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Molecular basis for plasma membrane recruitment of PI4KA by EFR3

Suresh, S.; Shaw, A. L.; Pemberton, J. G.; Scott, M. K.; Harris, N. J.; Parson, M. A.; Jenkins, M. L.; Rohilla, P.; Prats, A. A.; Balla, T.; Yip, C. K.; Burke, J. E.

2024-07-19 biochemistry
10.1101/2024.04.30.587787 bioRxiv
Show abstract

The lipid kinase phosphatidylinositol 4 kinase III alpha (PI4KIII/PI4KA) is a master regulator of the lipid composition and asymmetry of the plasma membrane. PI4KA exists primarily in a heterotrimeric complex with its regulatory proteins TTC7 and FAM126. Fundamental to PI4KA activity is its targeted recruitment to the plasma membrane by the lipidated proteins EFR3A and EFR3B. Here, we report a cryo-EM structure of the C-terminus of EFR3A bound to the PI4KA-TTC7B-FAM126A complex, with extensive validation using both hydrogen deuterium exchange mass spectrometry (HDX-MS), and mutational analysis. The EFR3A C-terminus undergoes a disorder-order transition upon binding to the PI4KA complex, with an unexpected direct interaction with both TTC7B and FAM126A. Complex disrupting mutations in TTC7B, FAM126A, and EFR3 decrease PI4KA recruitment to the plasma membrane. Multiple post-translational modifications and disease linked mutations map to this site, providing insight into how PI4KA membrane recruitment can be regulated and disrupted in human disease. One sentence summaryThe cryo-EM structure of the C-terminus of EFR3A bound to the PI4KA complex reveals the molecular mechanism underlying PI4KA membrane localisation, and provides novel insight into PI4KA regulation and its involvement in human disease.

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