Frataxin Antibody (YA6954)
(Synonyms: CyaY antibody; d-FXN antibody; FA antibody; FARR antibody; Frataxin mature form antibody; Frataxin(81-210) antibody; FRDA antibody; FRDA_HUMAN antibody; Friedreich ataxia protein antibody; Fxn antibody)Based on 1 Customer Validation
Frataxin Antibody (YA6954) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Frataxin.
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Host:
Rabbit
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Isotype:
IgG
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Application:
WB, IHC-P
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Reactivity :
Human, Rat
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Formulation:
Supplied in PBS (pH 7.4), 0.1% BSA, 40% Glycerol, 0.2% Proclean 950.
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Conjugation:
Non-conjugated
Applications
| Application |
WB
WB: Western Blot
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IHC-P
IHC-P: Immunohistochemistry-Paraffin
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| Dilution Ratio | 1:2000-1:5000 | 1:1000 |
Product Details
Frataxin Antibody (YA6954) is a Rabbit-derived and non-conjugated IgG monoclonal antibody, targeting to Frataxin.
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Host Rabbit
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Clonality Recombinant,Monoclonal
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Species ReactivityHuman, Rat
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Observed Molecular WeightObserved band size: 14/19 kDaNote: Due to possible protein modifications or aggregation, the molecular weight should be confirmed by actual measurement, and the predicted value is for reference only.
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Calculated Molecular Weight Predicted band size: 23 kDa
Recombinant protein within human Frataxin aa 42-210.
Endogenous
Protein A affinity purified.
Non-conjugated
Unmodified
IgG
Product Properties
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Appearance
Solution
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Formulation
Supplied in PBS (pH 7.4), 0.1% BSA, 40% Glycerol, 0.2% Proclean 950.
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Concentration
Batch-dependent, Please check the COA for the concentration of each lot. Check Lot Concentration
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Storage & Stability
Stored at -20°C for 1 year. Avoid repeated freeze / thaw cycles.
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Shipping
Shipping with blue ice.
Verification Images
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Western blot analysis of extracts from HepG2 (lane 1(20μg)) and K562 (lane 2(20μg)) using Frataxin Antibody (HY-P87271) . Proteins were transferred to a PVDF membrane and blocked with 5% nonfat dry milk in TBST for 1.5 hour at room temperature. The primary antibody (1/2000) and Loading control antibody (β Tubulin, 1/5000) was used in 5% nonfat dry milk in TBST at 4℃ overnight. Goat Anti-Rabbit IgG-HRP Secondary Antibody (1/10,000) was used for 1 hour at room temperature.
Background
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Function
Frataxin functions as an activator of persulfide transfer to the scaffoding protein ISCU as component of the core iron-sulfur cluster (ISC) assembly complex and participates to the [2Fe-2S] cluster assembly. Accelerates sulfur transfer from NFS1 persulfide intermediate to ISCU and to small thiols such as L-cysteine and glutathione leading to persulfuration of these thiols and ultimately sulfide release. Binds ferrous ion and is released from FXN upon the addition of both L-cysteine and reduced FDX2 during [2Fe-2S] cluster assembly. The core iron-sulfur cluster (ISC) assembly complex is involved in the de novo synthesis of a [2Fe-2S] cluster, the first step of the mitochondrial iron-sulfur protein biogenesis. This process is initiated by the cysteine desulfurase complex (NFS1:LYRM4:NDUFAB1) that produces persulfide which is delivered on the scaffold protein ISCU in a FXN-dependent manner. Then this complex is stabilized by FDX2 which provides reducing equivalents to accomplish the [2Fe-2S] cluster assembly. Finally, the [2Fe-2S] cluster is transferred from ISCU to chaperone proteins, including HSCB, HSPA9 and GLRX5. May play a role in the protection against iron-catalyzed oxidative stress through its ability to catalyze the oxidation of Fe(2+) to Fe(3+); the oligomeric form but not the monomeric form has in vitro ferroxidase activity. May be able to store large amounts of iron in the form of a ferrihydrite mineral by oligomerization; however, the physiological relevance is unsure as reports are conflicting and the function has only been shown using heterologous overexpression systems. May function as an iron chaperone protein that protects the aconitase [4Fe-4S]2+ cluster from disassembly and promotes enzyme reactivation. May play a role as a high affinity iron binding partner for FECH that is capable of both delivering iron to ferrochelatase and mediating the terminal step in mitochondrial heme biosynthesis |Modulates the RNA-binding activity of ACO1. May be involved in the cytoplasmic iron-sulfur protein biogenesis. May contribute to oxidative stress resistance and overall cell survival[1][2][3][4][5][6][7][8][9][10][11][12].
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Subcellular Localization
Mitochondrion,Cytoplasm, cytosol
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Expression
Tissue_Specificity: Expressed in the heart, peripheral blood lymphocytes and dermal fibroblasts -
Isoforms & Post-Translational Modification
Q16595 has three isomers: Q16595-1: 23135 Da (predicted); Q16595-2: 19095 Da (predicted); Q16595-3: 21416 Da (predicted).
Processed in two steps by mitochondrial processing peptidase (MPP) -
Subunit
Component of the mitochondrial core iron-sulfur cluster (ISC) complex composed of NFS1, LYRM4, NDUFAB1, ISCU, FXN, and FDX2; this complex is a heterohexamer containing two copies of each monomer (Probable)
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SwissProt ID
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Synonyms
CyaY antibody; d-FXN antibody; FA antibody; FARR antibody; Frataxin mature form antibody; Frataxin(81-210) antibody; FRDA antibody; FRDA_HUMAN antibody; Friedreich ataxia protein antibody; Fxn antibody
Documentation
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Data Sheet (261 KB)
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SDS (251 KB)
- English - EN (251 KB)
- Français - FR (251 KB)
- Deutsch - DE (251 KB)
- Norwegian - NO (251 KB)
- Español - ES (251 KB)
- Swedish - SV (251 KB)
- Italian - IT (251 KB)
- Korean - KR (251 KB)
- Portuguese - PT (251 KB)
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User Guide for Antibodies (1077 KB)
References
[1]. Yoon T, et al. Iron-sulfur cluster biosynthesis. Characterization of frataxin as an iron donor for assembly of [2Fe-2S] clusters in ISU-type proteins. J Am Chem Soc. 2003 May 21;125(20):6078-84. [Content Brief]
[2]. Bridwell-Rabb J, et al. Human frataxin activates Fe-S cluster biosynthesis by facilitating sulfur transfer chemistry. Biochemistry. 2014 Aug 5;53(30):4904-13. [Content Brief]
[3]. Cai K, et al. Interactions of iron-bound frataxin with ISCU and ferredoxin on the cysteine desulfurase complex leading to Fe-S cluster assembly. J Inorg Biochem. 2018 Jun;183:107-116. [Content Brief]
[4]. O'Neill HA, et al. Assembly of human frataxin is a mechanism for detoxifying redox-active iron. Biochemistry. 2005 Jan 18;44(2):537-45. [Content Brief]
[5]. Cavadini P, et al. Assembly and iron-binding properties of human frataxin, the protein deficient in Friedreich ataxia. Hum Mol Genet. 2002 Feb 1;11(3):217-27. [Content Brief]
[6]. Nichol H, et al. Structure of frataxin iron cores: an X-ray absorption spectroscopic study. Biochemistry. 2003 May 27;42(20):5971-6. [Content Brief]
[7]. Bulteau AL, et al. Frataxin acts as an iron chaperone protein to modulate mitochondrial aconitase activity. Science. 2004 Jul 9;305(5681):242-5. [Content Brief]
[8]. Yoon T, et al. Frataxin-mediated iron delivery to ferrochelatase in the final step of heme biosynthesis. J Biol Chem. 2004 Jun 18;279(25):25943-6. [Content Brief]
[9]. Schoenfeld RA, et al. Frataxin deficiency alters heme pathway transcripts and decreases mitochondrial heme metabolites in mammalian cells. Hum Mol Genet. 2005 Dec 15;14(24):3787-99. [Content Brief]
[10]. Condò I, et al. Molecular control of the cytosolic aconitase/IRP1 switch by extramitochondrial frataxin. Hum Mol Genet. 2010 Apr 1;19(7):1221-9. [Content Brief]
[11]. Acquaviva F, et al. Extra-mitochondrial localisation of frataxin and its association with IscU1 during enterocyte-like differentiation of the human colon adenocarcinoma cell line Caco-2. J Cell Sci. 2005 Sep 1;118(Pt 17):3917-24. [Content Brief]
[12]. Condò I, et al. A pool of extramitochondrial frataxin that promotes cell survival. J Biol Chem. 2006 Jun 16;281(24):16750-6. [Content Brief]