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1.
Oncotarget ; 7(50): 83392-83408, 2016 Dec 13.
Artículo en Inglés | MEDLINE | ID: mdl-27825135

RESUMEN

Triplebodies are antibody-derived recombinant proteins carrying 3 antigen-binding domains in a single polypeptide chain. Triplebody SPM-1 was designed for lysis of CD19-bearing malignant B-lymphoid cells through the engagement of CD16-expressing cytolytic effectors, including NK and γδ T cells.SPM-1 is an optimized version of triplebody ds(19-16-19) and includes humanization, disulfide stabilization and the removal of potentially immunogenic sequences. A three-step chromatographic procedure yielded 1.7 - 5.5 mg of purified, monomeric protein per liter of culture medium. In cytolysis assays with NK cell effectors, SPM-1 mediated potent lysis of cancer-derived B cell lines and primary cells from patients with various B-lymphoid malignancies, which surpassed the ADCC activity of the therapeutic antibody Rituximab. EC50-values ranged from 3 to 86 pM. Finally, in an impedance-based assay, SPM-1 mediated a particularly rapid lysis of CD19-bearing target cells by engaging and activating both primary and expanded human γδ T cells from healthy donors as effectors.These data establish SPM-1 as a useful tool for a kinetic analysis of the cytolytic reactions mediated by γδ T and NK cells and as an agent deserving further development towards clinical use for the treatment of B-lymphoid malignancies.


Asunto(s)
Antígenos CD19/inmunología , Antineoplásicos Inmunológicos/farmacología , Citotoxicidad Inmunológica/efectos de los fármacos , Linfocitos Intraepiteliales/efectos de los fármacos , Células Asesinas Naturales/efectos de los fármacos , Linfocitos Infiltrantes de Tumor/efectos de los fármacos , Linfoma de Células B/tratamiento farmacológico , Antineoplásicos Inmunológicos/inmunología , Línea Celular Tumoral , Proliferación Celular/efectos de los fármacos , Relación Dosis-Respuesta a Droga , Humanos , Linfocitos Intraepiteliales/inmunología , Células Asesinas Naturales/inmunología , Cinética , Activación de Linfocitos/efectos de los fármacos , Linfocitos Infiltrantes de Tumor/inmunología , Linfoma de Células B/inmunología , Linfoma de Células B/patología , Rituximab/farmacología , Células Tumorales Cultivadas
2.
Nat Struct Mol Biol ; 19(7): 693-700, 2012 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-22705791

RESUMEN

The Mre11-Rad50-Nbs1 (MRN) complex tethers, processes and signals DNA double-strand breaks, promoting genomic stability. To understand the functional architecture of MRN, we determined the crystal structures of the Schizosaccharomyces pombe Mre11 dimeric catalytic domain alone and in complex with a fragment of Nbs1. Two Nbs1 subunits stretch around the outside of the nuclease domains of Mre11, with one subunit additionally bridging and locking the Mre11 dimer via a highly conserved asymmetrical binding motif. Our results show that Mre11 forms a flexible dimer and suggest that Nbs1 not only is a checkpoint adaptor but also functionally influences Mre11-Rad50. Clinical mutations in Mre11 are located along the Nbs1-interaction sites and weaken the Mre11-Nbs1 interaction. However, they differentially affect DNA repair and telomere maintenance in Saccharomyces cerevisiae, potentially providing insight into their different human disease pathologies.


Asunto(s)
Proteínas Cromosómicas no Histona/metabolismo , Daño del ADN , Mutación , Proteínas de Schizosaccharomyces pombe/metabolismo , Transducción de Señal , Sitios de Unión , Proteínas Cromosómicas no Histona/química , Dimerización , Humanos , Modelos Moleculares , Conformación Proteica , Proteínas de Schizosaccharomyces pombe/química
3.
Nucleic Acids Res ; 40(2): 914-27, 2012 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-21937514

RESUMEN

DNA double-strand breaks (DSBs) threaten genome stability in all kingdoms of life and are linked to cancerogenic chromosome aberrations in humans. The Mre11:Rad50 (MR) complex is an evolutionarily conserved complex of two Rad50 ATPases and a dimer of the Mre11 nuclease that senses and processes DSBs and tethers DNA for repair. ATP binding and hydrolysis by Rad50 is functionally coupled to DNA-binding and tethering, but also regulates Mre11's nuclease in processing DNA ends. To understand how ATP controls the interaction between Mre11 and Rad50, we determined the crystal structure of Thermotoga maritima (Tm) MR trapped in an ATP/ADP state. ATP binding to Rad50 induces a large structural change from an open form with accessible Mre11 nuclease sites into a closed form. Remarkably, the NBD dimer binds in the Mre11 DNA-binding cleft blocking Mre11's dsDNA-binding sites. An accompanying large swivel of the Rad50 coiled coil domains appears to prepare the coiled coils for DNA tethering. DNA-binding studies show that within the complex, Rad50 likely forms a dsDNA-binding site in response to ATP, while the Mre11 nuclease module retains a ssDNA-binding site. Our results suggest a possible mechanism for ATP-dependent DNA tethering and DSB processing by MR.


Asunto(s)
Adenosina Trifosfatasas/química , Adenosina Trifosfato/química , Proteínas Bacterianas/química , Endodesoxirribonucleasas/química , Exodesoxirribonucleasas/química , Adenosina Difosfato/química , Adenosina Difosfato/metabolismo , Adenosina Trifosfatasas/metabolismo , Adenosina Trifosfato/metabolismo , Proteínas Bacterianas/metabolismo , ADN/metabolismo , Endodesoxirribonucleasas/metabolismo , Exodesoxirribonucleasas/metabolismo , Modelos Moleculares , Unión Proteica , Conformación Proteica , Thermotoga maritima
4.
Cell ; 145(1): 54-66, 2011 Apr 01.
Artículo en Inglés | MEDLINE | ID: mdl-21458667

RESUMEN

The MR (Mre11 nuclease and Rad50 ABC ATPase) complex is an evolutionarily conserved sensor for DNA double-strand breaks, highly genotoxic lesions linked to cancer development. MR can recognize and process DNA ends even if they are blocked and misfolded. To reveal its mechanism, we determined the crystal structure of the catalytic head of Thermotoga maritima MR and analyzed ATP-dependent conformational changes. MR adopts an open form with a central Mre11 nuclease dimer and two peripheral Rad50 molecules, a form suited for sensing obstructed breaks. The Mre11 C-terminal helix-loop-helix domain binds Rad50 and attaches flexibly to the nuclease domain, enabling large conformational changes. ATP binding to the two Rad50 subunits induces a rotation of the Mre11 helix-loop-helix and Rad50 coiled-coil domains, creating a clamp conformation with increased DNA-binding activity. The results suggest that MR is an ATP-controlled transient molecular clamp at DNA double-strand breaks.


Asunto(s)
Adenosina Trifosfato/metabolismo , Proteínas Bacterianas/química , Enzimas Reparadoras del ADN/química , Reparación del ADN , Proteínas de Unión al ADN/química , Thermotoga maritima/química , Proteínas Bacterianas/genética , Proteínas Bacterianas/metabolismo , Cristalografía por Rayos X , Roturas del ADN de Doble Cadena , Enzimas Reparadoras del ADN/genética , Enzimas Reparadoras del ADN/metabolismo , Proteínas de Unión al ADN/genética , Proteínas de Unión al ADN/metabolismo , Endodesoxirribonucleasas/química , Endodesoxirribonucleasas/metabolismo , Exodesoxirribonucleasas/química , Exodesoxirribonucleasas/metabolismo , Modelos Moleculares , Saccharomyces cerevisiae/química , Proteínas de Saccharomyces cerevisiae/química , Proteínas de Saccharomyces cerevisiae/metabolismo , Dispersión del Ángulo Pequeño , Thermotoga maritima/metabolismo , Difracción de Rayos X
5.
J Biol Chem ; 283(12): 7962-71, 2008 Mar 21.
Artículo en Inglés | MEDLINE | ID: mdl-18160405

RESUMEN

The ATP binding cassette enzyme ABCE1 (also known as RNase-L (ribonuclease L) inhibitor, Pixie, and HP68), one of the evolutionary most sequence-conserved enzymes, functions in translation initiation, ribosome biogenesis, and human immunodeficiency virus capsid assembly. However, its structural mechanism and biochemical role in these processes have not been revealed. We determined the crystal structure of Pyrococcus abyssi ABCE1 in complex with Mg(2+) and ADP to 2.8A resolution. ABCE1 consists of four structural domains. Two nucleotide binding domains are arranged in a head-to-tail orientation by a hinge domain, suggesting that these domains undergo the characteristic tweezers-like powerstroke of ABC enzymes. In contrast to all other known ABC enzymes, ABCE1 has a N-terminal iron-sulfur-cluster (FeS) domain. The FeS domain contains two [4Fe-4S] clusters and is structurally highly related to bacterial-type ferredoxins. However, one cluster is coordinated by an unusual CX(4)CX(3/4)C triad. Surprisingly, intimate interactions of the FeS domain with the adenine and ribose binding Y-loop on nucleotide binding domain 1 suggest a linkage between FeS domain function and ATP-induced conformational control of the ABC tandem cassette. The structure substantially expands the functional architecture of ABC enzymes and raises the possibility that ABCE1 is a chemomechanical engine linked to a redox process.


Asunto(s)
Transportadoras de Casetes de Unión a ATP/química , Proteínas Arqueales/química , Pyrococcus abyssi/química , Adenosina Difosfato/química , Cristalografía por Rayos X , Ferredoxinas/química , Humanos , Hierro/química , Magnesio/química , Oxidación-Reducción , Estructura Terciaria de Proteína/fisiología , Homología Estructural de Proteína , Azufre/química
6.
Curr Biol ; 14(19): 1778-82, 2004 Oct 05.
Artículo en Inglés | MEDLINE | ID: mdl-15458651

RESUMEN

Structural maintenance of chromosome (SMC) proteins play a central role in higher-order chromosome structure in all kingdoms of life. SMC proteins consist of a long coiled-coil domain that joins an ATP binding cassette (ABC) ATPase domain on one side and a dimerization domain on the other side. SMC proteins require ATP binding or hydrolysis to promote cohesion and condensation, which is suggested to proceed via formation of SMC rings or assemblies. To learn more about the role of ATP in the architecture of SMC proteins, we report crystal structures of nucleotide-free and ATP bound P. furiosus SMC ATPase domains. ATP dimerizes two SMC ATPase domains by binding to opposing Walker A and signature motifs, indicating that ATP binding can directly assemble SMC proteins. DNA stimulates ATP hydrolysis in the engaged SMC ABC domains, suggesting that ATP hydrolysis can be allosterically regulated. Structural and mutagenesis data identify an SMC protein conserved-arginine finger that is required for DNA stimulation of the ATPase activity and directly connects a putative DNA interaction site to ATP. Our results suggest that stimulation of the SMC ATPase activity may be a specific feature to regulate the ATP-driven assembly and disassembly of SMC proteins.


Asunto(s)
Adenosina Trifosfatasas/química , Adenosina Trifosfatasas/metabolismo , Adenosina Trifosfato/metabolismo , Proteínas Bacterianas/metabolismo , Proteínas de Ciclo Celular/metabolismo , ADN Helicasas/química , ADN Helicasas/metabolismo , ADN/metabolismo , Secuencia de Aminoácidos , Arginina/metabolismo , Sitios de Unión , Cromatografía en Gel , Cristalografía , Modelos Moleculares , Datos de Secuencia Molecular , Conformación Proteica , Pyrococcus furiosus , Alineación de Secuencia
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