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C19MC drives nucleolar invasion of mitochondria and meiotic nuclear division in human cancers. | LitMetric

AI Article Synopsis

  • The chromosome-19 miRNA cluster (C19MC) plays a role in how certain viruses affect multinucleated cells in the placenta, but its connection to multinucleation was previously unclear.
  • Researchers found that C19MC is linked to meiosis-related genes and discovered a new process called meiosis-III, where nuclear division and cell division happen together to create multinucleated cells.
  • The study shows that C19MC is crucial for a structure called nucle(ol)ar invasive cytoplasm (NiC) which helps in the division of nuclei and supports the creation of multinucleated cells, providing insights for cancer research, virus interactions, and potential therapies.

Article Abstract

The chromosome-19 miRNA cluster (C19MC) restricts viruses depending on the multinucleated state of placental trophoblasts. However, the relationship of C19MC to multinucleation is unknown. Here we show that C19MC is coexpressed in multiple cancer type subsets with meiosis-related genes. We discovered a novel meiosis-III that exhibits simultaneous progression of meiotic nuclear division (MND) and cytokinesis. C19MC promotes meiotic bridged-chromosomes to block MND and cytokinesis to generate multinucleated cells. MND starts with the invagination of nuclear membrane to form nucle(ol)ar invasive cytoplasm (NiC), mitochondria and protein cargoes. Aurora-B regulates the efflux of cargos from NiC, whereas C19MC, CDK1, and autophagy promote cargo influx to inflate NiC size for MND progression. Using CRISPR human genetic engineering we demonstrate that the C19MC expression is required for NiC-driven MND and multinucleation. This discovery has impacts on cancer-pathogen interactions, immunotherapy, vertical transmission of viruses, antiviral research and SpCas9-CRISPR therapeutics.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11575172PMC
http://dx.doi.org/10.1016/j.isci.2024.111132DOI Listing

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