A direct protein bridge connects the ds and ds-ss junction telomeric DNA segments in <i>C. elegans</i>.
basic_science · Level V
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- Record sourced from PubMed, PMID 42715327.
- Also identified by DOI 10.1126/sciadv.aeg8967.
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Abstract
The six-protein shelterin complex safeguards mammalian chromosome ends; however, its intricate protein-protein and protein-DNA interactions complicate biochemical dissection. The <i>C. elegans</i> DNA binding TEBP-1/2 (also known as DTN-1/2) and POT-1 proteins directly interact, offering a simplified system to dissect chromosome end protection. Here, we combined protein crystallography with in vivo functional analyses to elucidate the architecture and assembly of the <i>C. elegans</i> telomere-binding protein complex. We uncover a notable interface in which the canonical single-stranded DNA binding OB domain of POT-1 is repurposed to engage TEBP-1/2, rewiring telomeric protein connectivity. Disruption of the electrostatic interfaces between POT-1 and TEBP-1/2 disassembles the complex in vivo and causes telomere hyperelongation. POT-1 OB retains binding to the 5'-phosphorylated end of the telomeric ds-ssDNA junction, a role required for robust telomeric localization of POT-1 and suppression of telomere hyperelongation in vivo. Together, our findings support a model in which TEBP-1/2 recruit POT-1 to form a three-way TEBP-1/2-POT-1-DNA junction complex that ensures telomere length homeostasis.
Medical subject headings
- Caenorhabditis elegans
- Telomere
- Caenorhabditis elegans Proteins
- Telomere-Binding Proteins
- DNA-Binding Proteins