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Publication : Caspase cleavage releases a nuclear protein fragment that stimulates phospholipid scrambling at the plasma membrane.

First Author  Maruoka M Year  2021
Journal  Mol Cell Volume  81
Issue  7 Pages  1397-1410.e9
PubMed ID  33725486 Mgi Jnum  J:305632
Mgi Id  MGI:6706096 Doi  10.1016/j.molcel.2021.02.025
Citation  Maruoka M, et al. (2021) Caspase cleavage releases a nuclear protein fragment that stimulates phospholipid scrambling at the plasma membrane. Mol Cell 81(7):1397-1410.e9
abstractText  Phospholipid scrambling in dying cells promotes phosphatidylserine exposure, a critical process for efferocytosis. We previously identified the Xkr family protein Xkr4 as a phospholipid-scrambling protein, but its activation mechanisms remain unknown. Here we show that Xkr4 is activated in two steps: dimer formation by caspase-mediated cleavage and structural change caused by activating factors. To identify the factors, we developed a new screening system, "revival screening," using a CRISPR sgRNA library. Applying this system, we identified the nuclear protein XRCC4 as the single candidate for the Xkr4 activator. Upon apoptotic stimuli, XRCC4, contained in the DNA repair complex, is cleaved by caspases, and its C-terminal fragment with an intrinsically disordered region is released into the cytoplasm. Protein interaction screening showed that the fragment interacts directly with the Xkr4 dimer to activate it. This study demonstrates that caspase-mediated cleavage releases a nuclear protein fragment for direct regulation of lipid dynamics on the plasma membrane.
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