranscription GeneticQH301-705.5RNA-POLYMERASE-IIPROTEINCHROMOSOME ARCHITECTUREGeneral Biochemistry Genetics and Molecular BiologyHistones03 medical and health sciencesNUCLEOSOME REMODELING FACTORHigher Order Chromatin StructureHistone H1NucleosomeAnimalsTRANSCRIPTIONBiology (General)LIVING CELLSMolecular Biology030304 developmental biologyGENE-EXPRESSIONRegulation of gene expressionGeneticsAdenosine Triphosphatases0303 health sciencesGeneral Immunology and MicrobiologybiologyGeneral Neuroscience030302 biochemistry & molecular biologyGenetics and GenomicsCell BiologyChromatin Assembly and DisassemblyChromatinChromatinCell biologyDROSOPHILAHistoneGene Expression RegulationLarvaMutationbiology.proteinLINKER HISTONEGeneral Agricultural and Biological SciencesResearch ArticleDevelopmental BiologyTranscription FactorsDOSAGE COMPENSATION
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Evolution of chromatin-remodeling complexes: comparative genomics reveals the ancient origin of "novel" compensasome genes.

2003

Dosage compensation in Drosophila is mediated by a complex, called compensasome, com- posed of at least five proteins and two noncoding RNAs. Genes encoding compensasome proteins have been collectively named male-specific lethals or msls. Recent work showed that three of the Drosophila msls (msl-3, mof, and mle) have an ancient origin. In this study, I describe likely orthologues of the two re- maining msls, msl-1 and msl-2, in several inverte- brates and vertebrates. The MSL-2 protein is the only one found in Drosophila and vertebrate genomes that contains both a RING finger and a peculiar type of CXC domain, related to the one present in Enhancer of Zeste proteins. MSL-1 also contains two…

MaleLeucine zipperAmino Acid MotifsMolecular Sequence DataBiologyGenomeChromatin remodelingEvolution MolecularDosage Compensation GeneticGeneticsRing fingermedicineAnimalsDrosophila ProteinsHumansAmino Acid SequenceEnhancerMolecular BiologyEcology Evolution Behavior and SystematicsCaenorhabditis elegansPhylogenyComparative genomicsGeneticsDosage compensationfungiNuclear ProteinsGenomicsbiology.organism_classificationChromatin Assembly and DisassemblyProtein Structure TertiaryDNA-Binding Proteinsmedicine.anatomical_structureVertebratesDrosophilaSequence AlignmentTranscription FactorsJournal of molecular evolution
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The Choice of the Filtering Method in Microarrays Affects the Inference Regarding Dosage Compensation of the Active X-Chromosome

2011

BackgroundThe hypothesis of dosage compensation of genes of the X chromosome, supported by previous microarray studies, was recently challenged by RNA-sequencing data. It was suggested that microarray studies were biased toward an over-estimation of X-linked expression levels as a consequence of the filtering of genes below the detection threshold of microarrays.Methodology/principal findingsTo investigate this hypothesis, we used microarray expression data from circulating monocytes in 1,467 individuals. In total, 25,349 and 1,156 probes were unambiguously assigned to autosomes and the X chromosome, respectively. Globally, there was a clear shift of X-linked expressions toward lower levels…

MaleMicroarrayMicroarraysScienceGene ExpressionBiologyMonocytesGenomic ImprintingMiceX Chromosome InactivationGenes X-LinkedDosage Compensation GeneticMolecular Cell BiologyGeneticsAnimalsHumansRNA MessengerBiologyX-linked recessive inheritanceX chromosomeOligonucleotide Array Sequence AnalysisGeneticsChromosomes Human XMultidisciplinaryDosage compensationAutosomeModels GeneticChromosome BiologyGene Expression ProfilingQRComputational BiologyGenomicsGene expression profilingHEK293 CellsMedicineEpigeneticsFemaleDNA microarrayGenomic imprintingGenome Expression AnalysisResearch ArticlePLoS ONE
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Evolution of sex chromosomes: dosage compensation of the Lcp1-4 gene cluster on the evolving neo-X chromosome in Drosophila miranda.

2007

In Drosophila miranda the small multigene family of the larval cuticle protein (Lcp1-4) genes resides on the evolving neo-X and neo-Y sex chromosome pair while in the sibling species Drosophila pseudoobscura and Drosophila persimilis the gene cluster is inherited autosomally. The neo-Y chromosomal Lcp1, Lcp2 and Lcp4 genes are, as previously shown by us, not expressed and only Lcp3 is expressed at a strongly reduced level. As a first step in understanding the evolutionary mechanism(s) transforming an autosome into a dosage compensated X we analysed the expression behaviour and promoter structure of the Lcp1-4 genes on the neo-X. The normalized relative expression levels reveal that all four…

MaleMolecular Sequence DataGenes InsectDrosophila pseudoobscuraGenes Y-LinkedGenes X-LinkedDosage Compensation GeneticSequence Homology Nucleic AcidGene clusterGeneticsAnimalsDrosophila ProteinsPromoter Regions GeneticMolecular BiologyGeneX chromosomeDrosophila persimilisGeneticsDosage compensationAutosomebiologyBase Sequencefungibiology.organism_classificationEvolutionary biologyInsect ScienceMultigene FamilyDrosophilaFemaleDrosophila ProteinInsect molecular biology
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Y chromosomes: born to be destroyed

2005

Suppression of recombination is the prerequisite for stable genetically determined sex systems. A consequence of suppression of recombination is the strong bias in the distribution of transposable elements (TEs), mostly retrotransposons. Our results and those from others indicate that the major force driving the degeneration of Y chromosomes are retrotransposons in remodelling former euchromatic chromosome structures into heterochromatic ones. We put forward the following hypotheses. (1) A massive accumulation of retrotransposons occurs early in non-recombining regions. (2) Heterochromatic nucleation centres are formed as a genomic defence mechanism against invasive parasitic elements. The …

MaleRecombination GeneticTransposable elementGeneticsDosage compensationRetroelementsEuchromatinHeterochromatinGene DosageRetrotransposonSex Determination ProcessesBiologyY chromosomeGene dosageGeneral Biochemistry Genetics and Molecular BiologyEvolution MolecularHeterochromatinY ChromosomeAnimalsHumansDrosophilaFemaleGene SilencingGeneBioEssays
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The human X chromosome is enriched for germline genes expressed in premeiotic germ cells of both sexes.

2006

The role of X-chromosomal genes in spermatogenesis has been subject to a number of studies in different organisms. Recently, it was proposed that the X chromosome has a predominant role in premeiotic stages of mammalian spermatogenesis. We analyzed the expression of a representative set of 17 X-linked and 48 autosomal germline-restricted genes in different stages of human germ cell development. In accordance with data from other species, we show that the human X chromosome is indeed significantly enriched for genes activated in premeiotic stages of spermatogenesis. In contrast to recent studies, however, we found that expression of these genes is not restricted to spermatogenesis, but is ac…

MaleTranscriptional ActivationGene DosageBiologyChromatin remodelingGametogenesisOogenesisGeneticsmedicineChromosomes HumanCluster AnalysisHumansSpermatogenesisMolecular BiologyGeneSkewed X-inactivationGenetics (clinical)X chromosomeCells CulturedRegulation of gene expressionGeneticsChromosomes Human XDosage compensationChromosome MappingGeneral MedicineDNA MethylationMeiosismedicine.anatomical_structureGerm CellsGene Expression RegulationDNA methylationFemaleGerm cellHuman molecular genetics
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