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Showing 1 to 20 of 20 for “"chromosome conformation capture"”.

  1. Unfolding genome organization in interphase

    … frequency maps obtained from high throughput chromosome conformation capture technologies have revealed several organizing patterns of mammalian interphase chromosomes, including self-interacting topologically associating domains (TADs) which are believed to function as coherent gene …

    mit Repository record for Unfolding genome organization in interphase (opens in a new tab)

  2. UNCOVERING STRUCTURE-FUNCTION RELATIONSHIPS IN CHROMATIN ARCHITECTURE

    … and their inner subTADs in high resolution Chromosome-Conformation-Capture Hi-C data. We then apply our method to chromatin dynamics during mitosis, uncovering how TADs and subTADs evolve temporally. Afterwards, we classify TADs/subTADs by the presence of other genome folding features, …

    penn Repository record for UNCOVERING STRUCTURE-FUNCTION RELATIONSHIPS IN CHROMATIN ARCHITECTURE (opens in a new tab)

  3. Dynamics of Genome Organization

    … over the past 15 years, following the advent of chromosome conformation capture techniques. The fourth dimension---time---however, has remained elusive and the dynamics underlying the organization of the genome are much less known. In this thesis I present my contributions to our understanding of …

    mit Repository record for Dynamics of Genome Organization (opens in a new tab)

  4. Genomic Regulation of the Shox2 Gene during Mouse Limb Development

    … signature profiling, we have utilized circular chromosome conformation capture (4C-seq) technology to probe the entire cis-regulatory organization of the Shox2 gene during limb development. We show five of numerous genomic regions within a 1.5 megabase (Mb) chromosomal territory surrounding the …

    calgary Repository record for Genomic Regulation of the Shox2 Gene during Mouse Limb Development (opens in a new tab)

  5. Linking genome organization to nuclear function in astrocytes and muscle cells

    … Therefore, I evaluated chromosomal interactions captured by HiC and Circular Chromosome Conformation Capture (4C) for mito-nDNA interactions in order to determine if they are random. I show that the mito-nDNA interactions captured in mammalian cells are statistically significant and shared …

    auckland-ms Repository record for Linking genome organization to nuclear function in astrocytes and muscle cells (opens in a new tab)

  6. Identificazione e analisi funzionale di fattori regolatori dei geni globinici

    … variants at these loci we applied “Genome Wide Chromosome Conformation Capture” (Hi-C), followed by a novel technique for a selective enrichment at these target regions, to characterize whether they are involved in long range physical interactions able to modulate HBS1L-MYB and BCL11A …

    cagliari Repository record for Identificazione e analisi funzionale di fattori regolatori dei geni globinici (opens in a new tab)

  7. Patterns and processes driving chromosome organization

    … analysis of inter­action maps generated from Chromosome Conformation Capture (3C) technologies. We begin by analyzing data generated using a novel Micro-C protocol and assess its performance in comparison to established Hi-C. New computation tools are developed to extract, quantify and compare …

    mit Repository record for Patterns and processes driving chromosome organization (opens in a new tab)

  8. Computational Analysis of Transcriptional Regulation

    … for early cervical carcinogenesis with a novel Chromosome Conformation Capture (3C) method that specifically enriches for interactions involving viral integrants. Integration occurs without disrupting host 3D chromatin structure but alters the expression of many neighbouring host genes. The …

    cambridge Repository record for Computational Analysis of Transcriptional Regulation (opens in a new tab)

  9. Linker Histone Medicated Regulation of Mitotic Chromosome Compaction and Individualization

    <p>Mitotic chromosomes are scaled to the cell size to ensure effective chromosome segregation. Recent studies have shown how condensins and DNA topoisomerase II organize the mitotic chromosome. However, the regulation of these factors in maintaining proper chromosome size in different cell types …

    rockefeller Repository record for Linker Histone Medicated Regulation of Mitotic Chromosome Compaction and Individualization (opens in a new tab)

  10. Integrative analysis of transcriptional activity and genome architecture changes upon viral infections

    … viral infections, I employed a genome-wide chromosome conformation capture approach (Hi-C) on infected murine and human cells and further enriched those libraries for genomic loci of interest and the viral genomes with biotinylated RNA baits. In parallel, I profiled newly transcribed RNA …

    cambridge Repository record for Integrative analysis of transcriptional activity and genome architecture changes upon viral infections (opens in a new tab)

  11. An Investigation Into The Role Of Cfia 3' End Processing Complex In The Termination And Initiation/reinitiation Of Transcription

    … absence of a functional Clp1 protein. Using the chromosome conformation capture approach, CCC, we observed a role for Clp1 in gene loop formation. We found a strong correlation between the Clp1 function in gene looping, and its role in promoter-associated transcription which implies gene looping …

    wayne-thes Repository record for An Investigation Into The Role Of Cfia 3' End Processing Complex In The Termination And Initiation/reinitiation Of Transcription (opens in a new tab)

  12. The Nucleosome Remodelling & Deacetylase complex: Genome folding & transcriptional regulation

    … gene regulation. At the very largest scales, chromosomes are known to occupy distinct chromosome territories, intermingling only at the borders. At the very smallest scale, chromatin is known to be organised into a beads on a string like structure of nucleosomes. Until the advent of Chromosome

    cambridge Repository record for The Nucleosome Remodelling & Deacetylase complex: Genome folding & transcriptional regulation (opens in a new tab)

  13. The interplay of global chromosomal organisation, promoter-enhancer interactions and transcription

    … control. In recent years, the emergence of chromosome conformation capture and related methodologies has dramatically increased our understanding of chromosomal organisation. In particular, high-throughput Hi-C analyses across cell types have led to the identification of spatial genomic …

    cambridge Repository record for The interplay of global chromosomal organisation, promoter-enhancer interactions and transcription (opens in a new tab)

  14. Spatial organisation of the immunoglobulin heavy chain locus and inter-chromosomal gene networks driving B cell development

    … of the Igh locus facilitate V(D)J recombination. Chromosome conformation capture techniques have revolutionised studies of genome conformation. I have applied a novel form of enriched Hi-C to study both intra-locus (cis) and genome-wide (trans) interactions of the immunoglobulin loci in pro-B and …

    cambridge Repository record for Spatial organisation of the immunoglobulin heavy chain locus and inter-chromosomal gene networks driving B cell development (opens in a new tab)

  15. Genome organization by loop extrusion

    … propagate in the same way - they duplicate their chromosomes and divide into two daughter cells, each containing one copy of each chromosome. Because of the extreme length of chromosomes, their two copies have be compacted in order to be successfully segregated from each other. The process of …

    mit Repository record for Genome organization by loop extrusion (opens in a new tab)

  16. Microfluidic technology for cellular analysis and molecular biotechnology

    … in one step. Enhancement in cell isolation (high capture efficiency or high selection purity) is experimentally observed and the former is explained by computational model. In the final part of the dissertation, microfluidic device incorporating valves and mixers for sensitive study of chromosome

    vt Repository record for Microfluidic technology for cellular analysis and molecular biotechnology (opens in a new tab)

  17. Higher Order Chromosome Organization and Recombination Dynamics of Meiotic Prophase I In Mouse Spermatocytes

    <p>Meiotic recombination is required for parental chromosomes to find each other (pairing/synapsis) and to exchange genetic information thus allowing faithful segregation of chromosomes and the production of haploid gametes. At the start of meiotic prophase I, meiotic chromosomes organize into loop …

    uthsc Repository record for Higher Order Chromosome Organization and Recombination Dynamics of Meiotic Prophase I In Mouse Spermatocytes (opens in a new tab)

  18. Transcript Regulation within the Kcnq1 Domain

    … that distinguish the maternal from the paternal chromosomes in the form of methylation. Methylation marks can influence transcript expression, resulting in only one allele being expressed. One imprinted domain is the Kcnq1 domain located on chromosome 11p15.5 in humans and chromosome 7 in the …

    temple Repository record for Transcript Regulation within the Kcnq1 Domain (opens in a new tab)

  19. The Role of the Ubiquitin-Proteasome System in the Regulation of Nuclear Hormone Receptor-Dependent Transcription

    Nukleare Hormonrezeptoren (NHRs) sind Liganden-abhängige Transkriptionsfaktoren mit breitem physiologischem sowie pathophysiologischem Funktionsspektrum. Molekulare Therapien die sich gegen NHRs richten, stellen eine optimale Behandlung einiger humaner Krankheiten dar. Der Östrogenrezeptor ist …

    goettingen Repository record for The Role of the Ubiquitin-Proteasome System in the Regulation of Nuclear Hormone Receptor-Dependent Transcription (opens in a new tab)