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1.
Bioorg Med Chem Lett ; 30(23): 127626, 2020 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-33096161

RESUMEN

Human tissue kallikreins (KLKs) constitute a family of 15 serine proteases that are distributed in various tissues and implicated in several pathological disorders. KLK7 is an unusual serine protease that presents both trypsin-like and chymotrypsin-like specificity and appears to be upregulated in pathologies that are related to skin desquamation processes, such as atopic dermatitis, psoriasis and Netherton syndrome. In recent years, various groups have worked to develop specific inhibitors for this enzyme, as KLK7 represents a potential target for new therapeutic procedures for diseases related to skin desquamation processes. In this work, we selected nine different single-chain variable fragment antibodies (scFv) from a human naïve phage display library and characterized their inhibitory activities against KLK7. The scFv with the lowest IC50 against KLK7 was affinity maturated, which resulted in the generation of four new scFv-specific antibodies for the target protease. These new antibodies were expressed in the scFv-Fc format in HEK293-6E cells, and the characterization of their inhibitory activities against KLK7 showed that three of them presented IC50 values lower than that of the original antibody. The cytotoxicity analysis of these recombinant antibodies demonstrated that they can be safely used in a cellular model. In conclusion, our research showed that in our case, a phage-display methodology in combination with enzymology assays can be a very suitable tool for the development of inhibitors for KLKs, suggesting a new strategy to identify therapeutic protease inhibitors for diseases related to uncontrolled kallikrein activity.


Asunto(s)
Calicreínas/antagonistas & inhibidores , Proteínas Recombinantes/inmunología , Inhibidores de Serina Proteinasa/inmunología , Anticuerpos de Cadena Única/inmunología , Animales , Chlorocebus aethiops , Células HEK293 , Humanos , Calicreínas/inmunología , Proteínas Recombinantes/toxicidad , Inhibidores de Serina Proteinasa/toxicidad , Anticuerpos de Cadena Única/toxicidad , Enfermedades de la Piel/terapia , Células Vero
2.
Adv Exp Med Biol ; 917: 55-76, 2016.
Artículo en Inglés | MEDLINE | ID: mdl-27236552

RESUMEN

Antibody phage display is an in vitro technology to generate recombinant antibodies. In particular for pathogens like viruses or toxins, antibody phage display is an alternative to hybridoma technology, since it circumvents the limitations of the immune system. Phage display allows the generation of human antibodies from naive antibody gene libraries when either immunized patients are not available or immunization is not ethically feasible. This technology also allows the construction of immune libraries to select in vivo affinity matured antibodies if immunized patients or animals are available.In this review, we describe the generation of human and human-like antibodies from naive antibody gene libraries and antibodies from immune antibody gene libraries. Furthermore, we give an overview about phage display derived recombinant antibodies against viruses and toxins for diagnostics and therapy.


Asunto(s)
Anticuerpos Monoclonales Humanizados/biosíntesis , Anticuerpos Monoclonales Humanizados/aislamiento & purificación , Técnicas de Visualización de Superficie Celular/métodos , Biblioteca de Péptidos , Proteínas Recombinantes/metabolismo , Toxinas Biológicas/inmunología , Virus/inmunología , Animales , Humanos , Inmunización , Neoplasias/diagnóstico , Neoplasias/terapia , Ingeniería de Proteínas/métodos , Proteínas Recombinantes/genética , Proteínas Recombinantes/inmunología
3.
Biotechnol Bioeng ; 112(12): 2505-15, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26058896

RESUMEN

Human cytomegalovirus (HCMV) causes significant disease worldwide. Multiple HCMV vaccines have been tested in man but only partial protection has been achieved. The HCMV gH/gL/UL128/UL130/UL131A complex (Pentamer) is the main target of neutralizing antibodies in HCMV seropositive individuals and raises high titers of neutralizing antibodies in small animals and non-human primates (NHP). Thus, Pentamer is a promising candidate for an effective HCMV vaccine. Development of a Pentamer-based subunit vaccine requires expression of high amounts of a functional and stable complex. We describe here the development of a mammalian expression system for large scale Pentamer production. Several approaches comprising three different CHO-originated cell lines and multiple vector as well as selection strategies were tested. Stable cell pools expressed the HCMV Pentamer at a titer of approximately 60 mg/L at laboratory scale. A FACS-based single cell sorting approach allowed selection of a highly expressing clone producing Pentamer at the level of approximately 400 mg/L in a laboratory scale fed-batch culture. Expression in a 50 L bioreactor led to the production of HCMV Pentamer at comparable titers indicating the feasibility of further scale-up for manufacturing at commercial scale. The CHO-produced HCMV Pentamer bound to a panel of human neutralizing antibodies and raised potently neutralizing immune response in mice. Thus, we have generated an expression system for the large scale production of functional HCMV Pentamer at high titers suitable for future subunit vaccine production.


Asunto(s)
Células CHO , Vacunas contra Citomegalovirus/inmunología , Expresión Génica , Proteínas Virales/inmunología , Animales , Anticuerpos Neutralizantes/sangre , Anticuerpos Antivirales/sangre , Cricetulus , Citomegalovirus/genética , Vacunas contra Citomegalovirus/administración & dosificación , Vacunas contra Citomegalovirus/genética , Vacunas contra Citomegalovirus/metabolismo , Ratones , Multimerización de Proteína , Vacunas de Subunidad/administración & dosificación , Vacunas de Subunidad/genética , Vacunas de Subunidad/inmunología , Vacunas de Subunidad/metabolismo , Vacunas Sintéticas/administración & dosificación , Vacunas Sintéticas/genética , Vacunas Sintéticas/inmunología , Vacunas Sintéticas/metabolismo , Proteínas Virales/genética , Proteínas Virales/metabolismo
4.
Methods Mol Biol ; 2702: 15-37, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37679613

RESUMEN

Antibody phage display is a widely used in vitro selection technology for the generation of human recombinant antibodies and has yielded thousands of useful antibodies for research, diagnostics, and therapy. In order to successfully generate antibodies using phage display, the basis is the construction of high-quality antibody gene libraries. Here, we describe detailed methods for the construction of such high-quality immune and naive scFv gene libraries of human origin. These protocols were used to develop human naive (e.g., HAL9/10) and immune libraries, which resulted in thousands of specific antibodies for all kinds of applications.


Asunto(s)
Anticuerpos , Bacteriófagos , Humanos , Técnicas de Visualización de Superficie Celular , Biblioteca de Genes , Tecnología
5.
Methods Mol Biol ; 2702: 563-585, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37679639

RESUMEN

Monoclonal antibodies (mAbs) are valuable biological molecules, serving for many applications. Therefore, it is advantageous to know the interaction pattern between antibodies and their antigens. Regions on the antigen which are recognized by the antibodies are called epitopes, and the respective molecular counterpart of the epitope on the mAbs is called paratope. These epitopes can have many different compositions and/or structures. Knowing the epitope is a valuable information for the development or improvement of biological products, e.g., diagnostic assays, therapeutic mAbs, and vaccines, as well as for the elucidation of immune responses. Most of the techniques for epitope mapping rely on the presentation of the target, or parts of it, in a way that it can interact with a certain mAb. Among the techniques used for epitope mapping, phage display is a versatile technology that allows the display of a library of oligopeptides or fragments from a single gene product on the phage surface, which then can interact with several antibodies to define epitopes. In this chapter, a protocol for the construction of a single-target oligopeptide phage library, as well as for the panning procedure for epitope mapping using phage display is given.


Asunto(s)
Bacteriófagos , Técnicas de Visualización de Superficie Celular , Epítopos , Mapeo Epitopo , Anticuerpos Monoclonales , Bacteriófagos/genética
6.
Front Cell Infect Microbiol ; 11: 697876, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34307196

RESUMEN

Antibodies are essential molecules for diagnosis and treatment of diseases caused by pathogens and their toxins. Antibodies were integrated in our medical repertoire against infectious diseases more than hundred years ago by using animal sera to treat tetanus and diphtheria. In these days, most developed therapeutic antibodies target cancer or autoimmune diseases. The COVID-19 pandemic was a reminder about the importance of antibodies for therapy against infectious diseases. While monoclonal antibodies could be generated by hybridoma technology since the 70ies of the former century, nowadays antibody phage display, among other display technologies, is robustly established to discover new human monoclonal antibodies. Phage display is an in vitro technology which confers the potential for generating antibodies from universal libraries against any conceivable molecule of sufficient size and omits the limitations of the immune systems. If convalescent patients or immunized/infected animals are available, it is possible to construct immune phage display libraries to select in vivo affinity-matured antibodies. A further advantage is the availability of the DNA sequence encoding the phage displayed antibody fragment, which is packaged in the phage particles. Therefore, the selected antibody fragments can be rapidly further engineered in any needed antibody format according to the requirements of the final application. In this review, we present an overview of phage display derived recombinant antibodies against bacterial, viral and eukaryotic pathogens, as well as microbial toxins, intended for diagnostic and therapeutic applications.


Asunto(s)
Bacteriófagos , COVID-19 , Enfermedades Transmisibles , Animales , Anticuerpos Monoclonales , Enfermedades Transmisibles/diagnóstico , Enfermedades Transmisibles/terapia , Humanos , Pandemias , SARS-CoV-2
7.
Nat Commun ; 12(1): 1577, 2021 03 11.
Artículo en Inglés | MEDLINE | ID: mdl-33707427

RESUMEN

COVID-19 is a severe acute respiratory disease caused by SARS-CoV-2, a new recently emerged sarbecovirus. This virus uses the human ACE2 enzyme as receptor for cell entry, recognizing it with the receptor binding domain (RBD) of the S1 subunit of the viral spike protein. We present the use of phage display to select anti-SARS-CoV-2 spike antibodies from the human naïve antibody gene libraries HAL9/10 and subsequent identification of 309 unique fully human antibodies against S1. 17 antibodies are binding to the RBD, showing inhibition of spike binding to cells expressing ACE2 as scFv-Fc and neutralize active SARS-CoV-2 virus infection of VeroE6 cells. The antibody STE73-2E9 is showing neutralization of active SARS-CoV-2 as IgG and is binding to the ACE2-RBD interface. Thus, universal libraries from healthy human donors offer the advantage that antibodies can be generated quickly and independent from the availability of material from recovering patients in a pandemic situation.


Asunto(s)
Enzima Convertidora de Angiotensina 2/inmunología , Anticuerpos Neutralizantes/genética , Anticuerpos Antivirales/genética , COVID-19/inmunología , SARS-CoV-2/inmunología , Glicoproteína de la Espiga del Coronavirus/inmunología , Enzima Convertidora de Angiotensina 2/química , Animales , Anticuerpos Neutralizantes/aislamiento & purificación , Anticuerpos Antivirales/aislamiento & purificación , Afinidad de Anticuerpos , COVID-19/epidemiología , Línea Celular , Chlorocebus aethiops , Biblioteca de Genes , Voluntarios Sanos , Interacciones Microbiota-Huesped/inmunología , Humanos , Inmunoglobulina G/genética , Inmunoglobulina G/aislamiento & purificación , Modelos Moleculares , Mutación , Pruebas de Neutralización , Pandemias , Biblioteca de Péptidos , Dominios y Motivos de Interacción de Proteínas , Proteínas Recombinantes/genética , Proteínas Recombinantes/inmunología , SARS-CoV-2/genética , Glicoproteína de la Espiga del Coronavirus/química , Células Vero
8.
Cell Rep ; 36(4): 109433, 2021 07 27.
Artículo en Inglés | MEDLINE | ID: mdl-34273271

RESUMEN

The novel betacoronavirus severe acute respiratory syndrome-coronavirus-2 (SARS-CoV-2) causes a form of severe pneumonia disease called coronavirus disease 2019 (COVID-19). To develop human neutralizing anti-SARS-CoV-2 antibodies, antibody gene libraries from convalescent COVID-19 patients were constructed and recombinant antibody fragments (scFv) against the receptor-binding domain (RBD) of the spike protein were selected by phage display. The antibody STE90-C11 shows a subnanometer IC50 in a plaque-based live SARS-CoV-2 neutralization assay. The in vivo efficacy of the antibody is demonstrated in the Syrian hamster and in the human angiotensin-converting enzyme 2 (hACE2) mice model. The crystal structure of STE90-C11 Fab in complex with SARS-CoV-2-RBD is solved at 2.0 Å resolution showing that the antibody binds at the same region as ACE2 to RBD. The binding and inhibition of STE90-C11 is not blocked by many known emerging RBD mutations. STE90-C11-derived human IgG1 with FcγR-silenced Fc (COR-101) is undergoing Phase Ib/II clinical trials for the treatment of moderate to severe COVID-19.


Asunto(s)
Anticuerpos Neutralizantes/inmunología , Anticuerpos Antivirales/inmunología , SARS-CoV-2/patogenicidad , Glicoproteína de la Espiga del Coronavirus/genética , COVID-19/virología , Humanos , Mutación/genética , Peptidil-Dipeptidasa A/metabolismo , Unión Proteica , Dominios Proteicos/genética , Glicoproteína de la Espiga del Coronavirus/inmunología
9.
Methods Mol Biol ; 2070: 143-155, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-31625094

RESUMEN

Antibody phage display is the most used in vitro technology to generate recombinant, mainly human, antibodies as tools for research, for diagnostic assays, and for therapeutics. Up to now (autumn 2018), eleven FDA/EMA-approved therapeutic antibodies were developed using phage display, including the world best-selling antibody adalimumab.A key to generate successfully human antibodies in vitro is the choice of the most appropriate antibody selection method, for our goal. In this book chapter, we describe the antibody selection process (panning) in solution and its advantages over panning on immobilized antigens. Detailed protocols on the panning procedure and the screening of monoclonal binders are given.


Asunto(s)
Antígenos/química , Biotina/química , Biblioteca de Péptidos , Anticuerpos de Cadena Única , Biotinilación , Humanos , Anticuerpos de Cadena Única/química , Anticuerpos de Cadena Única/genética
10.
Methods Mol Biol ; 2025: 203-211, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31267454

RESUMEN

Antibody phage display is a key technology to generate recombinant, mainly human, antibodies for diagnostic and therapy, but also as tools for basic research. After antibody selection by "panning," a crucial step is the screening of monoclonal binders to isolate those which show antigen specificity. For this screening procedure, a highly parallelized approach to produce soluble antibody fragments in microtiter plates is essential. In this chapter, we give the protocol for the parallelized microscale production of scFvs for the screening procedure or further assays.


Asunto(s)
Anticuerpos de Cadena Única/metabolismo , Animales , Anticuerpos Monoclonales/metabolismo , Especificidad de Anticuerpos/fisiología , Técnicas de Visualización de Superficie Celular , Humanos , Biblioteca de Péptidos
11.
Methods Mol Biol ; 1904: 353-375, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-30539480

RESUMEN

Antibodies are widely used in a large variety of research applications, for diagnostics and therapy of numerous diseases, primarily cancer and autoimmune diseases. Antibodies are binding specifically to target structures (antigens). The antigen-binding properties are not only dependent on the antibody sequence, but also on the discrete antigen region recognized by the antibody (epitope). Knowing the epitope is valuable information for the improvement of diagnostic assays or therapeutic antibodies, as well as to understand the immune response of a vaccine. While huge progress has been made in the pipelines for the generation and functional characterization of antibodies, the available technologies for epitope mapping are still lacking effectiveness in terms of time and effort. Also, no technique available offers the absolute guarantee of succeeding. Thus, research to develop and improve epitope mapping techniques is still an active field. Phage display from random peptide libraries or single-gene libraries are currently among the most exploited methods for epitope mapping. The first is based on the generation of mimotopes and it is fastened to the need of high-throughput sequencing and complex bioinformatic analysis. The second provides original epitope sequences without requiring complex analysis or expensive techniques, but depends on further investigation to define the functional amino acids within the epitope. In this book chapter, we describe how to perform epitope mapping by antigen fragment phage display from single-gene antigen libraries and how to construct these types of libraries. Thus, we also provide figures and analysis to demonstrate the actual potential of this technique and to prove the necessity of certain procedural steps.


Asunto(s)
Técnicas de Visualización de Superficie Celular , Mapeo Epitopo/métodos , Epítopos , Biblioteca de Péptidos , Anticuerpos Monoclonales/inmunología , Antígenos/inmunología , Epítopos/genética , Epítopos/inmunología , Humanos , Unión Proteica
12.
Methods Mol Biol ; 1701: 497-518, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29116524

RESUMEN

Among the molecules of the immune system, antibodies, particularly monoclonal antibodies (mAbs), have been shown to be interesting for many biological applications. Due to their ability to recognize only a unique part of their target, mAbs are usually very specific. These targets can have many different compositions, but the most common ones are proteins or peptides that are usually from outside the host, although self-proteins can also be targeted in autoimmune diseases, or in some types of cancer. The parts of a mAb that interact with its target compose the paratope, while the recognized parts of the target compose the epitope. Knowing the epitope is valuable for the improvement of a biological product, e.g., a diagnostic assay, a therapeutic mAb, or a vaccine, as well as for the elucidation of immune responses. The current techniques for epitope mapping rely on the presentation of the target, or parts of it, in a way that it can interact with a certain mAb. Even though there are several techniques available, each has its pros and cons. Thus, the choice for one of them is usually dependent on the preference and availability of the researcher, opening possibility for improvement, or development of alternative techniques. Phage display, for example, is a versatile technology, which allows the presentation of many different oligopeptides that can be tested against different antibodies, fitting the need for an epitope mapping approach. In this chapter, a protocol for the construction of a single-target oligopeptide phage library, as well as for the panning procedure for epitope mapping using phage display is given.


Asunto(s)
Anticuerpos Monoclonales/química , Anticuerpos Monoclonales/genética , Mapeo Epitopo/métodos , Epítopos/química , Epítopos/genética , Biblioteca de Péptidos , Animales , Humanos
13.
Front Microbiol ; 9: 2314, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30416488

RESUMEN

Clostridioides difficile toxins TcdA and TcdB are large clostridial glucosyltransferases which are the main pathogenicity factors in C. difficile-associated diseases. Four highly conserved cysteines are present in all large clostridial glucosyltransferases. In this study we focused on the conserved cysteine 2232 within the combined repetitive oligopeptide domain of TcdB from reference strain VPI10463 (clade I). Cysteine 2232 is not present in TcdB from hypervirulent strain R20291 (clade II), where a tyrosine is found instead. Replacement of cysteine 2232 by tyrosine in TcdBV PI10463 reduced binding to the soluble fragments of the two known TcdB receptors, frizzled-2 (FZD2) and poliovirus receptor-like protein-3/nectin-3 (PVRL3). In line with this, TcdBR20291 showed weak binding to PVRL3 in pull-down assays which was increased when tyrosine 2232 was exchanged for cysteine. Surprisingly, we did not observe binding of TcdBR20291 to FZD2, indicating that this receptor is less important for this toxinotype. Competition assay with the receptor binding fragments (aa 1101-1836) of TcdBV PI10463 and TcdBR20291, as well as antibodies newly developed by antibody phage display, revealed different characteristics of the yet poorly described delivery domain of TcdB harboring the second receptor binding region. In summary, we found that conserved Cys-2232 in TcdB indirectly contributes to toxin-receptor interaction.

14.
Front Microbiol ; 9: 2908, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30574127

RESUMEN

Clostridioides difficile is the causative bacterium in 15-20% of all antibiotic associated diarrheas. The symptoms associated with C. difficile infection (CDI) are primarily induced by the two large exotoxins TcdA and TcdB. Both toxins enter target cells by receptor-mediated endocytosis. Although different toxin receptors have been identified, it is no valid therapeutic option to prevent receptor endocytosis. Therapeutics, such as neutralizing antibodies, directly targeting both toxins are in development. Interestingly, only the anti-TcdB antibody bezlotoxumab but not the anti-TcdA antibody actoxumab prevented recurrence of CDI in clinical trials. In this work, 31 human antibody fragments against TcdB were selected by antibody phage display from the human naive antibody gene libraries HAL9/10. These antibody fragments were further characterized by in vitro neutralization assays. The epitopes of the neutralizing and non-neutralizing antibody fragments were analyzed by domain mapping, TcdB fragment phage display, and peptide arrays, to identify neutralizing and non-neutralizing epitopes. A new neutralizing epitope within the glucosyltransferase domain of TcdB was identified, providing new insights into the relevance of different toxin regions in respect of neutralization and toxicity.

15.
Toxins (Basel) ; 10(6)2018 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-29865182

RESUMEN

Binary toxins are produced by several pathogenic bacteria. Examples are the C2 toxin from Clostridium botulinum, the iota toxin from Clostridium perfringens, and the CDT from Clostridium difficile. All these binary toxins have ADP-ribosyltransferases (ADPRT) as their enzymatically active component that modify monomeric actin in their target cells. The binary C2 toxin was intensively described as a tool for intracellular delivery of allogenic ADPRTs. Here, we firstly describe the binary toxin CDT from C. difficile as an effective tool for heterologous intracellular delivery. Even 60 kDa glucosyltransferase domains of large clostridial glucosyltransferases can be delivered into cells. The glucosyltransferase domains of five tested large clostridial glucosyltransferases were successfully introduced into cells as chimeric fusions to the CDTa adapter domain (CDTaN). Cell uptake was demonstrated by the analysis of cell morphology, cytoskeleton staining, and intracellular substrate glucosylation. The fusion toxins were functional only when the adapter domain of CDTa was N-terminally located, according to its native orientation. Thus, like other binary toxins, the CDTaN/b system can be used for standardized delivery systems not only for bacterial ADPRTs but also for a variety of bacterial glucosyltransferase domains.


Asunto(s)
ADP Ribosa Transferasas/administración & dosificación , Proteínas Bacterianas/administración & dosificación , Glucosiltransferasas/química , ADP Ribosa Transferasas/genética , Proteínas Bacterianas/genética , Transporte Biológico , Línea Celular Tumoral , Citosol/metabolismo , Sistemas de Liberación de Medicamentos , Humanos , Dominios Proteicos , Proteínas Recombinantes de Fusión/administración & dosificación
16.
Proteomics Clin Appl ; 10(9-10): 922-948, 2016 10.
Artículo en Inglés | MEDLINE | ID: mdl-27198131

RESUMEN

Antibodies are valuable molecules for the diagnostic and treatment of diseases caused by pathogens and toxins. Traditionally, these antibodies are generated by hybridoma technology. An alternative to hybridoma technology is the use of antibody phage display to generate recombinant antibodies. This in vitro technology circumvents the limitations of the immune system and allows-in theory-the generation of antibodies against all conceivable molecules. Phage display technology enables obtaining human antibodies from naïve antibody gene libraries when either patients are not available or immunization is not ethically feasible. On the other hand, if patients or immunized/infected animals are available, it is common to construct immune phage display libraries to select in vivo affinity-matured antibodies. Because the phage packaged DNA sequence encoding the antibodies is directly available, the antibodies can be smoothly engineered according to the requirements of the final application. In this review, an overview of phage display derived recombinant antibodies against bacterial, viral, and eukaryotic pathogens as well as toxins for diagnostics and therapy is given.


Asunto(s)
Anticuerpos/inmunología , Ingeniería Genética/métodos , Biblioteca de Péptidos , Proteínas Recombinantes/inmunología , Toxinas Biológicas/inmunología , Animales , Anticuerpos/genética , Humanos , Proteínas Recombinantes/genética
17.
Toxins (Basel) ; 8(4): 100, 2016 Apr 01.
Artículo en Inglés | MEDLINE | ID: mdl-27043630

RESUMEN

Clostridium botulinum exoenzyme C3 is the prototype of C3-like ADP-ribosyltransferases that modify the GTPases RhoA, B, and C. C3 catalyzes the transfer of an ADP-ribose moiety from the co-substrate nicotinamide adenine dinucleotide (NAD) to asparagine-41 of Rho-GTPases. Although C3 does not possess cell-binding/-translocation domains, C3 is able to efficiently enter intact cells, including neuronal and macrophage-like cells. Conventionally, the detection of C3 uptake into cells is carried out via the gel-shift assay of modified RhoA. Since this gel-shift assay does not always provide clear, evaluable results an additional method to confirm the ADP-ribosylation of RhoA is necessary. Therefore, a new monoclonal antibody has been generated that specifically detects ADP-ribosylated RhoA/B, but not RhoC, in Western blot and immunohistochemical assay. The scFv antibody fragment was selected by phage display using the human naive antibody gene libraries HAL9/10. Subsequently, the antibody was produced as scFv-Fc and was found to be as sensitive as a commercially available RhoA antibody providing reproducible and specific results. We demonstrate that this specific antibody can be successfully applied for the analysis of ADP-ribosylated RhoA/B in C3-treated Chinese hamster ovary (CHO) and HT22 cells. Moreover, ADP-ribosylation of RhoA was detected within 10 min in C3-treated CHO wild-type cells, indicative of C3 cell entry.


Asunto(s)
Adenosina Difosfato Ribosa/metabolismo , Anticuerpos Monoclonales/inmunología , Proteína de Unión al GTP rhoA/aislamiento & purificación , Proteína de Unión al GTP rhoB/aislamiento & purificación , ADP Ribosa Transferasas/metabolismo , Animales , Toxinas Botulínicas/metabolismo , Células CHO , Línea Celular , Cricetinae , Cricetulus , Ratones , Proteínas Recombinantes/genética , Proteínas Recombinantes/inmunología , Proteínas Recombinantes/aislamiento & purificación , Proteínas Recombinantes/metabolismo , Proteína de Unión al GTP rhoA/genética , Proteína de Unión al GTP rhoA/inmunología , Proteína de Unión al GTP rhoA/metabolismo , Proteína de Unión al GTP rhoB/genética , Proteína de Unión al GTP rhoB/inmunología , Proteína de Unión al GTP rhoB/metabolismo
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