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1.
MAbs ; 13(1): 1870058, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-33397191

RESUMO

Bispecific antibodies, engineered to recognize two targets simultaneously, demonstrate exceptional clinical potential for the therapeutic intervention of complex diseases. However, these molecules are often composed of multiple polypeptide chains of differing sequences. To meet industrial scale productivity, enforcing the correct quaternary assembly of these chains is critical. Here, we describe Chain Selectivity Assessment (CSA), a high-throughput method to rationally select parental monoclonal antibodies (mAbs) to make bispecific antibodies requiring correct heavy/light chain pairing. By deploying CSA, we have successfully identified mAbs that exhibit a native preference toward cognate chain pairing that enables the production of hetero-IgGs without additional engineering. Furthermore, CSA also identified rare light chains (LCs) that permit positive binding of the non-cognate arm in the common LC hetero-IgGs, also without engineering. This rational selection of parental mAbs with favorable developability characteristics is critical to the successful development of bispecific molecules with optimal manufacturability properties.


Assuntos
Anticorpos Biespecíficos/imunologia , Anticorpos Monoclonais/imunologia , Imunoglobulina G/imunologia , Cadeias Pesadas de Imunoglobulinas/imunologia , Cadeias Leves de Imunoglobulina/imunologia , Afinidade de Anticorpos/imunologia , Cromatografia em Gel/métodos , Cromatografia por Troca Iônica/métodos , Cromatografia Líquida/métodos , Eletroforese Capilar/métodos , Eletroforese em Gel de Poliacrilamida/métodos , Células HEK293 , Humanos , Espectrometria de Massas/métodos , Engenharia de Proteínas/métodos
2.
J Orthop Res ; 36(4): 1238-1247, 2018 04.
Artigo em Inglês | MEDLINE | ID: mdl-28971529

RESUMO

Designing drugs to treat diseases associated with articular joints, particularly those targeting chondrocytes, is challenging due to unique local environmental constraints including the avascular nature of cartilage, the absence of a closed joint compartment, and a highly cross-linked extracellular matrix. In an effort to address these challenges, we developed a novel strategy to prolong residence time of intra-articularly administered protein therapeutics. Avimer domains are naturally found in membrane polypeptides and mediate diverse protein-protein interactions. Screening of a phage Avimer domain library led to identification of several low affinity type II collagen-binding Avimers. Following several rounds of mutagenesis and reselection, these initial hits were transformed to high affinity, selective type II collagen-binding Avimers. One such Avimer (M26) persisted in rat knees for at least 1 month following intra-articular administration. Fusion of this Avimer to a candidate therapeutic payload, IL-1Ra, yielded a protein construct which simultaneously bound to type II collagen and to IL-1 receptor. In vitro, IL-1Ra_M26 bound selectively to cartilage explants and remained associated even after extensive washing. Binding appeared to occur preferentially to pericellular regions surrounding chondrocytes. An acute intra-articular IL-1-induced IL-6 challenge rat model was employed to assess in vivo pharmacodynamics. Whereas both IL-1Ra_M26 and native IL-1Ra inhibited IL-6 output when co-administered with the IL-1 challenge, only IL-1Ra_M26 inhibited when administered 1 week prior to IL-1 challenge. Collagen-binding Avimers thus represent a promising strategy for enhancing cartilage residence time of protein therapeutics. © 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1238-1247, 2018.


Assuntos
Sistemas de Liberação de Medicamentos/métodos , Artropatias/tratamento farmacológico , Proteínas/administração & dosagem , Animais , Colágeno Tipo II/metabolismo , Feminino , Humanos , Injeções Intra-Articulares , Masculino , Domínios Proteicos , Engenharia de Proteínas , Ratos Endogâmicos Lew , Ratos Sprague-Dawley
3.
Science ; 305(5681): 222-7, 2004 Jul 09.
Artigo em Inglês | MEDLINE | ID: mdl-15178751

RESUMO

Condensins are conserved proteins containing SMC (structural maintenance of chromosomes) moieties that organize and compact chromosomes in an unknown mechanism essential for faithful chromosome partitioning. We show that MukBEF, the condensin in Escherichia coli, cooperatively compacts a single DNA molecule into a filament with an ordered, repetitive structure in an adenosine triphosphate (ATP) binding-dependent manner. When stretched to a tension of approximately 17 piconewtons, the filament extended in a series of repetitive transitions in a broad distribution centered on 45 nanometers. A filament so extended and held at a lower force recondensed in steps of 35 nanometers or its multiples; this cycle was repeatable even in the absence of ATP and free MukBEF. Remarkably, the pattern of transitions displayed by a given filament during the initial extension was identical in every subsequent extension. Hence, after being deformed micrometers in length, each filament returned to its original compact structure without the addition of energy. Incubation with topoisomerase I increased the rate of recondensation and allowed the structure to extend and reform almost reversibly, indicating that supercoiled DNA is trapped in the condensed structure. We suggest a new model for how MukBEF organizes the bacterial chromosome in vivo.


Assuntos
Proteínas Cromossômicas não Histona/metabolismo , DNA Bacteriano/química , DNA Bacteriano/metabolismo , Proteínas de Escherichia coli/metabolismo , Conformação de Ácido Nucleico , Proteínas Repressoras/metabolismo , Trifosfato de Adenosina/metabolismo , Sítios de Ligação , Fenômenos Químicos , Físico-Química , Proteínas Cromossômicas não Histona/química , DNA Topoisomerases Tipo I/metabolismo , DNA Super-Helicoidal/química , DNA Super-Helicoidal/metabolismo , Dimerização , Escherichia coli/genética , Proteínas de Escherichia coli/química , Lasers , Microesferas , Modelos Químicos , Modelos Moleculares , Ligação Proteica , Conformação Proteica , Subunidades Proteicas , Proteínas Repressoras/química
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