Search Results - nicolas+altemose

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­DIALYSIS-BASED METHOD FOR AFFINITY MAPPING OF CHROMATIN INTERACTION
­DIALYSIS-BASED METHOD FOR AFFINITY MAPPING OF CHROMATIN INTERACTIONS Researchers at Stanford have developed methods for preparing chromatin from cells for downstream genomic chromatin mapping. Chromatin profiling strategies are widely used to map the genomic location of chromatin elements, such as histone post-translational modification and...
Published: 6/6/2024   |   Inventor(s): Nicolas Altemose, Aaron Straight, Kousik Sundararajan, Nathan Gamarra
Keywords(s): Chromatin, Genomic, Mapping, Nuclear
Category(s): Technology Classifications > Biology
METHODS FOR MEASURING PROTEIN-DNA INTERACTIONS WITH LONG READ DNA SEQUENCING
­METHODS FOR MEASURING PROTEIN-DNA INTERACTIONS WITH LONG READ DNA SEQUENCING Researchers at the University of California Berkeley and Stanford have developed a bespoke, high throughput method for determining DNA-protein interactions in highly repetitive portions of the human genome. Protein-DNA interactions are essential to the reading, regulation,...
Published: 3/17/2023   |   Inventor(s): Aaron Streets, Nicolas Altemose, Annie Maslan
Keywords(s): ChIP-Seq, DNA-Protein Interaction, Epigenetics, Long-read Sequencing
Category(s): Technology Classifications > Biology
IMAGING AND SEQUENCING PROTEIN-DNA INTERACTIONS IN SINGLE CELLS USING INTEGRATED MICROFLUIDICS
IMAGING AND SEQUENCING PROTEIN-DNA INTERACTIONS IN SINGLE CELLS USING INTEGRATED MICROFLUIDICS Researchers at UC Berkeley have developed an integrated microfluidics method, µDamID (microfluidic DamID), capable of co-determining the cellular location and nucleotide sequence of DNA that is contacted by a protein of interest in a single cell. Genome...
Published: 3/17/2023   |   Inventor(s): Aaron Streets, Nicolas Altemose
Keywords(s): Fluorescence, Genetic Dissection, Microfluidics, Optical Probe, Single Cell, Single Cell Analysis
Category(s): Technology Classifications > Biology