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1.
J Clin Invest ; 131(23)2021 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-34673568

RESUMEN

To delineate the in vivo role of different costimulatory signals in activating and expanding highly functional virus-specific cytotoxic CD8+ T cells, we designed synTacs, infusible biologics that recapitulate antigen-specific T cell activation signals delivered by antigen-presenting cells. We constructed synTacs consisting of dimeric Fc-domain scaffolds linking CD28- or 4-1BB-specific ligands to HLA-A2 MHC molecules covalently tethered to HIV- or CMV-derived peptides. Treatment of HIV-infected donor PBMCs with synTacs bearing HIV- or CMV-derived peptides induced vigorous and selective ex vivo expansion of highly functional HIV- and/or CMV-specific CD8+ T cells, respectively, with potent antiviral activities. Intravenous injection of HIV- or CMV-specific synTacs into immunodeficient mice intrasplenically engrafted with donor PBMCs markedly and selectively expanded HIV-specific (32-fold) or CMV-specific (46-fold) human CD8+ T cells populating their spleens. Notably, these expanded HIV- or CMV-specific CD8+ T cells directed potent in vivo suppression of HIV or CMV infections in the humanized mice, providing strong rationale for consideration of synTac-based approaches as a therapeutic strategy to cure HIV and treat CMV and other viral infections. The synTac platform flexibility supports facile delineation of in vivo effects of different costimulatory signals on patient-derived virus-specific CD8+ T cells, enabling optimization of individualized therapies, including HIV cure strategies.


Asunto(s)
Infecciones por Citomegalovirus/metabolismo , Infecciones por VIH/metabolismo , Inmunoterapia/métodos , Receptores de Antígenos de Linfocitos T/metabolismo , Linfocitos T/inmunología , Linfocitos T/virología , Animales , Células Presentadoras de Antígenos/inmunología , Productos Biológicos , Linfocitos T CD8-positivos/citología , Citomegalovirus , Células HEK293 , Antígeno HLA-A2/metabolismo , Humanos , Técnicas In Vitro , Células Jurkat , Leucocitos Mononucleares/citología , Leucocitos Mononucleares/inmunología , Ligandos , Ratones , Ratones SCID , Péptidos , Bazo/metabolismo , Linfocitos T Citotóxicos/inmunología
2.
Sci Rep ; 11(1): 19220, 2021 09 28.
Artículo en Inglés | MEDLINE | ID: mdl-34584159

RESUMEN

Targeted pharmacologic activation of antigen-specific (AgS) T cells may bypass limitations inherent in current T cell-based cancer therapies. We describe two immunotherapeutics platforms for selective delivery of costimulatory ligands and peptide-HLA (pHLA) to AgS T cells. We engineered and deployed on these platforms an affinity-attenuated variant of interleukin-2, which selectively expands oligoclonal and polyfunctional AgS T cells in vitro and synergizes with CD80 signals for superior proliferation versus peptide stimulation.


Asunto(s)
Linfocitos T CD8-positivos/inmunología , Inmunoterapia/métodos , Neoplasias/terapia , Proteínas Recombinantes de Fusión/inmunología , Animales , Antígeno B7-1/metabolismo , Linfocitos T CD8-positivos/metabolismo , Células Cultivadas , Antígenos HLA-A/genética , Antígenos HLA-A/inmunología , Humanos , Activación de Linfocitos , Ratones , Ratones Transgénicos , Mutación , Neoplasias/inmunología , Péptidos/genética , Péptidos/inmunología , Cultivo Primario de Células , Ingeniería de Proteínas , Proteínas Recombinantes de Fusión/genética
3.
Nat Methods ; 17(10): 1025-1032, 2020 10.
Artículo en Inglés | MEDLINE | ID: mdl-32929269

RESUMEN

The immune system's ability to recognize peptides on major histocompatibility molecules contributes to the eradication of cancers and pathogens. Tracking these responses in vivo could help evaluate the efficacy of immune interventions and improve mechanistic understanding of immune responses. For this purpose, we employ synTacs, which are dimeric major histocompatibility molecule scaffolds of defined composition. SynTacs, when labeled with positron-emitting isotopes, can noninvasively image antigen-specific CD8+ T cells in vivo. Using radiolabeled synTacs loaded with the appropriate peptides, we imaged human papillomavirus-specific CD8+ T cells by positron emission tomography in mice bearing human papillomavirus-positive tumors, as well as influenza A virus-specific CD8+ T cells in the lungs of influenza A virus-infected mice. It is thus possible to visualize antigen-specific CD8+ T-cell populations in vivo, which may serve prognostic and diagnostic roles.


Asunto(s)
Linfocitos T CD8-positivos/fisiología , Virus de la Influenza A/inmunología , Infecciones por Orthomyxoviridae/virología , Papillomaviridae/inmunología , Tomografía de Emisión de Positrones/métodos , Animales , Antígenos , Clonación Molecular , Epítopos/genética , Epítopos/metabolismo , Femenino , Regulación de la Expresión Génica/inmunología , Antígenos de Histocompatibilidad Clase I/clasificación , Antígenos de Histocompatibilidad Clase I/inmunología , Humanos , Inmunoglobulina G/clasificación , Inmunoglobulina G/inmunología , Pulmón/virología , Ratones , Ratones Endogámicos C57BL , Infecciones por Orthomyxoviridae/inmunología
4.
Immunology ; 144(4): 631-40, 2015 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-25333865

RESUMEN

Type 1 diabetes is characterized by T-cell-mediated destruction of the insulin-producing ß cells in pancreatic islets. A number of islet antigens recognized by CD8 T cells that contribute to disease pathogenesis in non-obese diabetic (NOD) mice have been identified; however, the antigenic specificities of the majority of the islet-infiltrating cells have yet to be determined. The primary goal of the current study was to identify candidate antigens based on the level and specificity of expression of their genes in mouse islets and in the mouse ß cell line MIN6. Peptides derived from the candidates were selected based on their predicted ability to bind H-2K(d) and were examined for recognition by islet-infiltrating T cells from NOD mice. Several proteins, including those encoded by Abcc8, Atp2a2, Pcsk2, Peg3 and Scg2, were validated as antigens in this way. Interestingly, islet-infiltrating T cells were also found to recognize peptides derived from proglucagon, whose expression in pancreatic islets is associated with α cells, which are not usually implicated in type 1 diabetes pathogenesis. However, type 1 diabetes patients have been reported to have serum autoantibodies to glucagon, and NOD mouse studies have shown a decrease in α cell mass during disease pathogenesis. Our finding of islet-infiltrating glucagon-specific T cells is consistent with these reports and suggests the possibility of α cell involvement in development and progression of disease.


Asunto(s)
Autoantígenos/inmunología , Linfocitos T CD8-positivos/inmunología , Diabetes Mellitus Tipo 1/inmunología , Islotes Pancreáticos/inmunología , Proglucagón/inmunología , Animales , Autoantígenos/metabolismo , Autoinmunidad , Linfocitos T CD8-positivos/metabolismo , Línea Celular Tumoral , Biología Computacional , Diabetes Mellitus Tipo 1/metabolismo , Modelos Animales de Enfermedad , Ensayo de Immunospot Ligado a Enzimas , Mapeo Epitopo , Epítopos de Linfocito T/inmunología , Epítopos de Linfocito T/metabolismo , Antígenos H-2/inmunología , Antígenos H-2/metabolismo , Interferón gamma/metabolismo , Ensayos de Liberación de Interferón gamma , Islotes Pancreáticos/metabolismo , Ratones Endogámicos NOD , Proglucagón/metabolismo , Unión Proteica
5.
Proc Natl Acad Sci U S A ; 108(33): 13682-7, 2011 Aug 16.
Artículo en Inglés | MEDLINE | ID: mdl-21825122

RESUMEN

Peptide-MHC (pMHC) multimers, in addition to being tools for tracking and quantifying antigen-specific T cells, can mediate downstream signaling after T-cell receptor engagement. In the absence of costimulation, this can lead to anergy or apoptosis of cognate T cells, a property that could be exploited in the setting of autoimmune disease. Most studies with class I pMHC multimers used noncovalently linked peptides, which can allow unwanted CD8(+) T-cell activation as a result of peptide transfer to cellular MHC molecules. To circumvent this problem, and given the role of self-reactive CD8(+) T cells in the development of type 1 diabetes, we designed a single-chain pMHC complex (scK(d).IGRP) by using the class I MHC molecule H-2K(d) and a covalently linked peptide derived from islet-specific glucose-6-phosphatase catalytic subunit-related protein (IGRP(206-214)), a well established autoantigen in NOD mice. X-ray diffraction studies revealed that the peptide is presented in the groove of the MHC molecule in canonical fashion, and it was also demonstrated that scK(d).IGRP tetramers bound specifically to cognate CD8(+) T cells. Tetramer binding induced death of naive T cells and in vitro- and in vivo-differentiated cytotoxic T lymphocytes, and tetramer-treated cytotoxic T lymphocytes showed a diminished IFN-γ response to antigen stimulation. Tetramer accessibility to disease-relevant T cells in vivo was also demonstrated. Our study suggests the potential of single-chain pMHC tetramers as possible therapeutic agents in autoimmune disease. Their ability to affect the fate of naive and activated CD8(+) T cells makes them a potential intervention strategy in early and late stages of disease.


Asunto(s)
Enfermedades Autoinmunes/tratamiento farmacológico , Linfocitos T CD8-positivos/efectos de los fármacos , Antígenos de Histocompatibilidad/farmacología , Fragmentos de Péptidos/farmacología , Animales , Autoantígenos , Linfocitos T CD8-positivos/inmunología , Muerte Celular/efectos de los fármacos , Diabetes Mellitus Tipo 1/tratamiento farmacológico , Diabetes Mellitus Tipo 1/inmunología , Glucosa-6-Fosfatasa/inmunología , Antígenos de Histocompatibilidad/química , Activación de Linfocitos/inmunología , Ratones , Ratones Endogámicos NOD , Ratones Transgénicos , Fragmentos de Péptidos/química , Fragmentos de Péptidos/inmunología , Multimerización de Proteína
6.
Int Immunol ; 22(3): 191-203, 2010 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-20093428

RESUMEN

Type 1 diabetes (T1D) is an autoimmune disease characterized by T cell-mediated destruction of insulin-producing pancreatic beta cells. In both humans and the non-obese diabetic (NOD) mouse model of T1D, class II MHC alleles are the primary determinant of disease susceptibility. However, class I MHC genes also influence risk. These findings are consistent with the requirement for both CD4(+) and CD8(+) T cells in the pathogenesis of T1D. Although a large body of work has permitted the identification of multiple mechanisms to explain the diabetes-protective effect of particular class II MHC alleles, studies examining the protective influence of class I alleles are lacking. Here, we explored this question by performing biochemical and structural analyses of the murine class I MHC molecule H-2K(wm7), which exerts a diabetes-protective effect in NOD mice. We have found that H-2K(wm7) molecules are predominantly occupied by the single self-peptide VNDIFERI, derived from the ubiquitous protein histone H2B. This unexpected finding suggests that the inability of H-2K(wm7) to support T1D development could be due, at least in part, to the failure of peptides from critical beta-cell antigens to adequately compete for binding and be presented to T cells. Predominant presentation of a single peptide would also be expected to influence T-cell selection, potentially leading to a reduced ability to select a diabetogenic CD8(+) T-cell repertoire. The report that one of the predominant peptides bound by T1D-protective HLA-A*31 is histone derived suggests the potential translation of our findings to human diabetes-protective class I MHC molecules.


Asunto(s)
Diabetes Mellitus Tipo 1/genética , Predisposición Genética a la Enfermedad , Antígenos H-2/metabolismo , Secuencia de Aminoácidos , Animales , Línea Celular , Separación Celular , Cristalografía , Femenino , Citometría de Flujo , Antígenos H-2/química , Antígenos H-2/genética , Histonas/química , Histonas/genética , Histonas/metabolismo , Humanos , Espectrometría de Masas , Ratones , Ratones Endogámicos NOD , Datos de Secuencia Molecular , Péptidos/química , Péptidos/genética , Péptidos/metabolismo , Filogenia , Estructura Cuaternaria de Proteína
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