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Led by Boyce Thompson Institute’s Andrew Nelson, four partners will identify RNA modifications and develop resources that may lead to hardier crops Credit: Photo credit: Anna Nelson Dittrich ITHACA, NY, August 4, 2020 — RNA perform a variety of functions in cells, helping with everything from regulating genes to building proteins.
The collaboration aims to “close the gap between single-cell RNA sequencing wet-lab services and single-cell data analysis solutions,” which will allow scientists to study the finest details that can be hard to access. The post BioTuring enters collaboration to enable detailed single-cell RNA research appeared first on.
Credit: Nigel Michki Neurons result from a highly complex and unique series of cell divisions. For example, in fruit flies, the process starts with stem cells that divide into mother cells (progenitor cells), that then divide into precursor cells that eventually become neurons.
The three-year project – led by respiratory medicine expert Dr Timothy Hinks from the Oxford University Respiratory Medicine Unit – will use whole-genome sequencing of around 500 patients with severe asthma, comparing their gene sequences with control subjects who don’t have asthma.
Almost twenty years ago, the process of RNA silencing was discovered in plants, whereby small fragments of RNA inactivate a portion of a gene during protein synthesis.
Researchers engineer RNA-targeting compounds that disable the pandemic coronavirus’ replication engine Credit: Scott Wiseman for Scripps Research JUPITER, FL – Sept.
Capturing how RNA polymerase enzymes kick off transcription On scales too small for our eyes to see, the business of life happens through the making of proteins, which impart to our cells both structure and function.
Related: Top 30 Pharma Companies in 2023: Statistics and Trends 1) Moderna Compound annual growth rate: 415 percent Moderna, headquartered in Massachusetts, is a prominent biotechnology company specializing in RNA therapeutics, particularly mRNA vaccines.
Recent advances in multi-omics approaches, including genomics, transcriptomics, proteomics, metabolomics, cytometry and imaging, in combination with bioinformatics and biostatistics, have been translated into several popular bioanalytical platforms, such as next-generation sequencing (NGS), single-cell analysis, flow cytometry and mass spectrometry.
Such information can reveal details about tumor staging, tumor progression, heterogeneity, gene mutations and clonal evolution. The first option is to design a personalized small NGS gene panel based on the somatic mutations that were detected in the patient, and this can be used for monitoring disease progression.
PCR is a widely used technique in molecular diagnostics that amplifies small amounts of DNA or RNA to detectable levels. This technique helps in detect expression patterns, gene signatures which in turn help to predict cancer prognosis and the response of such cells to a particular therapy.
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