BDB561979

CD95 Hamster anti-Mouse, FITC, Clone: JO2, BD

Manufacturer: Fischer Scientific

Select a Size

Pack Size SKU Availability Price
Each of 1 BDB561979-Each-of-1 In Stock ₹ 25,409.50

BDB561979 - Each of 1

₹ 25,409.50

In Stock

Quantity

1

Base Price: ₹ 25,409.50

GST (18%): ₹ 4,573.71

Total Price: ₹ 29,983.21

Antigen

CD95

Classification

Monoclonal

Concentration

0.5mg/mL

Description

Apo-1; Apt1; Fas; FASLG receptor; lpr; TNFR6; Tnfrsf6; TNR6

Host Species

Hamster

Purification Method

Affinity Purified

Regulatory Status

RUO

Target Species

Mouse

Isotype

IgG2 λ2

Applications

Flow Cytometry

Clone

JO2

Conjugate

FITC

Formulation

Aqueous buffered solution containing ≤0.09% sodium azide.

Immunogen

WR19L mouse lymphoma cells transformed with recombinant mouse Fas

Quantity

0.1 mg

Primary or Secondary

Primary

Content And Storage

Store undiluted at 4°C and protected from prolonged exposure to light. Do not freeze.

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Description

  • Fas antigen, CD95, is a 45 kDa cell-surface protein which can mediate apoptosis
  • It belongs to the TNF (tumor necrosis factor)/NGF receptor family
  • Expression of Fas has been described in the thymus, liver, heart, lung and ovary
  • Fas plays an important role in the apoptotic process that takes place during development
  • Monoclonal antibodies recognizing Fas such asJo2 have cytolytic activity on cells expressing Fas
  • The cell death stimulated by Fas antibodies is characteristic of apoptosis and suggests that the lethal effects are a result of interaction of antibody with a functional Fas antigen as opposed to complement-mediated lysis
  • The Jo2 antibody recognizes mouse Fas
  • The Jo2 antibody shows cytolytic activity against cell lines expressing mouse Fas by inducing apoptosis
  • Intraperitoneal injections of Jo2 mAb have been shown to kill mice and induce apoptotic hepatocyte death
  • Jo2 mAb has been reported to immunoprecipitate mouse Fas as a 45 kDa band from W4 cells
  • W4 cells are WR19L mouse lymphoma cells transformed with mouse Fas
  • The difference between the observed MW of Fas and that deduced from its amino acid sequence (Mr 34,971) may be due to glycosylation.