We could all use a spa day once in a while, so light some lavender-scented candles, take a deep breath, and let NanoSPA analyze the RNA modifications in your samples. This new nanopore sequencing analysis pipeline provides data on both N6-methyladenosine (m6A) and pseudouridine (Ψ) modifications at the same time, reducing stress and saving time. Instead […]
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Search Results for: m6A
GEMS Makes the m6A RNA Modification Shine in Living Cells
Unlike DNA or histone methylation, knowledge about N6-methyladenosine (m6A) modification of RNA is a little cloudy. It’s involved in some cancers and other diseases, but we don’t know as much about its expression in living cells. Now, a new method called GEMS makes m6A shine bright like a diamond for drug discovery and delivery of […]
Single-cell Epitranscriptomic Mapping of m6A from Small Samples with picoMeRIP-seq
Most successful epitranscriptomics studies rely on large amounts of input sample; however, huge findings may also reside in the smallest of specimens, such as zygotes or embryos. Now, a study provides exciting in vivo insight into these microcosms by describing the development of an epitranscriptomic mapping technique for single-cells and rare cell types. While traditional […]
X Chromosome vs. Autosome – m6A Helps to Level the RNA Stability Playing Field
While the single transcripts from the X chromosome may have a tough time competing with the one-two combination from their autosomal counterparts, heavy-hitting new findings now demonstrate that the m6A RNA modification lends a hand and levels the RNA stability playing field. The N6-methyladenosine RNA modification (m6A) recruits YTHDF proteins to reduce modified RNA stability […]
Burn After Reading: m6A mRNA Reader YTHDF2 Helps Cancer Cells Manage Their Protein Problems
It turns out that the “burn after reading” strategy doesn’t just apply to the secret messages (and not-so-secret memoirs) of CIA analysts, it also helps keep cancer cells alive. In a new study, the lab of Gene Yeo at UCSD deciphered key vulnerabilities in a cancerous network, highlighting a role for the m6A mRNA reader […]