A recent study, published in the MIT News, discusses how scientists have uncovered a new way RNA splicing is regulated, making gene expression more complex than before. RNA splicing is an important process where non-coding sections (introns) are removed from messenger RNA, allowing genes to create proteins. Scientists previously believed that splicesome, a RNA-protein complex, determined the splicing sites, but this study found that a family of proteins called Luc7 also play a major role. These proteins help decide which introns get spliced out, affecting almost half of all human genes. The researchers also found this process in plants, indicating it evolved early in life's history.
Showing posts with label RNA splicing. Show all posts
Showing posts with label RNA splicing. Show all posts
Friday, March 14, 2025
MIT Biologists Found a New Layer of Gene Regulation in RNA Splicing
Tuesday, April 18, 2017
Changes in RNA splicing: A new mechanism for genetic risk in schizophrenia

New research has identified sections of DNA associated with changed gene expression that causes schizophrenia. the loci effects the risks of schizophrenia by affecting alternative splicing. This is when the DNA is coded into different proteins. This finding will allow scientist to make more precise classification of culprit genes for schizophrenia and other brain disorders. throughout the research 4 disease susceptibility genes for schizophrenia that are effected through alternative splicing.
schizophrenia, Alternative splicing
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