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14-3-3 binding maintains the Parkinson’s associated kinase LRRK2 in an inactive state

Nature Communications. 2025-08; 
Juliana A Martinez Fiesco, Alexandra Beilina, Astrid Alvarez de la Cruz, Ning Li, Riley D Metcalfe, Mark R Cookson, Ping Zhang Kinase Complexes Section, Center for Structural Biology, Center for Cancer Research, National Cancer Institute, Frederick
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Abstract

Leucine-rich repeat kinase 2 (LRRK2) is an essential regulator in cellular signaling and a major contributor to Parkinson's disease (PD) pathogenesis. 14-3-3 proteins are critical modulators of LRRK2 activity, yet the structural basis of their interaction has remained unclear. Here, we present the cryo-electron microscopy structure of the LRRK2:14-3-32 autoinhibitory complex, revealing how a 14-3-3 dimer stabilizes an autoinhibited LRRK2 monomer through dual-site anchoring. The dimer engages both phosphorylated S910/S935 sites and the COR-A/B subdomains within the Roc-COR GTPase region. This spatial configuration constrains LRR domain mobility, reinforces the inactive conformation, and likely impedes LRRK2 dime... More

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