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Orbe, I. C.

Publications and source records attributed to Orbe, I. C..

4 recordsLinked to original sources

Leveraging the dominant-negative effect of the kuru-protective G127Vprion protein variant as a novel therapeutic strategy

Prion diseases are fatal neurodegenerative disorders with no approved therapies that halt or reverse disease progression. Given that cellular prion protein (PrPC) expression is required for prion propagation and neurotoxicity, reducing its expression is a promising therapeutic strategy. However, complete PrP ablation, as seen in knockout models, causes subtle developmental and behavioral abnormalities, raising concerns about long-term safety. Here, we explore a complementary strategy that harnesses the dominant-negative effect of the naturally protective G127V PrP variant found in kuru-resistant individuals in Papua New Guinea. In CAD5 cell lines, we demonstrate that inducible expression of G126V PrP (the mouse equivalent of human G127V) along with WT PrP prevents and suppresses prion infection in a dose-dependent manner. Extending this approach to CAD5 cells that express bank vole PrP, we further show that the protective effect of G127V spans a wide range of naturally and artificially derived prion strains, highlighting the generality of the dominant-negative approach. Remarkably, prion resistance persists even after G126V expression had ceased, indicating a sustained protective effect that could obviate the need for continuous transgene expression in a therapeutic setting. Finally, we find that anchorless, recombinant G127V PrP retains a potent dominant-negative activity, suggesting the use of this protein as a biological therapeutic. Together, these findings define a framework for development of G127V, a naturally protective and evolutionarily selected PrP variant, as a therapeutic agent to treat or prevent prion diseases.

cell biology↗

Lysosomal Enhancement Prevents Infection with PrPSc, α-Synuclein & Tau Prions

Prion diseases are fatal neurodegenerative diseases of humans and other mammals with no current treatment options. Here, we describe the characterization of a novel anti-prion compound, elacridar (GW120918), which has sub-micromolar activity in assays of prion infection, propagation and toxicity. Elacridar acts at an early step in the prion infection process, enhancing degradation of newly formed PrPSc. The lysosome is the likely site of elacridars anti-prion effects, based on transcriptomic analysis and the use of functional lysosomal probes. Elacridar alters gene expression networks controlling lysosomal sterol and lipid metabolism but, unlike other lysosomotropic drugs, it prominently upregulates genes that control lysosomal pH. Surprisingly, these effects occur independently of TFEB nuclear translocation, suggesting novel regulatory mechanisms. The anti-prion effects of elacridar extend to -synuclein and tau prions, highlighting lysosomal enhancement as a general strategy for treatment of protein misfolding neurodegenerative diseases. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/661349v3_ufig1.gif" ALT="Figure 1"> View larger version (58K): org.highwire.dtl.DTLVardef@171030forg.highwire.dtl.DTLVardef@8004e4org.highwire.dtl.DTLVardef@c139eborg.highwire.dtl.DTLVardef@1c19aab_HPS_FORMAT_FIGEXP M_FIG C_FIG

neuroscience↗

Immunodominant extracellular loops of Treponema pallidum FadL outer membrane proteins elicit antibodies with opsonic and growth-inhibitory activities

The global resurgence of syphilis has created a potent stimulus for vaccine development. To identify potentially protective antibodies (Abs) against Treponema pallidum (TPA), we used Pyrococcus furiosus thioredoxin (PfTrx) to display extracellular loops (ECLs) from three TPA outer membrane protein families (outer membrane factors for efflux pumps, eight-stranded {beta}-barrels, and FadLs) to assess their reactivity with immune rabbit serum (IRS). Five ECLs from the FadL orthologs TP0856, TP0858 and TP0865 were immunodominant. Rabbits and mice immunized with these five PfTrx constructs produced ECL-specific Abs that promoted opsonophagocytosis of TPA by rabbit peritoneal and murine bone marrow-derived macrophages at levels comparable to IRS and mouse syphilitic serum. ECL-specific rabbit and mouse Abs also impaired viability, motility, and cellular attachment of spirochetes during in vitro cultivation. The results support the use of ECL-based vaccines and suggest that ECL-specific Abs promote spirochete clearance via Fc receptor-independent as well as Fc receptor-dependent mechanisms. Author SummaryThe resurgence of syphilis emphasizes the critical need for vaccine development against Treponema pallidum (TPA). Research utilizing immune rabbit serum (IRS) suggests that an effective syphilis vaccine should induce "functional" antibodies (Abs) capable of enhancing the opsonophagocytosis of treponemes by activated macrophages. Structural models of TPA outer membrane proteins (OMPs), specifically the extracellular loops (ECLs), guided the identification of potential vaccine candidates. Antigenic analysis with IRS of individual ECLs from three TPA OMP families scaffolded onto Pyrococcus furiosus thioredoxin (PfTrx) revealed five FadL antigenic ECLs. Immunization with immunodominant ECL antigens elicited robust ECL-specific Abs, demonstrating functional opsonic activity in the opsonophagocytosis assays. Furthermore, these Abs effectively inhibited the growth inhibition of in vitro-cultivated TPA in both rabbit and mouse models. Our findings underscore the value of antigenic analysis in identifying promising TPA OMP ECL vaccine targets and highlight the multifaceted protective capacity of ECL Abs against TPA. This approach also extends to identifying potential OMP vaccinogens in other bacterial pathogens, offering valuable insights for broader vaccine development strategies.

immunology↗

Use of Epivolve phage display to generate a monoclonal antibody with opsonic activity directed against a subdominant epitope on extracellular loop 4 of Treponema pallidum BamA (TP0326)

Syphilis, a sexually transmitted infection caused by the spirochete Treponema pallidum (Tp), is resurging globally. Opsonic antibodies (Abs) targeting surface-exposed epitopes of the spirochetes outer membrane proteins (OMPs) are believed to promote macrophage-mediated clearance of the bacterium during infection and are presumed to be key to vaccine development. Tps repertoire of outer membrane proteins includes BamA ({beta}-barrel assembly machinery subunit A/TP0326), the central component of the molecular machine that inserts newly exported OMP precursors into the OM lipid bilayer. BamA is a bipartite protein consisting of an 18-stranded {beta}-barrel with nine extracellular loops (ECLs) and five periplasmic POTRA (polypeptide transport-associated) domains. Antisera directed against BamA ECL4 promote internalization of Tp by rabbit peritoneal macrophages. Herein, we employed a novel two-stage, phage display strategy, termed "Epivolve" (for epitope evolution), to generate five site-directed murine monoclonal Abs (mAbs) targeting a centrally located peptide (S2) of BamA ECL4. Each of the five mAbs demonstrated reactivity by immunoblotting and ELISA to nanogram amounts of BamA ECL4 displayed by a Pyrococcus furiosus thioredoxin (PfTrx) scaffold (PfTrxBamA/ECL4). One mAb containing a unique amino acid sequence in both light and heavy chains showed activity in an opsonophagocytosis assay employing murine bone marrow-derived macrophages. Mice and rabbits hyperimmunized with PfTrxBamA/ECL4 produced opsonic antisera that strongly recognized the ECL presented in a heterologous scaffold and overlapping ECL4 peptides including S2. In contrast, Abs generated during Tp infection of mice and rabbits poorly recognized the peptides, indicating that S2 contains a subdominant epitope. Epivolve, which circumvents the natural immune response, can be utilized for the generation of mAbs that target subdominant opsonic epitopes in ECLs of Tp OMPs.

immunology↗