Technological and computational advances in recent years, from cryo-electron microscopy to sequencing technologies and machine learning, have substantially deepened our understanding of RNA splicing, ...
RNA splicing is a cellular process that is critical for gene expression. After genes are copied from DNA into messenger RNA, portions of the RNA that don't code for proteins, called introns, are cut ...
CSHL’s Krainer lab used a technique called live-cell fluorescence imaging to observe the DDX23 enzyme (above, in green) in action. Together with the critical regulator protein SRSF1, DDX23 helps set ...
Bodybuilders and cellular mechanisms agree generating protein is a heavy lift. To complete the task, cells rely on complexes called spliceosomes. These molecular machines snip extra bits out of our ...
RNA splicing, in which different coding RNA, or exons, are joined together after noncoding regions, or introns, are removed, allows for a large array of RNA transcript isoforms with distinct sequences ...
RNA is the means of translating the genetic code embedded in DNA into proteins, which serve as enzymes, transporters, signaling molecules, receptors, structural components, regulators, and ...
Alzheimer's Disease (AD), the leading cause of dementia, affects nearly 40 million individuals globally, resulting in a gradual loss of memory and independence. Despite extensive research over the ...
In a new study, Chinese researchers have discovered the previously unrecognized role of alternative splicing of the DOC2A gene in schizophrenia. The research was conducted by scientists led by LI Ming ...
The cover of Aging-US Volume 17, Issue 12, features Figure 5 from the research paper, titled "A combination of differential expression and network connectivity analyses identifies a common set of RNA ...
A new research paper featured as the cover of Volume 17, Issue 12 of Aging-US was published on December 22, 2025, titled "A combination of differential expression and network connectivity analyses ...
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