Pathogenic mutations in Leucine-rich repeat kinase 2 sequester Rab8a to damaged lysosomes and regulate transferrin-mediated iron uptake in microglia
Mamais, A.; Landeck, N.; Langston, R. G.; Bonet-Ponce, L.; Smith, N.; Beilina, A.; Kaganovich, A.; Ghosh, M. C.; Pellegrini, L.; Kluss, J. H.; Kumaran, R.; Papazoglou, I.; Maio, N.; Kim, C.; Gershlick, D. C.; Cookson, M. R.
Show abstract
Mutations in leucine-rich repeat kinase 2 (LRRK2) cause autosomal dominant Parkinsons disease (PD) while polymorphic LRRK2 variants are associated with sporadic PD. PD-linked mutations increase LRRK2 kinase activity and induce neurotoxicity in vitro and in vivo. The small GTPase Rab8a is a LRRK2 kinase substrate and is involved in receptor-mediated recycling and endocytic trafficking of transferrin, but the effect of PD-linked LRRK2 mutations on the function of Rab8a are poorly understood. Here, we show that gain-of-function mutations in LRRK2 induce sequestration of endogenous Rab8a into lysosomes in cells while pharmacological inhibition of LRRK2 kinase activity reverses this phenotype. Furthermore, we show that LRRK2 mutations drive accumulation of endocytosed transferrin into Rab8a-positive lysosomes leading to a dysregulation of iron transport. LRRK2 has been nominated as an integral part of cellular responses downstream of proinflammatory signals and is activated in microglia in post-mortem PD tissue. Here, we show that iPSC-derived microglia from patients carrying the most common LRRK2 mutation, G2019S, mistraffic transferrin to lysosomes proximal to the nucleus in proinflammatory conditions. Furthermore, G2019S knock-in mice show significant increase in iron deposition in microglia following intrastriatal LPS injection compared to wild type mice, accompanied by striatal accumulation of ferritin. Our data support a role of LRRK2 in modulating iron uptake and storage in response to proinflammatory stimuli in microglia.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- LRRK2 mediates tubulation and vesicle sorting from membrane damaged lysosomes 97%
- Parkinsons VPS35 mutation induces LRRK2 mediated lysosomal association of RILPL1 and TMEM55B 96%
- VMAT2 dysfunction impairs vesicular dopamine uptake, driving its oxidation and α-synuclein pathology in DJ-1-linked Parkinson's disease neurons 96%
Similar papers in this journal
- LRRK2 Suppresses Lysosome Degradative Activity in Macrophages and Microglia Through MiT-TFE Transcription Factor Inhibition 97%
- Autophagic stress activates distinct compensatory secretory pathways in neurons 96%
- PTP1B inhibition promotes microglial phagocytosis in Alzheimer's disease models by enhancing SYK signaling 95%
Similar papers in this journal
- Pharmacological rescue of impaired mitophagy in Parkinson's disease-related LRRK2 G2019S knock-in mice 96%
- The LRRK2 G2019S mutation alters astrocyte-to-neuron communication via extracellular vesicles and induces neuron atrophy in a human iPSC-derived model of Parkinson's disease 95%
- Biochemical and neurophysiological effects of deficiency of the mitochondrial import protein TIMM50 95%
Similar papers in this journal
Similar papers in this journal
- Reduction of Nemo-like kinase increases lysosome biogenesis and ameliorates TDP-43-related neurodegeneration 96%
- Targeting Specific Kinase Substrates Rescues Increased Colitis Severity Induced by the Crohn's Disease-Linked LRRK2-N2081D Variant 95%
- Nemo-like kinase disrupts nuclear import and drives TDP43 mislocalization in ALS 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.