Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 6 de 6
Filter
Add more filters










Database
Language
Publication year range
1.
Mol Neurobiol ; 56(3): 2073-2091, 2019 Mar.
Article in English | MEDLINE | ID: mdl-29987703

ABSTRACT

PrPSc is an infectious and disease-specific conformer of the prion protein, which accumulation in the CNS underlies the pathology of prion diseases. PrPSc replicates by binding to the cellular conformer of the prion protein (PrPC) expressed by host cells and rendering its secondary structure a likeness of itself. PrPC is a plasma membrane anchored protein, which constitutively recirculates between the cell surface and the endocytic compartment. Since PrPSc engages PrPC along this trafficking pathway, its replication process is often referred to as "recycling propagation." Certain monoclonal antibodies (mAbs) directed against prion protein can abrogate the presence of PrPSc from prion-infected cells. However, the precise mechanism(s) underlying their therapeutic propensities remains obscure. Using N2A murine neuroblastoma cell line stably infected with 22L mouse-adapted scrapie strain (N2A/22L), we investigated here the modus operandi of the 6D11 clone, which was raised against the PrPSc conformer and has been shown to permanently clear prion-infected cells from PrPSc presence. We determined that 6D11 mAb engages and sequesters PrPC and PrPSc at the cell surface. PrPC/6D11 and PrPSc/6D11 complexes are then endocytosed from the plasma membrane and are directed to lysosomes, therefore precluding recirculation of nascent PrPSc back to the cell surface. Targeting PrPSc by 6D11 mAb to the lysosomal compartment facilitates its proteolysis and eventually shifts the balance between PrPSc formation and degradation. Ongoing translation of PrPC allows maintaining the steady-state level of prion protein within the cells, which was not depleted under 6D11 mAb treatment. Our findings demonstrate that through disrupting recycling propagation of PrPSc and promoting its degradation, 6D11 mAb restores cellular proteostasis of prion protein.


Subject(s)
Antibodies, Monoclonal , Lysosomes/metabolism , PrPSc Proteins/metabolism , Prion Diseases/metabolism , Prion Proteins/metabolism , Animals , Cell Line, Tumor , Mice , Proteolysis , Proteostasis , Scrapie/metabolism
2.
BMC Neurosci ; 11: 130, 2010 Oct 14.
Article in English | MEDLINE | ID: mdl-20946660

ABSTRACT

BACKGROUND: Alzheimer's Disease (AD) is the most common of the conformational neurodegenerative disorders characterized by the conversion of a normal biological protein into a ß-sheet-rich pathological isoform. In AD the normal soluble Aß (sAß) forms oligomers and fibrils which assemble into neuritic plaques. The most toxic form of Aß is thought to be oligomeric. A recent study reveals the cellular prion protein, PrPC, to be a receptor for Aß oligomers. Aß oligomers suppress LTP signal in murine hippocampal slices but activity remains when pretreated with the PrP monoclonal anti-PrP antibody, 6D11. We hypothesized that targeting of PrPC to prevent Aß oligomer-related cognitive deficits is a potentially novel therapeutic approach. APP/PS1 transgenic mice aged 8 months were intraperitoneally (i.p.) injected with 1 mg 6D11 for 5 days/week for 2 weeks. Two wild-type control groups were given either the same 6D11 injections or vehicle solution. Additional groups of APP/PS1 transgenic mice were given either i.p. injections of vehicle solution or the same dose of mouse IgG over the same period. The mice were then subjected to cognitive behavioral testing using a radial arm maze, over a period of 10 days. At the conclusion of behavioral testing, animals were sacrificed and brain tissue was analyzed biochemically or immunohistochemically for the levels of amyloid plaques, PrPC, synaptophysin, Aß40/42 and Aß oligomers. RESULTS: Behavioral testing showed a marked decrease in errors in 6D11 treated APP/PS1 Tg mice compared with the non-6D11 treated Tg groups (p < 0.0001). 6D11 treated APP/PS1 Tg mice behaved the same as wild-type controls indicating a recovery in cognitive learning, even after this short term 6D11 treatment. Brain tissue analysis from both treated and vehicle treated APP/PS1 groups indicate no significant differences in amyloid plaque burden, Aß40/42, PrPC or Aß oligomer levels. 6D11 treated APP/PS1 Tg mice had significantly greater synaptophysin immunoreactivity in the dentate gyrus molecular layer of the hippocampus compared to vehicle treated APP/PS1 Tg mice (p < 0.05). CONCLUSIONS: Even short term treatment with monoclonal antibodies such as 6D11 or other compounds which block the binding of Aß oligomers to PrPC can be used to treat cognitive deficits in aged AD transgenic mice.


Subject(s)
Alzheimer Disease/drug therapy , Antibodies, Monoclonal/therapeutic use , Cognition Disorders/drug therapy , PrPC Proteins/antagonists & inhibitors , PrPC Proteins/immunology , Alzheimer Disease/pathology , Alzheimer Disease/psychology , Amyloid beta-Peptides/genetics , Amyloid beta-Peptides/metabolism , Animals , Blotting, Western , Cerebral Cortex/metabolism , Cerebral Cortex/pathology , Cognition Disorders/etiology , Cognition Disorders/psychology , Enzyme-Linked Immunosorbent Assay , Hippocampus/metabolism , Hippocampus/pathology , Humans , Image Processing, Computer-Assisted , Immunohistochemistry , Memory, Short-Term/physiology , Mice , Mice, Transgenic , Psychomotor Performance/physiology , Synapses/pathology , Synaptophysin/metabolism
3.
Neurobiol Dis ; 34(2): 267-78, 2009 May.
Article in English | MEDLINE | ID: mdl-19385058

ABSTRACT

The pathogenesis of prion diseases is related to conformational transformation of cellular prion protein (PrP(C)) into a toxic, infectious, and self-replicating conformer termed PrP(Sc). Following extracerebral inoculation, the replication of PrP(Sc) is confined for months to years to the lymporeticular system (LRS) before the secondary CNS involvement results in occurrence of neurological symptoms. Therefore, replication of PrP(Sc), in the early stage of infection can be targeted by therapeutic approaches, which like passive immunization have limited blood-brain-barrier penetration. In this study, we show that 6D11 anti-PrP monoclonal antibody (Mab) prevents infection on a FDC-P1 myeloid precursor cell line stably infected with 22L mouse adapted scrapie strain. Passive immunization of extracerebrally infected CD-1 mice with Mab 6D11 resulted in effective suppression of PrP(Sc) replication in the LRS. Although, a rebound of PrP(Sc) presence occurred when the Mab 6D11 treatment was stopped, passively immunized mice showed a prolongation of the incubation period by 36.9% (pb0.0001) and a significant decrease in CNS pathology compared to control groups receiving vehicle or murine IgG. Our results indicate that antibody-based therapeutic strategies can be used, even on a short-term basis, to delay or prevent disease in subjects accidentally exposed to prions.


Subject(s)
Antibodies, Monoclonal/pharmacology , Immunization, Passive/methods , Lymphatic System/drug effects , Myeloid Progenitor Cells/drug effects , PrPSc Proteins/antagonists & inhibitors , Prion Diseases/drug therapy , Animals , Blood-Brain Barrier/drug effects , Blood-Brain Barrier/immunology , Blood-Brain Barrier/metabolism , Brain/drug effects , Brain/immunology , Brain/metabolism , Cell Line , Down-Regulation/drug effects , Down-Regulation/immunology , Female , Humans , Lymphatic System/immunology , Lymphatic System/metabolism , Mice , Myeloid Cells/drug effects , Myeloid Cells/immunology , Myeloid Cells/metabolism , Myeloid Progenitor Cells/immunology , Myeloid Progenitor Cells/metabolism , PrPSc Proteins/biosynthesis , Prion Diseases/immunology , Prion Diseases/metabolism , Protein Conformation/drug effects , Scrapie/drug therapy , Scrapie/immunology , Scrapie/metabolism , Treatment Outcome
4.
J Virol ; 82(21): 10701-8, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18715916

ABSTRACT

Prion diseases such as scrapie involve the accumulation of disease-specific prion protein, PrP(Sc), in the brain. Toll-like receptors (TLRs) are a family of proteins that recognize microbial constituents and are central players in host innate immune responses. The TLR9 agonist unmethylated CpG DNA was shown to prolong the scrapie incubation period in mice, suggesting that innate immune activation interferes with prion disease progression. Thus, it was predicted that ablation of TLR signaling would result in accelerated pathogenesis. C3H/HeJ (Tlr4(Lps-d)) mice, which possess a mutation in the TLR4 intracellular domain preventing TLR4 signaling, and strain-matched wild-type control (C3H/HeOuJ) mice were infected intracerebrally or intraperitoneally with various doses of scrapie inoculum. Incubation periods were significantly shortened in C3H/HeJ compared with C3H/HeOuJ mice, regardless of the route of infection or dose administered. At the clinical phase of disease, brain PrP(Sc) levels in the two strains of mice showed no significant differences by Western blotting. In addition, compared with macrophages from C3H/HeOuJ mice, those from C3H/HeJ mice were unresponsive to fibrillogenic PrP peptides (PrP residues 106 to 126 [PrP(106-126)] and PrP(118-135)) and the TLR4 agonist lipopolysaccharide but not to the TLR2 agonist zymosan, as measured by cytokine production. These data confirm that innate immune activation via TLR signaling interferes with scrapie infection. Furthermore, the results also suggest that the scrapie pathogen, or a component(s) thereof, is capable of stimulating an innate immune response that is active in the central nervous system, since C3H/HeJ mice, which lack the response, exhibit shortened incubation periods following both intraperitoneal and intracerebral infections.


Subject(s)
Prion Diseases/immunology , Toll-Like Receptor 4/immunology , Animals , Blotting, Western , Brain/pathology , Female , Interleukin-6/metabolism , Macrophages/immunology , Mice , Mice, Inbred C3H , Prion Diseases/physiopathology , Time Factors , Toll-Like Receptor 4/genetics , Tumor Necrosis Factor-alpha/metabolism
5.
J Leukoc Biol ; 81(6): 1374-85, 2007 Jun.
Article in English | MEDLINE | ID: mdl-17379700

ABSTRACT

Prion diseases are characterized by conversion of the cellular prion protein (PrP(C)) to a protease-resistant conformer, the srapie form of PrP (PrP(Sc)). Humoral immune responses to nondenatured forms of PrP(Sc) have never been fully characterized. We investigated whether production of antibodies to PrP(Sc) could occur in PrP null (Prnp(-/-)) mice and further, whether innate immune stimulation with the TLR9 agonist CpG oligodeoxynucleotide (ODN) 1826 could enhance this process. Whether such stimulation could raise anti-PrP(Sc) antibody levels in wild-type (Prnp(+/+)) mice was also investigated. Prnp(-/-) and Prnp(+/+) mice were immunized with nondenatured 139A scrapie-associated fibrils (SAF), with or without ODN 1826, and were tested for titers of PrP-specific antibodies. In Prnp(-/-) mice, inclusion of ODN 1826 in the immunization regime increased anti-PrP titers more than 13-fold after two immunizations and induced, among others, antibodies to an N-terminal epitope, which were only present in the immune repertoire of mice receiving ODN 1826. mAb 6D11, derived from such a mouse, reacts with the N-terminal epitope QWNK in native and denatured forms of PrP(Sc) and recombinant PrP and exhibits a K(d) in the 10(-)(11) M range. In Prnp(+/+) mice, ODN 1826 increased anti-PrP levels as much as 84% after a single immunization. Thus, ODN 1826 potentiates adaptive immune responses to PrP(Sc) in 139A SAF-immunized mice. These results represent the first characterization of humoral immune responses to nondenatured, infectious PrP(Sc) and suggest methods for optimizing the generation of mAbs to PrP(Sc), many of which could be used for diagnosis and treatment of prion diseases.


Subject(s)
Antibodies, Monoclonal/biosynthesis , DNA/immunology , PrP 27-30 Protein/immunology , PrPSc Proteins/immunology , Animals , Antibody Formation , Epitopes , Immunity, Innate , Immunization , Immunoglobulin Class Switching , Mice , Mice, Knockout , Oligodeoxyribonucleotides , PrPSc Proteins/biosynthesis , PrPSc Proteins/genetics , Th1 Cells/immunology , Th2 Cells/immunology , Toll-Like Receptor 9/immunology
6.
Eur J Neurosci ; 23(10): 2635-47, 2006 May.
Article in English | MEDLINE | ID: mdl-16817866

ABSTRACT

Prion diseases are transmissible and invariably fatal neurodegenerative disorders associated with a conformational transformation of the cellular prion protein (PrP(C)) into a self-replicating and proteinase K (PK)-resistant conformer, scrapie PrP (PrP(Sc)). Humoral immunity may significantly prolong the incubation period and even prevent disease in murine models of prionoses. However, the mechanism(s) of action of anti-PrP monoclonal antibodies (Mabs) remain(s) obscure. The murine neuroblastoma N2a cell line, infected with the 22L mouse-adapted scrapie strain, was used to screen a large library of Mabs with similar binding affinities to PrP, to identify those antibodies which could clear established infection and/or prevent infection de novo. Three Mabs were found capable of complete and persistent clearing of already-infected N2a cells of PrP(Sc). These antibodies were 6D11 (generated to PK-resistant PrP(Sc) and detecting PrP residues 93-109), and 7H6 and 7A12, which were raised against recombinant PrP and react with neighbouring epitopes of PrP residues 130-140 and 143-155, respectively. Mabs were found to interact with PrP(Sc) formation both on the cell surface and after internalization in the cytosol. Treatment with Mabs was not associated with toxicity nor did it result in decreased expression of PrP(C). Both preincubation of N2a cells with Mabs prior to exposure to 22L inoculum and preincubation of the inoculum with Mabs prior to infecting N2a cells resulted in a significant reduction in PrP(Sc) levels. Information provided in these studies is important for the rational design of humoral immune therapy for prion infection in animals and eventually in humans.


Subject(s)
Antibodies, Monoclonal/pharmacology , PrPC Proteins/drug effects , PrPSc Proteins/drug effects , Prion Diseases/immunology , Prion Diseases/prevention & control , Animals , Antibody Affinity , Cells, Cultured , Epitope Mapping , Immunodominant Epitopes , Mice , PrPC Proteins/immunology , PrPSc Proteins/immunology , PrPSc Proteins/pathogenicity
SELECTION OF CITATIONS
SEARCH DETAIL