Rabbit Polyclonal MOSC2 antibody. Suitable for IHC-P, WB and reacts with Human samples. Cited in 2 publications. Immunogen corresponding to Recombinant Fragment Protein within Human MTARC2 aa 200-300.
IgG
Rabbit
pH: 7.2
Preservative: 0.02% Sodium azide
Constituents: PBS, 40% Glycerol (glycerin, glycerine)
Liquid
Polyclonal
IHC-P | WB | |
---|---|---|
Human | Tested | Tested |
Cynomolgus monkey | Predicted | Predicted |
Species | Dilution info | Notes |
---|---|---|
Species Human | Dilution info 1/500.00000 - 1/1000.00000 | Notes Perform heat-mediated antigen retrieval with citrate buffer pH 6 before commencing with IHC staining protocol. |
Species | Dilution info | Notes |
---|---|---|
Species Cynomolgus monkey | Dilution info - | Notes - |
Species | Dilution info | Notes |
---|---|---|
Species Human | Dilution info 0.04000-0.40000 µg/mL | Notes - |
Species | Dilution info | Notes |
---|---|---|
Species Cynomolgus monkey | Dilution info - | Notes - |
Select an associated product type
Catalyzes the reduction of N-oxygenated molecules, acting as a counterpart of cytochrome P450 and flavin-containing monooxygenases in metabolic cycles (PubMed:21029045, PubMed:24423752). As a component of prodrug-converting system, reduces a multitude of N-hydroxylated prodrugs particularly amidoximes, leading to increased drug bioavailability (PubMed:21029045, PubMed:24423752). May be involved in mitochondrial N(omega)-hydroxy-L-arginine (NOHA) reduction, regulating endogenous nitric oxide levels and biosynthesis (PubMed:21029045). Postulated to cleave the N-OH bond of N-hydroxylated substrates in concert with electron transfer from NADH to cytochrome b5 reductase then to cytochrome b5, the ultimate electron donor that primes the active site for substrate reduction (PubMed:21029045).
Mitochondrial amidoxime reducing component 2, mARC2, Molybdenum cofactor sulfurase C-terminal domain-containing protein 2, MOSC domain-containing protein 2, Moco sulfurase C-terminal domain-containing protein 2, MTARC2, MOSC2, MARC2
Rabbit Polyclonal MOSC2 antibody. Suitable for IHC-P, WB and reacts with Human samples. Cited in 2 publications. Immunogen corresponding to Recombinant Fragment Protein within Human MTARC2 aa 200-300.
Mitochondrial amidoxime reducing component 2, mARC2, Molybdenum cofactor sulfurase C-terminal domain-containing protein 2, MOSC domain-containing protein 2, Moco sulfurase C-terminal domain-containing protein 2, MTARC2, MOSC2, MARC2
IgG
Rabbit
pH: 7.2
Preservative: 0.02% Sodium azide
Constituents: PBS, 40% Glycerol (glycerin, glycerine)
Liquid
Polyclonal
Affinity purification Immunogen
Blue Ice
1-2 weeks
+4°C
-20°C
Upon delivery aliquot
Avoid freeze / thaw cycle
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This supplementary information is collated from multiple sources and compiled automatically.
MOSC2 also known as CIAPIN1 or Mitochondrial amidoxime reducing component 2 is a protein encoded by the MOSC2 gene. This protein has a molecular weight of approximately 38 kDa. Mechanically MOSC2 acts as an oxidoreductase facilitating electron transfer across various substrates. MOSC2 is expressed in multiple tissues with higher expression observed in liver kidney and heart which suggests its diverse functional roles in different physiological contexts.
MOSC2 is part of a mitochondrial complex involved in metabolic processes. It plays a role in catalyzing the reduction of N-hydroxylated substrates linking electron transfer to cellular metabolism. The protein assists in the activation of pro-drugs by reducing N-hydroxylated intermediates. This function positions MOSC2 as a significant player in cellular metabolic pathways showcasing its involvement in the broader scheme of mitochondrial function and energy homeostasis.
MOSC2 participates in detoxification and mitochondrial respiratory pathways which are essential for maintaining cellular health. It plays a role in the mitochondrial amidoxime reducing component (mARC) pathway where it collaborates with cytochrome b5 and NADH cytochrome b5 reductase for electron transfer. This interaction highlights its necessity for redox reactions confirming its importance in maintaining the balance of reactive molecules within the cell.
MOSC2 has been implicated in metabolic disorders and certain cancers. Alterations in MOSC2 function or expression can affect mitochondrial metabolism potentially contributing to metabolic syndrome. Additionally its interactions with proteins such as NADH cytochrome b5 reductase can influence cancer cell metabolism suggesting a role in tumorigenesis. These associations highlight its potential as a therapeutic target in conditions where metabolic pathways are disrupted.
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Paraffin-embedded human liver tissue stained for MOSC2 using ab224097 at 1/500 in immunohistochemical analysis.
All lanes: Western blot - Anti-MOSC2 antibody (ab224097) at 0.4 µg/mL
All lanes: Human cell line TD47D
Predicted band size: 38 kDa, 50 kDa, 60 kDa
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