Remove DNA Remove Gene Expression Remove Genomics
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Novel artificial genomic DNA can replicate and evolve outside the cell

Scienmag

Professor Norikazu Ichihashi and his colleagues at the University of Tokyo have successfully induced gene expression from a DNA, characteristic of all life, and evolution through continuous replication extracellularly using cell-free materials alone, such as nucleic acids and proteins for the first time.

DNA 96
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Tune Therapeutics Debuts with $40 Million to Fine-Tune the Human Genome

BioSpace

Tune claims TEMPO can rapidly target and adjust the epigenomic machinery, controlling gene expression and dictating how the DNA will be molded.

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Nucleome raises £37.5m to shine light on ‘dark genome’

pharmaphorum

million ($40 million) first-round financing that will be used to explore so-called ‘dark’ regions of the human genome. Nucleome’s platform adds 3D genomic information to a wealth of available genomic data, uncovering a new dimension of information that is disease as well as cell type-specific.

Genome 59
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Biomarkers in fathers’ sperm linked to offspring autism

Scienmag

These biomarkers are epigenetic, meaning they involve changes to molecular factors that regulate genome activity such as gene expression independent of DNA sequence, and can be passed down to future generations. In a […].

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Epigenetic Editing with CRISPR Might Be Easier Than We Thought

XTalks

Researchers at the University of California San Francisco (UCSF) and the Whitehead Institute have developed a novel CRISPR-based tool called “CRISPRoff” that can switch off genes in human cells through epigenetic editing without altering the genetic sequence itself. It’s a great tool for controlling gene expression.”.

DNA 97
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Discovery of MicroRNA Genetic Regulation Leads American Scientists to Win 2024 Nobel Prize

XTalks

Their breakthrough revealed a previously unknown mechanism by which genes are controlled that is essential for the development and function of multicellular organisms, including humans. A gene contains instructions within our DNA. However, microRNAs can bind to this mRNA, preventing it from functioning.

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Molecular Diagnostic Tests: The Unsung Hero of Precise Clinical Decision Making

Roots Analysis

Molecular diagnostic tests are advanced techniques and tools used to analyze biological markers in the genome and proteome. Molecular diagnostic tests refer to tests intended to detect specific sequences in human genomic samples, such as DNA or RNA, in order to diagnose a particular disease. What are Molecular Diagnostic Tests?