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1.
Oncoimmunology ; 11(1): 2113697, 2022.
Artículo en Inglés | MEDLINE | ID: mdl-36016696

RESUMEN

The use of T-cell engagers (TCEs) to treat solid tumors is challenging, and several have been limited by narrow therapeutic windows due to substantial on-target, off-tumor toxicities due to the expression of low levels of target antigens on healthy tissues. Here, we describe TNB-928B, a fully human TCE that has a bivalent binding arm for folate receptor alpha (FRα) to selectively target FRα overexpressing tumor cells while avoiding the lysis of cells with low levels of FRα expression. The bivalent design of the FRα binding arm confers tumor selectivity due to low-affinity but high-avidity binding to high FRα antigen density cells. TNB-928B induces preferential effector T-cell activation, proliferation, and selective cytotoxic activity on high FRα expressing cells while sparing low FRα expressing cells. In addition, TNB-928B induces minimal cytokine release compared to a positive control TCE containing OKT3. Moreover, TNB-928B exhibits substantial ex vivo tumor cell lysis using endogenous T-cells and robust tumor clearance in vivo, promoting T-cell infiltration and antitumor activity in mouse models of ovarian cancer. TNB-928B exhibits pharmacokinetics similar to conventional antibodies, which are projected to enable favorable administration in humans. TNB-928B is a novel TCE with enhanced safety and specificity for the treatment of ovarian cancer.


Asunto(s)
Anticuerpos Biespecíficos , Neoplasias Ováricas , Animales , Anticuerpos Biespecíficos/uso terapéutico , Carcinoma Epitelial de Ovario , Femenino , Receptor 1 de Folato/metabolismo , Receptor 1 de Folato/uso terapéutico , Humanos , Ratones , Neoplasias Ováricas/tratamiento farmacológico , Neoplasias Ováricas/patología , Linfocitos T
2.
Sci Rep ; 11(1): 10592, 2021 05 19.
Artículo en Inglés | MEDLINE | ID: mdl-34011961

RESUMEN

The use of recombinant interleukin-2 (IL-2) as a therapeutic protein has been limited by significant toxicities despite its demonstrated ability to induce durable tumor-regression in cancer patients. The adverse events and limited efficacy of IL-2 treatment are due to the preferential binding of IL-2 to cells that express the high-affinity, trimeric receptor, IL-2Rαßγ such as endothelial cells and T-regulatory cells, respectively. Here, we describe a novel bispecific heavy-chain only antibody which binds to and activates signaling through the heterodimeric IL-2Rßγ receptor complex that is expressed on resting T-cells and NK cells. By avoiding binding to IL-2Rα, this molecule circumvents the preferential T-reg activation of native IL-2, while maintaining the robust stimulatory effects on T-cells and NK-cells in vitro. In vivo studies in both mice and cynomolgus monkeys confirm the molecule's in vivo biological activity, extended pharmacodynamics due to the Fc portion of the molecule, and enhanced safety profile. Together, these results demonstrate that the bispecific antibody is a safe and effective IL-2R agonist that harnesses the benefits of the IL-2 signaling pathway as a potential anti-cancer therapy.


Asunto(s)
Anticuerpos Biespecíficos/farmacología , Antineoplásicos Inmunológicos/farmacología , Subunidad gamma Común de Receptores de Interleucina/agonistas , Subunidad beta del Receptor de Interleucina-2/agonistas , Linfocitos/efectos de los fármacos , Animales , Células CHO , Cricetulus , Evaluación Preclínica de Medicamentos , Células HEK293 , Humanos , Subunidad gamma Común de Receptores de Interleucina/inmunología , Subunidad beta del Receptor de Interleucina-2/inmunología , Macaca fascicularis , Masculino , Ratones Endogámicos BALB C
3.
J Biol Chem ; 293(40): 15471-15482, 2018 10 05.
Artículo en Inglés | MEDLINE | ID: mdl-30126841

RESUMEN

Recruitment of poliovirus (PV) RNA to the human ribosome requires the coordinated interaction of the viral internal ribosome entry site (IRES) and several host cellular initiation factors and IRES trans-acting factors (ITAFs). Attenuated PV Sabin strains contain point mutations in the PV IRES domain V (dV) that inhibit viral translation. Remarkably, attenuation is most apparent in cells of the central nervous system, but the molecular basis to explain this is poorly understood. The dV contains binding sites for eukaryotic initiation factor 4G (eIF4G) and polypyrimidine tract-binding protein (PTB). Impaired binding of these proteins to the mutant IRESs has been observed, but these effects have not been quantitated. We used a fluorescence anisotropy assay to reveal that the Sabin mutants reduce the equilibrium dissociation constants of eIF4G and PTB to the PV IRES by up to 6-fold. Using the most inhibitory Sabin 3 mutant, we used a real-time fluorescence helicase assay to show that the apparent affinity of an active eIF4G/4A/4B helicase complex for the IRES is reduced by 2.5-fold. The Sabin 3 mutant did not alter the maximum rate of eIF4A-dependent helicase activity, suggesting that this mutant primarily reduces the affinity, rather than activity, of the unwinding complex. To confirm this affinity model of attenuation, we show that eIF4G overexpression in HeLa cells overcomes the attenuation of a Sabin 3 mutant PV-luciferase replicon. Our study provides a quantitative framework for understanding the mechanism of PV Sabin attenuation and provides an explanation for the previously observed cell type-specific translational attenuation.


Asunto(s)
Factor 4G Eucariótico de Iniciación/genética , Mutación , Vacuna Antipolio Oral/genética , Poliovirus/genética , Proteína de Unión al Tracto de Polipirimidina/genética , Biosíntesis de Proteínas , Animales , Baculoviridae/genética , Baculoviridae/inmunología , Secuencia de Bases , Clonación Molecular , Escherichia coli/genética , Escherichia coli/inmunología , Factor 4A Eucariótico de Iniciación/genética , Factor 4A Eucariótico de Iniciación/inmunología , Factor 4G Eucariótico de Iniciación/inmunología , Expresión Génica , Genes Reporteros , Vectores Genéticos/química , Vectores Genéticos/metabolismo , Células HeLa , Humanos , Sitios Internos de Entrada al Ribosoma , Luciferasas/genética , Luciferasas/metabolismo , Conformación de Ácido Nucleico , Poliovirus/inmunología , Vacuna Antipolio Oral/biosíntesis , Vacuna Antipolio Oral/inmunología , Proteína de Unión al Tracto de Polipirimidina/inmunología , Proteínas Recombinantes/genética , Proteínas Recombinantes/inmunología , Alineación de Secuencia , Células Sf9 , Spodoptera , Vacunas Atenuadas
4.
Proc Natl Acad Sci U S A ; 114(36): 9611-9616, 2017 09 05.
Artículo en Inglés | MEDLINE | ID: mdl-28827335

RESUMEN

Picornaviruses use internal ribosome entry sites (IRESs) to translate their genomes into protein. A typical feature of these IRESs is their ability to bind directly to the eukaryotic initiation factor (eIF) 4G component of the eIF4F cap-binding complex. Remarkably, the hepatitis A virus (HAV) IRES requires eIF4E for its translation, but no mechanism has been proposed to explain this. Here we demonstrate that eIF4E regulates HAV IRES-mediated translation by two distinct mechanisms. First, eIF4E binding to eIF4G generates a high-affinity binding conformation of the eIF4F complex for the IRES. Second, eIF4E binding to eIF4G strongly stimulates the rate of duplex unwinding by eIF4A on the IRES. Our data also reveal that eIF4E promotes eIF4F binding and increases the rate of restructuring of the poliovirus (PV) IRES. This provides a mechanism to explain why PV IRES-mediated translation is stimulated by eIF4E availability in nuclease-treated cell-free extracts. Using a PV replicon and purified virion RNA, we also show that eIF4E promotes the rate of eIF4G cleavage by the 2A protease. Finally, we show that cleavage of eIF4G by the poliovirus 2A protease generates a high-affinity IRES binding truncation of eIF4G that stimulates eIF4A duplex unwinding independently of eIF4E. Therefore, our data reveal how picornavirus IRESs use eIF4E-dependent and -independent mechanisms to promote their translation.


Asunto(s)
Factor 4E Eucariótico de Iniciación/metabolismo , Picornaviridae/genética , Animales , Sistema Libre de Células , Virus de la Encefalomiocarditis/genética , Virus de la Encefalomiocarditis/metabolismo , Factor 4A Eucariótico de Iniciación/metabolismo , Factor 4F Eucariótico de Iniciación/metabolismo , Factor 4G Eucariótico de Iniciación/metabolismo , Genoma Viral , Virus de la Hepatitis A/genética , Virus de la Hepatitis A/metabolismo , Humanos , Técnicas In Vitro , Sitios Internos de Entrada al Ribosoma , Modelos Biológicos , Picornaviridae/metabolismo , Poliovirus/genética , Poliovirus/metabolismo , Biosíntesis de Proteínas , Conejos , Replicón
5.
Structure ; 22(7): 931-2, 2014 Jul 08.
Artículo en Inglés | MEDLINE | ID: mdl-25007220

RESUMEN

In this issue of Structure, Sun and colleagues describe the link between the dynamic conformational cycle and RNA unwinding activities of the DEAD box helicase, eIF4AI.


Asunto(s)
Factor 4A Eucariótico de Iniciación/química , Conformación de Ácido Nucleico , Conformación Proteica , ARN/química , Animales , Humanos
6.
Nat Protoc ; 9(7): 1645-61, 2014 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-24945382

RESUMEN

Many physiological functions of helicases are dependent on their ability to unwind nucleic acid duplexes in an ATP-dependent fashion. Determining the kinetic frameworks of these processes is crucial to understanding how these proteins function. We recently developed a fluorescence assay to monitor RNA duplex unwinding by DEAD-box helicases in real time. In this assay, two fluorescently modified short reporter oligonucleotides are annealed to an unmodified RNA loading strand of any length so that the fluorescent moieties of the two reporters find themselves in close proximity to each other and fluorescence is quenched. One reporter is modified with cyanine 3 (Cy3), whereas the other is modified with a spectrally paired black-hole quencher (BHQ). As the helicase unwinds the loading strand, the enzyme displaces the Cy3-modified reporter, which will bind to a capture or competitor DNA strand, permanently separating it from the BHQ-modified reporter. Complete separation of the Cy3-modified reporter strand is thus detected as an increase in total fluorescence. This assay is compatible with reagentless biosensors to monitor ATPase activity so that the coupling between ATP hydrolysis and duplex unwinding can be determined. With the protocol described, obtaining data and analyzing results of unwinding and ATPase assays takes ∼4 h.


Asunto(s)
Adenosina Trifosfatasas/fisiología , Adenosina Trifosfato/metabolismo , Microscopía Fluorescente/métodos , ARN/química , Adenosina Trifosfatasas/metabolismo , Conformación de Ácido Nucleico , Especificidad por Sustrato
7.
J Mol Biol ; 412(4): 674-87, 2011 Sep 30.
Artículo en Inglés | MEDLINE | ID: mdl-21840318

RESUMEN

Eukaryotic initiation factor (eIF) 4A is a DEAD-box helicase that stimulates translation initiation by unwinding mRNA secondary structure. The accessory proteins eIF4G, eIF4B, and eIF4H enhance the duplex unwinding activity of eIF4A, but the extent to which they modulate eIF4A activity is poorly understood. Here, we use real-time fluorescence assays to determine the kinetic parameters of duplex unwinding and ATP hydrolysis by these initiation factors. To ensure efficient duplex unwinding, eIF4B and eIF4G cooperatively activate the duplex unwinding activity of eIF4A. Our data reveal that eIF4H is much less efficient at stimulating eIF4A unwinding activity than eIF4B, implying that eIF4H is not able to completely substitute for eIF4B in duplex unwinding. By monitoring unwinding and ATPase assays under identical conditions, we demonstrate that eIF4B couples the ATP hydrolysis cycle of eIF4A with strand separation, thereby minimizing nonproductive unwinding events. Using duplex substrates with altered GC contents but similar predicted thermal stabilities, we further show that the rate of formation of productive unwinding complexes is strongly influenced by the local stability per base pair, in addition to the stability of the entire duplex. This finding explains how a change in the GC content of a hairpin is able to influence translation initiation while maintaining the overall predicted thermal stability.


Asunto(s)
Adenosina Trifosfatasas/metabolismo , ADN Helicasas/metabolismo , Factor 4A Eucariótico de Iniciación/metabolismo , Factor 4G Eucariótico de Iniciación/fisiología , Factores Eucarióticos de Iniciación/fisiología , Ácidos Nucleicos Heterodúplex/metabolismo , Adenosina Trifosfatasas/fisiología , Composición de Base/fisiología , Emparejamiento Base/fisiología , ARN Helicasas DEAD-box/química , ARN Helicasas DEAD-box/metabolismo , ADN Helicasas/fisiología , Activación Enzimática/fisiología , Factor 4A Eucariótico de Iniciación/química , Factor 4G Eucariótico de Iniciación/química , Factor 4G Eucariótico de Iniciación/metabolismo , Factores Eucarióticos de Iniciación/química , Factores Eucarióticos de Iniciación/metabolismo , Humanos , Hidrólisis , Modelos Biológicos , Modelos Moleculares , Ácidos Nucleicos Heterodúplex/química , Estructura Terciaria de Proteína
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