Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
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Target Concepts:
Gene/Protein
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Query: UNIPROT:P20645 (
mannose-6-phosphate receptor
)
320
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Deposition of beta-amyloid occurs in the brains of all sufferers of Alzheimer's disease. beta-amyloid is proteolytically derived from the beta-amyloid precursor protein by as yet unidentified enzymes termed secretases. We have generated and characterised antisera to the carboxy-terminal domain and
beta-secretase
cleavage site of the Alzheimer's amyloid precursor protein. The
beta-secretase
cleavage event occurs at the extreme N-terminus of the beta-amyloid peptide. Our antiserum to the N-terminus of the beta-amyloid peptide (NT beta 4) specifically recognises
beta-secretase
cleaved species as opposed to intact beta APP. NT beta 4 specifically immunoprecipitates a 13 kDa fragment of beta APP (p13) which is potentially amyloidogenic. We have used these antisera in confocal laser scanning immunofluorescence microscopy to localise the intracellular location of potentially amyloidogenic beta APP processing fragments such as p13. Using a number of marker antisera of known intracellular location, we have defined the major location of beta APP fragments possessing the Asp-1 N-terminus of beta-amyloid as the trans-Golgi network or late endosome on the basis of colocalisation with a monoclonal antibody to the cation-independent
mannose-6-phosphate receptor
. The colocalisation was further investigated using brefeldin A which demonstrated that the p13 fragment and
mannose-6-phosphate receptor
are trafficked by alternative pathways from the trans-Golgi network.
...
PMID:Metabolites of the beta-amyloid precursor protein generated by beta-secretase localise to the trans-Golgi network and late endosome in 293 cells. 891 98
Memapsin 2 (BACE,
beta-secretase
) is a membrane-associated aspartic protease that initiates the hydrolysis of beta-amyloid precursor protein (APP) leading to the production of amyloid-beta (A beta) and the progression of Alzheimer disease. Both memapsin 2 and APP are transported from the cell surface to endosomes where APP is cleaved by memapsin 2. We described previously that the cytosolic domain of memapsin 2 contains an acid cluster-dileucine motif (ACDL) that binds the VHS (Vps-27, Hrs, and STAM) domain of Golgi-localized gamma-ear-containing ARF-binding (GGA) proteins (He, X., Zhu, G., Koelsch, G., Rodgers, K. K., Zhang, X. C., and Tang, J. (2003) Biochemistry 42, 12174-12180). Here we report that GGA proteins colocalize in the trans-Golgi network and endosomes with memapsin 2 and a memapsin 2 chimera containing a cytosolic domain of a
mannose-6-phosphate receptor
. Depleting cellular GGA proteins with RNA interference or mutation of serine 498 to stop the phosphorylation of ACDL resulted in the accumulation of memapsin 2 in early endosomes. A similar change of memapsin 2 localization also was observed when a retromer subunit, VPS26, was depleted. These observations suggest that GGA proteins function with the phosphorylated ACDL in the memapsin 2-recycling pathway from endosomes to trans-Golgi on the way back to the cell surface.
...
PMID:GGA proteins mediate the recycling pathway of memapsin 2 (BACE). 1561 12