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Published on: August 10, 2017
Role of the AP-5 adaptor protein complex in late endosome-to-Golgi retrieval
Jennifer Hirst1, Daniel N Itzhak2, Robin Antrobus1
1University of Cambridge, Cambridge Institute for Medical Research, Cambridge, United Kingdom.
Abstract:
The AP-5 adaptor protein complex is presumed to function in membrane traffic, but so far nothing is known about its pathway or its cargo. We have used CRISPR-Cas9 to knock out the AP-5 ζ subunit gene, AP5Z1, in HeLa cells, and then analysed the phenotype by subcellular fractionation profiling and quantitative mass spectrometry. The retromer complex had an altered steady-state distribution in the knockout cells, and several Golgi proteins, including GOLIM4 and GOLM1, were depleted from vesicle-enriched fractions. Immunolocalisation showed that loss of AP-5 led to impaired retrieval of the cation-independent mannose 6-phosphate receptor (CIMPR), GOLIM4, and GOLM1 from endosomes back to the Golgi region. Knocking down the retromer complex exacerbated this phenotype. Both the CIMPR and sortilin interacted with the AP-5-associated protein SPG15 in pull-down assays, and we propose that sortilin may act as a link between Golgi proteins and the AP-5/SPG11/SPG15 complex. Together, our findings suggest that AP-5 functions in a novel sorting step out of late endosomes, acting as a backup pathway for retromer. This provides a mechanistic explanation for why mutations in AP-5/SPG11/SPG15 cause cells to accumulate aberrant endolysosomes, and highlights the role of endosome/lysosome dysfunction in the pathology of hereditary spastic paraplegia and other neurodegenerative disorders.
Insights
The AP-5 adaptor protein complex acts as a backup pathway for retromer, ensuring proper endosome-to-Golgi retrieval of proteins. Its dysfunction contributes to endolysosome issues seen in neurodegenerative diseases.
Area of Science:
- Cell Biology
- Molecular Biology
- Neuroscience
Background:
- The AP-5 adaptor protein complex's role in membrane traffic remains largely unknown.
- Understanding AP-5's pathway and cargo is crucial for deciphering its cellular functions.
Purpose of the Study:
- To investigate the function and cargo of the AP-5 adaptor protein complex.
- To elucidate the role of AP-5 in cellular membrane trafficking pathways.
Main Methods:
- CRISPR-Cas9 gene knockout of AP5Z1 in HeLa cells.
- Subcellular fractionation profiling and quantitative mass spectrometry.
- Immunolocalisation and pull-down assays.
Main Results:
- Loss of AP-5 impaired retrieval of CIMPR, GOLIM4, and GOLM1 from endosomes to the Golgi.
- AP-5 dysfunction altered retromer complex distribution and depleted Golgi proteins from vesicles.
- Sortilin potentially links Golgi proteins to the AP-5/SPG11/SPG15 complex.
Conclusions:
- AP-5 functions in a novel sorting step from late endosomes, serving as a backup for the retromer pathway.
- This identifies a mechanistic link between AP-5 mutations, endolysosome dysfunction, and neurodegenerative disorders like hereditary spastic paraplegia.
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