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Hi-C (genomic analysis technique) - Wikipedia

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Hi-C is a high-throughput genomic and epigenomic technique to capture chromatin conformation.[1] In general, Hi-C is considered as a derivative of a series of chromosome conformation capture technologies, including but not limited to 3C (chromosome conformation capture), 4C (chromosome conformation capture-on-chip/circular chromosome conformation capture), and 5C (chromosome conformation capture carbon copy).[1][2][3][4] Hi-C comprehensively detects genome-wide chromatin interactions in the cell nucleus by combining 3C and next-generation sequencing (NGS) approaches and has been considered as a qualitative leap in C-technology (chromosome conformation capture-based technologies) development and the beginning of 3D genomics.[2][3][4] Similar to the classic 3C technique, Hi-C measures the frequency (as an average over a cell population) at which two DNA fragments physically associate in 3D space, linking chromosomal structure directly to the genomic sequence.[4] The general procedure of

Hi-C (genomic analysis technique) - Wikipedia Jump to content From Wikipedia, the free encyclopedia Genomic analysis technique Figure 1. An overview of the Hi-C workflow and its applications in research. Hi-C is a high-throughput genomic and epigenomic technique to capture chromatin conformation (3C) . [ 1 ] In general, Hi-C is considered as a derivative of a series of chromosome conformation capture technologies, including but not limited to 3C (chromosome conformation capture), 4C (chromosome conformation capture-on-chip/circular chromosome conformation capture), and 5C (chromosome c

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