Apoptosis-Inducing Factor 3 (AIFM3) Antibody

364€ (100 µg)
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935106861
info@markelab.com
name
Apoptosis-Inducing Factor 3 (AIFM3) Antibody
category
Primary Antibodies
provider
Abbexa
reference
abx230236
tested applications
ELISA, WB, IHC
Description
AIFM3 Antibody is a Rabbit Polyclonal against AIFM3.
Documents del producto
Instrucciones
Data sheet
Product specifications
Category | Primary Antibodies |
Immunogen Target | Apoptosis-Inducing Factor 3 (AIFM3) |
Host | Rabbit |
Reactivity | Human, Mouse, Rat |
Recommended Dilution | WB: 1/500 - 1/2000, IHC: 1/50 - 1/200. Optimal dilutions/concentrations should be determined by the end user. |
Clonality | Polyclonal |
Conjugation | Unconjugated |
Isotype | IgG |
Purity | ≥ 95% (SDS-PAGE) |
Purification | Purified by immunogen affinity chromatography. |
Size 1 | 100 µg |
Form | Liquid |
Tested Applications | ELISA, WB, IHC |
Buffer | PBS, pH 7.3, with 0.02% sodium azide and 50% glycerol. |
Availability | Shipped within 5-12 working days. |
Storage | Aliquot and store at -20°C. Avoid repeated freeze/thaw cycles. |
Dry Ice | No |
UniProt ID | Q96NN9 |
Alias | AIFM3, AIFL |
Background | Antibody anti-AIFM3 |
Status | RUO |
Note | Concentration: 2 mg/ml - Validity: 12 months. |
Descripción
Apoptosis Inducing Factor Mitochondria Associated 3 (AIFM3) is a mitochondrial protein belonging to the apoptosis-inducing factor family, which is involved in regulating programmed cell death and maintaining cellular homeostasis. Unlike AIFM1, which translocates to the nucleus during apoptosis to induce DNA fragmentation, AIFM3 is primarily localized within the mitochondria and functions to maintain mitochondrial integrity and energy metabolism. It plays a role in redox homeostasis and may act as a safeguard against oxidative stress by modulating mitochondrial reactive oxygen species (ROS) production. Dysregulation of AIFM3 has been implicated in cancer, where altered apoptotic signaling contributes to tumor survival and chemoresistance. Emerging studies suggest that AIFM3 may also participate in non-apoptotic pathways, such as cellular differentiation and response to metabolic stress, making it a potential target for therapeutic intervention in mitochondrial dysfunction-related diseases and cancer.
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