| Literature DB >> 23340381 |
Andrea Grassmann1, Hanna Wolf, Julia Hofmann, James Graham, Ina Vorberg.
Abstract
Prion diseases or transmissible spongiform encephalopathies (TSEs) are fatal neurodegenerative disorders in mammals that are caused by unconventional agents predominantly composed of aggregated misfolded prion protein (PrP). Prions self-propagate by recruitment of host-encoded PrP into highly ordered b-sheet rich aggregates. Prion strains differ in their clinical, pathological and biochemical characteristics and are likely to be the consequence of distinct abnormal prion protein conformers that stably replicate their alternate states in the host cell. Understanding prion cell biology is fundamental for identifying potential drug targets for disease intervention. The development of permissive cell culture models has greatly enhanced our knowledge on entry, propagation and dissemination of TSE agents. However, despite extensive research, the precise mechanism of prion infection and potential strain effects remain enigmatic. This review summarizes our current knowledge of the cell biology and propagation of prions derived from cell culture experiments. We discuss recent findings on the trafficking of cellular and pathologic PrP, the potential sites of abnormal prion protein synthesis and potential co-factors involved in prion entry and propagation.Entities:
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Year: 2013 PMID: 23340381 PMCID: PMC3564126 DOI: 10.3390/v5010374
Source DB: PubMed Journal: Viruses ISSN: 1999-4915 Impact factor: 5.048
Figure 1Localization of PrPC and PrPSc in L929 fibroblast cells. (A) Indirect immunofluorescence (IF) staining of cellular PrP (green) in uninfected L929 cells. PrPC predominantly resides at the cell surface with some intracellular localization. (B) Detection of PrPSc in L929 cells persistently infected with prion strain 22L by IF. In contrast to PrPC, PrPSc (green) primarily localizes intracellularly and partially co-localizes with the lysosomal marker Lamp-1 (red). (A,B) Nuclei were counterstained with Hoechst (blue). Scale bar: 5 µm.
Figure 2Cell biology of PrP in scrapie-infected cells. PrPC is synthesized in the endoplasmic reticulum (ER) and passes through the secretory pathway to the cell surface, where it resides in lipid rafts. In many cells, PrPC leaves lipid rafts prior to being internalized by clathrin-dependent endocytosis (I). Clathrin-independent raft/caveolae-dependent internalization (II) of PrPC has also been proposed for some cells. PrPC can be degraded by lysosomes or rapidly recycled back to the cell surface by recycling endosomes (RE). In cultured scrapie-infected cells the conversion of PrPC to PrPSc is believed to take place on the cell surface and/or in vesicles along the endolysosomal pathway. After conversion PrPSc can accumulate at the cell surface or in intracellular vesicles (e.g. lysosomes).
Cell culture models susceptible to transmissible spongiform encephalopathy (TSE) agents.
| Cell designation | Tissue of origin or cell type | Species of origin | Prion strain | References |
|---|---|---|---|---|
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| ||||
| N2a | neuroblastoma cell line* | mouse | Chandler, RML, 139A, 22L, C506, Fukuoka-1, FU CJD | [ |
| GT1 | hypothalamic cell line | mouse | Chandler, RML, 139A, 22L, kCJD, FU CJD , M1000 | [ |
| SN56 | cholinergic septal cell line | mouse | Chandler, ME7, 22L | [ |
| HpL3-4 | hippocampal PrP-deficient cell line, | mouse | 22L | [ |
| CF10 | brain derived PrP-deficient cell line, | mouse | 22L | [ |
| SMB | prion-infected brain cell | mouse | Chandler, 139A, 22F, 79A | [ |
| CAD | catecholaminergic cell line | mouse | RML, 22L, 22F, 79A, 139A, ME7 | [ |
| MG20 | microglial cell line overexpressing PrPC | tg20 mouse | Chandler, ME7, Obihiro, mouse-adapted BSE | [ |
| PC12 | pheochromocytoma cell line | rat | 139A, ME7 | [ |
| HaB | brain-derived cell line | hamster | Sc237 | [ |
| SH-SY5Y | neuroblastoma cell line | human | sCJD brain material | [ |
| MDB | primary brain cells, | mule deer | CWD | [ |
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| CGN | cerebellar granule neurons overexpressing ovine PrPC | tgov mouse | mo 127S | [ |
| CAS | cerebellar astrocytes overexpressing ovine PrPC | tgov mouse | mo 127S | [ |
| NSC | neural stem cells | mouse | 22L, RML | [ |
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| C2C12 | skeletal myoblast cell line | mouse | 22L | [ |
| L fibroblasts | fibroblast cell line | mouse | ME7, Chandler | [ |
| L929 | fibroblast cell line | mouse | 22L, RML, ME7 | [ |
| NIH/3T3 | fibroblast cell line | mouse | 22L | [ |
| MSC-80 | Schwann cell line | mouse | Chandler | [ |
| MovS | Schwann cell-like from dorsal root ganglia | tgov mouse | PG127, SSBP/1, scrapie field isolates | [ |
| moRK13 | epithelial cell line expressing mouse PrPC | rabbit | Fukuoka-1, 22L, Chandler, M1000, mo sCJD | [ |
| voRK13 | epithelial cell line expressing vole PrPC | rabbit | vo BSE | [ |
| ovRK13/ RoV9 | epithelial cell line expressing ovine PrPC | rabbit | PG127, LA404, SSBP/1, scrapie field isolates | [ |
| elkRK13 | epithelial cell line expressing elk PrPC | rabbit | CWD | [ |
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| BM-derived MSC | bone marrow derived mesenchymal stem cell | mouse | Fukuoka-1 | [ |
| BM-derived MSC-like | bone marrow derived mesenchymal stem cell like | mouse | Fukuoka-1 | [ |
* some cells overexpress moPrPC-A or 3F4 antibody-epitope tagged moPrPC
Figure 3Non-neuronal cells and PrP-deficient cells take up PrPSc. Brain homogenate from mice infected with the 22L prion strain is taken up by L929 fibroblast cells (left panel) and PrP-deficient HpL3-4 cells (right panel). Cells were incubated with infected brain homogenate for 18 hours prior to fixation, permeabilization, guanidine hydrochloride treatment and immunofluorescence staining. Cells incubated with uninfected brain homogenate (MOCK ctrl) served as control for specific detection of PrPSc. PrPSc uptake is observed in both fibroblast cells and PrP-deficient cells. Monoclonal anti-PrP antibody: 4H11. Nuclei were counterstained with Hoechst (blue). Scale bar: 5 µm.
Routes of prion dissemination in cell culture.
| Prion-infected donor cell line | Prion strain | Intercellular prion spreading | PrPSc secreted | References |
|---|---|---|---|---|
| N2a | 22L | Yes, via conditioned medium | Yes, associated with exosomes | [ |
| N2a | RML | No or inefficient | Not determined | [ |
| SMB | Chandler | Yes, via direct cell contact | Not determined | [ |
| HpL3-4* | 22L | Yes, via conditioned medium | Not determined | [ |
| NIH/3T3 | 22L | Yes, via conditioned medium | Yes, associated with exosomes | [ |
| CAD | 139A | Yes, via TNTs | Not determined | [ |
| GT1 | RML | Yes, via conditioned medium | Not determined | [ |
| GT1 | FU CJD | Yes, via conditioned medium | Not determined | [ |
| GT1 | M1000 | Yes | Yes, associated with exosomes | [ |
| ovRK13/ RoV9 | PG127 | Yes (inefficiently) | Yes, associated with exosomes | [ |
| moRK13 | M1000 | Yes | Yes, associated with exosomes | [ |
| Mov | PG127 | Yes, via close proximity of cells | Yes, associated with exosomes | [ |
| SN56 | Chandler | Yes, via conditioned medium | Yes | [ |
* cells ectopically express 3F4 antibody-epitope tagged moPrPC
Figure 4Propagation of cytosolic prions derived from the S. cerevisiae Sup35 prion domain NM. N2a cells ectopically express the HA-tagged prion domain NM of Sup35, which is the most well characterized yeast prion. The left image shows aggregated NM-HA (green) after induction with recombinant NM fibrils, the right image shows the soluble NM-HA (green). NM was stained with anti-HA antibody. F-Actin was stained with fluorescently conjugated phalloidin (red). Nuclei were stained with Hoechst (blue). Scale bar: 5 µm.