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1.
Cell Mol Life Sci ; 77(24): 5223-5242, 2020 Dec.
Article in English | MEDLINE | ID: mdl-32065241

ABSTRACT

Endocytosis of the amyloid precursor protein (APP) is critical for generation of ß-amyloid, aggregating in Alzheimer's disease. APP endocytosis depending on the intracellular NPTY motif is well investigated, whereas involvement of the YTSI (also termed BaSS) motif remains controversial. Here, we show that APP lacking the YTSI motif (ΔYTSI) displays reduced localization to early endosomes and decreased internalization rates, similar to APP ΔNPTY. Additionally, we show that the YTSI-binding protein, PAT1a interacts with the Rab5 activator RME-6, as shown by several independent assays. Interestingly, knockdown of RME-6 decreased APP endocytosis, whereas overexpression increased the same. Similarly, APP ΔNPTY endocytosis was affected by PAT1a and RME-6 overexpression, whereas APP ΔYTSI internalization remained unchanged. Moreover, we could show that RME-6 mediated increase of APP endocytosis can be diminished upon knocking down PAT1a. Together, our data identify RME-6 as a novel player in APP endocytosis, involving the YTSI-binding protein PAT1a.


Subject(s)
Alzheimer Disease/genetics , Amino Acid Motifs/genetics , Amyloid beta-Protein Precursor/genetics , rab5 GTP-Binding Proteins/genetics , Alzheimer Disease/pathology , Amyloid beta-Peptides/genetics , Animals , Carrier Proteins/genetics , Endocytosis/genetics , Endosomes/genetics , Humans , Mice , Protein Transport/genetics , Transport Vesicles/genetics
2.
J Cell Biol ; 170(4): 607-18, 2005 Aug 15.
Article in English | MEDLINE | ID: mdl-16103228

ABSTRACT

Generation and turnover of phosphoinositides (PIs) must be coordinated in a spatial- and temporal-restricted manner. The small GTPase Rab5 interacts with two PI 3-kinases, Vps34 and PI3Kbeta, suggesting that it regulates the production of 3-PIs at various stages of the early endocytic pathway. Here, we discovered that Rab5 also interacts directly with PI 5- and PI 4-phosphatases and stimulates their activity. Rab5 regulates the production of phosphatidylinositol 3-phosphate (PtdIns[3]P) through a dual mechanism, by directly phosphorylating phosphatidylinositol via Vps34 and by a hierarchical enzymatic cascade of phosphoinositide-3-kinasebeta (PI3Kbeta), PI 5-, and PI 4-phosphatases. The functional importance of such an enzymatic pathway is demonstrated by the inhibition of transferrin uptake upon silencing of PI 4-phosphatase and studies in weeble mutant mice, where deficiency of PI 4-phosphatase causes an increase of PtdIns(3,4)P2 and a reduction in PtdIns(3)P. Activation of PI 3-kinase at the plasma membrane is accompanied by the recruitment of Rab5, PI 4-, and PI 5-phosphatases to the cell cortex. Our data provide the first evidence for a dual role of a Rab GTPase in regulating both generation and turnover of PIs via PI kinases and phosphatases to coordinate signaling functions with organelle homeostasis.


Subject(s)
Endocytosis , Phosphatidylinositols/metabolism , rab5 GTP-Binding Proteins/metabolism , Animals , Astrocytes/cytology , Astrocytes/metabolism , Brain/metabolism , Catalysis , Cell Compartmentation , Chromatography, Affinity , Down-Regulation/genetics , Enzyme Activation , HeLa Cells , Humans , Mice , NIH 3T3 Cells , Phosphatidylinositol 3-Kinases/metabolism , Phosphatidylinositol Phosphates/metabolism , Phosphoprotein Phosphatases/genetics , Phosphoprotein Phosphatases/metabolism , Protein Binding , Protein Transport , Serum , Transferrin/metabolism , rab5 GTP-Binding Proteins/isolation & purification
3.
Cell ; 121(3): 437-50, 2005 May 06.
Article in English | MEDLINE | ID: mdl-15882625

ABSTRACT

Different classes of endosomes exhibit a characteristic intracellular steady-state distribution governed by interactions with the cytoskeleton. We found a kinesin-3, KIF16B, that transports early endosomes to the plus end of microtubules in a process regulated by the small GTPase Rab5 and its effector, the phosphatidylinositol-3-OH kinase hVPS34. In vivo, KIF16B overexpression relocated early endosomes to the cell periphery and inhibited transport to the degradative pathway. Conversely, expression of dominant-negative mutants or ablation of KIF16B by RNAi caused the clustering of early endosomes to the perinuclear region, delayed receptor recycling to the plasma membrane, and accelerated degradation. These results suggest that KIF16B, by regulating the plus end motility of early endosomes, modulates the intracellular localization of early endosomes and the balance between receptor recycling and degradation. We propose that this mechanism could have important implications for signaling.


Subject(s)
Endosomes/metabolism , Kinesins/metabolism , Receptors, Cell Surface/metabolism , Amino Acid Sequence , Biological Transport , Cloning, Molecular , Epidermal Growth Factor/metabolism , ErbB Receptors/metabolism , HeLa Cells , Humans , Kinesins/genetics , Liposomes/metabolism , Microtubules/metabolism , Molecular Motor Proteins/metabolism , Molecular Sequence Data , Phosphatidylinositol 3-Kinases/metabolism , Phylogeny , Protein Binding , Protein Transport , Recombinant Proteins/metabolism , Sequence Homology, Amino Acid , Transferrin/metabolism , rab5 GTP-Binding Proteins/metabolism
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