Wenn Sie das Fenster schließen, wird Ihre Konfiguration nicht gespeichert, es sei denn, Sie haben Ihren Artikel in die Bestellung aufgenommen oder zu Ihren Favoriten hinzugefügt.
Klicken Sie auf OK, um das MILLIPLEX® MAP-Tool zu schließen oder auf Abbrechen, um zu Ihrer Auswahl zurückzukehren.
Wählen Sie konfigurierbare Panels & Premixed-Kits - ODER - Kits für die zelluläre Signaltransduktion & MAPmates™
Konfigurieren Sie Ihre MILLIPLEX® MAP-Kits und lassen sich den Preis anzeigen.
Konfigurierbare Panels & Premixed-Kits
Unser breites Angebot enthält Multiplex-Panels, für die Sie die Analyten auswählen können, die am besten für Ihre Anwendung geeignet sind. Unter einem separaten Register können Sie das Premixed-Cytokin-Format oder ein Singleplex-Kit wählen.
Kits für die zelluläre Signaltransduktion & MAPmates™
Wählen Sie gebrauchsfertige Kits zur Erforschung gesamter Signalwege oder Prozesse. Oder konfigurieren Sie Ihre eigenen Kits mit Singleplex MAPmates™.
Die folgenden MAPmates™ sollten nicht zusammen analysiert werden: -MAPmates™, die einen unterschiedlichen Assaypuffer erfordern. -Phosphospezifische und MAPmate™ Gesamtkombinationen wie Gesamt-GSK3β und Gesamt-GSK3β (Ser 9). -PanTyr und locusspezifische MAPmates™, z.B. Phospho-EGF-Rezeptor und Phospho-STAT1 (Tyr701). -Mehr als 1 Phospho-MAPmate™ für ein einziges Target (Akt, STAT3). -GAPDH und β-Tubulin können nicht mit Kits oder MAPmates™, die panTyr enthalten, analysiert werden.
.
Bestellnummer
Bestellinformationen
St./Pkg.
Liste
Dieser Artikel wurde zu Ihren Favoriten hinzugefügt.
Wählen Sie bitte Spezies, Panelart, Kit oder Probenart
Um Ihr MILLIPLEX® MAP-Kit zu konfigurieren, wählen Sie zunächst eine Spezies, eine Panelart und/oder ein Kit.
Custom Premix Selecting "Custom Premix" option means that all of the beads you have chosen will be premixed in manufacturing before the kit is sent to you.
Catalogue Number
Ordering Description
Qty/Pack
List
Dieser Artikel wurde zu Ihren Favoriten hinzugefügt.
Spezies
Panelart
Gewähltes Kit
Menge
Bestellnummer
Bestellinformationen
St./Pkg.
Listenpreis
96-Well Plate
Menge
Bestellnummer
Bestellinformationen
St./Pkg.
Listenpreis
Weitere Reagenzien hinzufügen (MAPmates erfordern die Verwendung eines Puffer- und Detektionskits)
Menge
Bestellnummer
Bestellinformationen
St./Pkg.
Listenpreis
48-602MAG
Buffer Detection Kit for Magnetic Beads
1 Kit
Platzsparende Option Kunden, die mehrere Kits kaufen, können ihre Multiplex-Assaykomponenten in Kunststoffbeuteln anstelle von Packungen erhalten, um eine kompaktere Lagerung zu ermöglichen.
Dieser Artikel wurde zu Ihren Favoriten hinzugefügt.
Das Produkt wurde in Ihre Bestellung aufgenommen
Sie können nun ein weiteres Kit konfigurieren, ein Premixed-Kit wählen, zur Kasse gehen oder das Bestell-Tool schließen.
MABF2670-100UG
Sigma-AldrichAnti-fHbp Antibody, clone JAR 4
Anti-fHbp, clone JAR 4, Cat. No. MABF2670, is a mouse monoclonal antibody that detects Meningococcal Factor H-binding protein (fHbp) and is tested for use in and Activity Assay, ELISA, Flow Cytometry, and Western Blotting.
More>>Anti-fHbp, clone JAR 4, Cat. No. MABF2670, is a mouse monoclonal antibody that detects Meningococcal Factor H-binding protein (fHbp) and is tested for use in and Activity Assay, ELISA, Flow Cytometry, and Western Blotting. Less<<
Empfohlene Produkte
Übersicht
Replacement Information
Description
Catalogue Number
MABF2670-100UG
Description
Anti-fHbp Antibody, clone JAR 4
Alternate Names
Meningococcal factor H binding protein
Factor H-binding protein
Lipoprotein LP2086
Lipoprotein GNA1870
Background Information
Factor H-binding protein (UniProt: Q6QCC2; also known as Lipoprotein LP2086, Lipoprotein GNA1870, and FHbp) is encoded by the gna1870 (also known as fhbp) gene in Neisseria meningitidis. Neisseria meningitidis, an encapsulated Gram-negative bacterium, is an important cause of bacterial sepsis and meningitis. FHbp, a surface exposed lipoprotein, is present in all strains of Neisseria meningitidis but is usually sparsely expressed. It is reported to be the major receptor for human Factor H (FH), a down-regulatory protein of the alternate complement pathway. Recruitment of FH is the major contributory factor to the ability of this bacteria to avoid innate immune response via inhibition of complement-mediated lysis. High affinity between human FH and FHbp is reported to be responsible for sequestering FH in the plasma and down-regulation of the complement system, which in the absence of down-regulation can cause complement-mediated damage to the bacteria. FHbp exists in two major antigenic sub-families known as A and B that do exhibit minimal cross-protective activity. FHbp also has been divided into three variant groups based on its amino acid sequence. Variant group 1 belongs to subfamily B and accounts for about 60% of disease-causing serogroup B isolates. Subfamily A includes variant groups 2 and 3. Antibodies generated against variant 1 are reported to be bactericidal only against bacterial strains expressing FHbp in the variant 1 group but not against strains that express variants 2 and 3 and vice versa. Clone JAR 4 that has a discontinuous epitope does not display bactericidal activity when tested alone. However, it cross-reacts with fHbps in variant group 1 or 2 and is able to elicit human complement-mediated, cooperative bactericidal activity with other non-bactericidal monoclonal antibodies that are specific for fHbp in variant groups 1 and 2. (Ref.: Beernink, PT et al., (2009). Mol. Immunol. 46(8-9); 1647-1653; Welsch, JA., et al. (2004). J. Immunol. 172(9); 5606-5615; Vu, DM et al., (2012). Sci. Rep. 2: 341).
References
Product Information
Format
Purified
Presentation
Purified mouse monoclonal antibody IgG2a in PBS without azide
Anti-fHbp, clone JAR 4, Cat. No. MABF2670, is a mouse monoclonal antibody that detects Meningococcal Factor H-binding protein (fHbp) and is tested for use in and Activity Assay, ELISA, Flow Cytometry, and Western Blotting.
Key Applications
Activity Assay
ELISA
Flow Cytometry
Western Blotting
Application Notes
Western Blotting Analysis: A representative lot detected fHbp in Western Blotting applications (Welsch, J.A., et. al. (2004). J Immunol. 172(9):5606-15).
Flow Cytometry Analysis: A representative lot detected fHbp in Flow Cytometry applications (Welsch, J.A., et. al. (2004). J Immunol. 172(9):5606-15).
Flow Cytometry Analysis: A 1:500 dilution from a representative lot detected fHbp in Live bacteria comprising of different strains: Strain H44/76 (ID 1, variant group 1), strain 8047 (ID 77, variant group 2), and strain M1239 (ID 28), variant group 3) (Courtesy of Dan Granoff, M.D. and Serena Giuntini, Ph.D., UCSF Benioff Children s Hospital Oakland California USA).
ELISA Analysis: A representative lot detected fHbp in ELISA applications (Beernink, P.T., et. al. (2009). Mol Immunol. 46(8-9):1647-53; Vu, D.M., et. al. (2012). Sci Rep. 2:341).
Activity Assay: A representative lot of this antibody displayed bactericidal activity (Vu, D.M., et. al. (2012). Sci Rep. 2:341).
Note: Actual optimal working dilutions must be determined by end user as specimens, and experimental conditions may vary with the end user
Biological Information
Immunogen
His-tagged recombinant Factor H-binding protein (fHbp) from variant group 1 expressed in E. coli.
Epitope
Discontinuous from N-terminal
Clone
JAR 4
Concentration
1.0 mg/mL. Please refer to guidance on suggested starting dilutions and/or titers per application and sample type.
Host
Mouse
Specificity
JAR 4 is a mouse monoclonal antibody that detects Factor H-binding protein in Neisseria meningitidis.
Isotype testing: Identity Confirmation by Isotyping Test.
Isotyping Analysis: The identity of this monoclonal antibody is confirmed by isotyping test to be mouse IgG2a.
Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage Conditions
Stable for 1 year at -10°C to -25°C from date of receipt. Handling Recommendations: Upon receipt and prior to removing the cap, centrifuge the vial and gently mix the solution. Aliquot into microcentrifuge tubes and store at -20°C. Avoid repeated freeze/thaw cycles, which may damage IgG and affect product performance.
A broadly cross-reactive monoclonal antibody against an epitope on the n-terminus of meningococcal fHbp David M Vu 1 , Rolando Pajon, Donald C Reason, Dan M Granoff Sci Rep
2
341
2011
Meningococcal factor H binding protein (fHbp) is an important vaccine antigen for prevention of disease caused by capsular group B strains. The protein has been sub-classified into three variant groups. Most anti-fHbp antibodies are variant group-specific and recognize epitopes on the C-terminal domain. We report a murine IgG1 mAb, JAR 41, which broadly cross-reacted with fHbp sequence variants from all variant groups. The mAb bound to the surface of live meningococci with fHbp from each of the three variant groups. In combination with second non-bactericidal anti-fHbp mAbs, JAR 41 elicited complement-mediated bactericidal activity in vitro, and augmented passive protection against meningococcal bacteremia in human fH transgenic rats. The epitope was located on a conserved region of the N-terminal portion of the fHbp molecule opposite that of fH contact residues. The data underscore the importance of broadly cross-reactive, surface-exposed epitopes on the N-terminal domain in the design of protective fHbp vaccines.
A region of the N-terminal domain of meningococcal factor H-binding protein that elicits bactericidal antibody across antigenic variant groups Peter T Beernink 1 , Carla LoPasso, Antonella Angiolillo, Franco Felici, Dan Granoff Mol Immunol
46(8-9)
1647-53
2009
Meningococcal factor H-binding protein (fHbp) is a promising vaccine antigen. Previous studies described three fHbp antigenic variant groups and identified amino acid residues between 100 and 255 as important targets of variant-specific bactericidal antibodies. We investigated residues affecting expression of an epitope recognized by a murine IgG2a anti-fHbp mAb, designated JAR 4, which cross-reacted with fHbps in variant group 1 or 2 (95% of strains), and elicited human complement-mediated, cooperative bactericidal activity with other non-bactericidal anti-fHbp mAbs with epitopes involving residues between 121 and 216. From filamentous bacteriophage libraries containing random peptides that were recognized by JAR 4, we identified a consensus tripeptide, DHK that matched residues 25-27 in the N-terminal domain of fHbp. Since DHK was present in both JAR 4-reactive and non-reactive fHbps, the tripeptide was necessary but not sufficient for reactivity. Based on site-directed mutagenesis studies, the JAR 4 epitope could either be knocked out of a reactive variant 1 fHbp, or introduced into a non-reactive variant 3 protein. Collectively, the data indicated that the JAR 4 epitope was discontinuous and involved DHK residues beginning at position 25; YGN residues beginning at position 57; and a KDN tripeptide that was present in variant 3 proteins beginning at position 67 that negatively affected expression of the epitope. Thus, the region of fHbp encompassing residues 25-59 in the N-terminal domain is important for eliciting antibodies that can cooperate with other anti-fHbp antibodies for cross-reactive bactericidal activity against strains expressing fHbp from different antigenic variant groups.
Protective activity of monoclonal antibodies to genome-derived neisserial antigen 1870, a Neisseria meningitidis candidate vaccine Jo Anne Welsch 1 , Raffaella Rossi, Maurizio Comanducci, Dan M Granoff J Immunol
172(9)
5606-15
2004
Genome-derived neisserial Ag (GNA) 1870 is a meningococcal vaccine candidate that can be subdivided into three variants based on amino acid sequence variability. Variant group 1 accounts for approximately 60% of disease-producing group B isolates. The Ag went unrecognized until its discovery by genome mining because it is expressed in low copy number by most strains. To investigate the relationship between Ab binding to GNA1870 and complement-mediated protective functions, we prepared a panel of four murine IgG mAbs against rGNA1870 (variant 1) and evaluated their activity against nine genetically diverse encapsulated Neisseria meningitidis strains expressing subvariants of variant 1 GNA1870. Based on flow cytometry with live encapsulated bacteria, surface accessibility of the epitopes recognized by the mAbs appeared to be low in most strains. Yet mAb concentrations <1 to 5 micro g/ml were sufficient to elicit bactericidal activity with human complement and/or activate C3b deposition on the bacterial surface. Certain combinations of mAbs were highly bactericidal against strains that were resistant to bactericidal activity of the respective individual mAbs. The mAbs conferred passive protection against bacteremia in infant rats challenged by strains resistant to bacteriolysis, and the protective activity paralleled the ability of the mAb to activate C3b deposition. Thus, despite low GNA1870 surface exposure, anti-GNA1870 variant 1 Abs are bactericidal and/or elicit C3b deposition and confer protection against bacteremia caused by encapsulated N. meningitidis strains expressing GNA1870 subvariant 1 proteins. The data support GNA1870 as a promising vaccine candidate for prevention of meningococcal group B disease caused by GNA1870 variant 1 strains.