Unique domain appended to vertebrate tRNA synthetase is essential for vascular development.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 22353712.
- Also identified by DOI 10.1038/ncomms1686 and PMC identifier 3293412.
- Licence recorded as CC BY-NC-SA.
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Abstract
New domains were progressively added to cytoplasmic aminoacyl transfer RNA (tRNA) synthetases during evolution. One example is the UNE-S domain, appended to seryl-tRNA synthetase (SerRS) in species that developed closed circulatory systems. Here we show using solution and crystal structure analyses and in vitro and in vivo functional studies that UNE-S harbours a robust nuclear localization signal (NLS) directing SerRS to the nucleus where it attenuates vascular endothelial growth factor A expression. We also show that SerRS mutants previously linked to vasculature abnormalities either deleted the NLS or have the NLS sequestered in an alternative conformation. A structure-based second-site mutation, designed to release the sequestered NLS, restored normal vasculature. Thus, the essential function of SerRS in vascular development depends on UNE-S. These results are the first to show an essential role for a tRNA synthetase-associated appended domain at the organism level, and suggest that acquisition of UNE-S has a role in the establishment of the closed circulatory systems of vertebrates.
Medical subject headings
- Blood Vessels
- Cell Nucleus
- Serine-tRNA Ligase
- Zebrafish Proteins