Publications by authors named "Deeptha Vasudevan"

The larval nerve cord, which is the equivalent of the vertebrate spinal cord, houses the circuits required to process somatosensory stimuli (e.g., tactile, temperature, vibration, and self-movement) and generate the patterned muscle contractions underlying movement and behavior.

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Article Synopsis
  • The Trojan exon method helps scientists create special tools called Gal4 driver lines to study specific genes in genes, which can be used to understand cell types better.
  • Sometimes, the mutations made by this method can cause problems in some creatures, especially when they are missing important genes needed for development.
  • A new and improved version called "Split Intein Trojan exons" (siTrojans) was created to avoid these problems while still achieving the same goals, allowing scientists to find and study important proteins more effectively.
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Whereas humans and other adult mammals lack the ability to regain locomotor function after spinal cord injury, zebrafish are able to recover swimming behavior even after complete spinal cord transection. We have previously shown that zebrafish larvae regenerate lost spinal cord neurons within 9 days post-injury (dpi), but it is unknown whether these neurons are physiologically active or integrate into functional circuitry. Here we show that genetically defined premotor interneurons are regenerated in injured spinal cord segments as functional recovery begins.

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Unlabelled: HuR is a ubiquitous, RNA binding protein that influences the stability and translation of several cellular mRNAs. Here, we report a novel role for HuR, as a regulator of proteins assembling at the 3' untranslated region (UTR) of viral RNA in the context of hepatitis C virus (HCV) infection. HuR relocalizes from the nucleus to the cytoplasm upon HCV infection, interacts with the viral polymerase (NS5B), and gets redistributed into compartments of viral RNA synthesis.

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