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Isolation of Labile Multi-protein Complexes by in vivo Controlled Cellular Cross-Linking and Immuno-magnetic Affinity Chromatography
Published on: March 9, 2010
A dileucine motif in TMEM163 is essential for its binding with both AP-3 and BLOC-1 complex
Zhuang Qi1, Yefeng Yuan1, Wei Li2
1Laboratory for Genetics of Birth Defects, Beijing Pediatric Research Institute, MOE Key Laboratory of Major Diseases in Children, Genetics and Birth Defects Control Center, National Center for Children's Health, Beijing Children's Hospital, Capital Medical University, Beijing, China.
Abstract:
Defects in Hermansky-Pudlak syndrome protein associated complexes impair the biogenesis of lysosome-related organelles (e.g. platelet dense granule). Transmembrane protein 163 (TMEM163), a zinc transporter, is drastically reduced in platelets of AP-3-, BLOC-1-, and BLOC-2-deficient Hermansky-Pudlak syndrome mice and patients, but the mechanistic basis is unclear. We here found that TMEM163 was reduced and degraded primarily via the proteasome in a variety of deficient MEG-01 cells of endosomal trafficking complexes (AP-1, AP-2, AP-3, BLOC-1, BLOC-2). A conserved N-terminal acidic dileucine motif (LEDRGL69L70) in TMEM163 is essential for interactions with BLOC-1 and AP-3 but dispensable for binding with AP-1, AP-2 and BLOC-2. Mutation of this motif led to TMEM163 accumulation in the plasma membrane. Loss of either BLOC-1 or AP-3 enhanced TMEM163 bound to the other and exhibited differential abnormal endo-lysosomal localization, suggesting competitive binding during TMEM163 trafficking. Collectively, our findings established TMEM163 as a cargo protein sequentially sorted by AP-3 and BLOC-1 via a shared dileucine-based sorting signal, which is essential for its proper trafficking to platelet dense granules, uncovering a unique mechanism in Hermansky-Pudlak syndrome protein associated complex cargo sorting and lysosome-related organelle biogenesis.
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