Peroxiredoxin 2 (PRDX2) Kits ELISA

PRDX2 encodes a member of the peroxiredoxin family of antioxidant enzymes, which reduce hydrogen peroxide and alkyl hydroperoxides. De plus, nous expédions Peroxiredoxin 2 Anticorps (155) et Peroxiredoxin 2 Protéines (34) et beaucoup plus de produits pour cette protéine.

list all ELISA KIts Gène GeneID UniProt
PRDX2 7001 P32119
PRDX2 21672 Q61171
PRDX2 29338 P35704
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Top Peroxiredoxin 2 Kits ELISA sur

Showing 10 out of 22 products:

Catalogue No. Reactivité Sensibilité Gamme Images Quantité Livraison Prix Détails
Humain 14.2 pg/mL 31.2 - 2000 pg/mL SDS-PAGE of Protein Standard from the Kit  (Highly purified E. coli-expressed recombinant human PRDX2). WB of Protein Standard: different control antibodies  against Highly purified E. coli-expressed recombinant human PRDX2. 96 Tests 12 to 14 Days
  96 Tests 6 to 8 Days
Boeuf (Vache)
  96 Tests 6 to 8 Days
Cobaye 0.1 ng/mL 2.5-50 ng/mL   96 Tests 15 to 18 Days
Souris 0.1 ng/mL 2.5-50 ng/mL   96 Tests 15 to 18 Days
Lapin 0.1 ng/mL 2.5-50 ng/mL   96 Tests 15 to 18 Days
Singe 0.1 ng/mL 2.5-50 ng/mL   96 Tests 15 to 18 Days
Chien 0.1 ng/mL 2.5-50 ng/mL   96 Tests 15 to 18 Days
  96 Tests 15 to 18 Days
  96 Tests 26 to 36 Days

Peroxiredoxin 2 Kits ELISA mieux référencés

  1. Human Peroxiredoxin 2 Kit ELISA pour Sandwich ELISA - ABIN6730972 : Zhang, Abudula, Awuti, Wang, Aihemaiti, Tusung, Sulaiman, Upur: Plasma proteins as potential targets of abnormal Savda syndrome in asthma patients treated with unique Uighur prescription. dans Experimental and therapeutic medicine 2017 (PubMed)

Plus Kits ELISA pour Peroxiredoxin 2 partenaires d'interaction

Human Peroxiredoxin 2 (PRDX2) interaction partners

  1. The interaction between Prx2 and CRMP2 is conserved among humans and rodents.

  2. Prx2 interacts with hemoglobin A (Alpha2Beta2) and hemoglobin F (Alpha2Gamma2) but not with hemoglobin A2 (Alpha2Delta2)

  3. In combination, proteins PRDX2 and ZAG yielded the highest discriminatory power (AUC=0.999), sensitivity (100%), and specificity (98.77%) in distinguishing the early stages of oral squamous cell carcinoma . The detection of PRDX-2 combining with ZAG protein could potentially be used as salivary biomarkers for early screening of OSCC.

  4. CDK2 directly targets and activates PRDX2 to arrest acute myeloid leukemia cell differentiation.

  5. Authors show that upon binding to phosphatidylserine or phosphatidylglycerol dimeric human 2-Cys PrxII (hPrxII) is assembled to trefoil-shaped small oligomers (possibly hexamers) with full chaperone and null peroxidase activities.

  6. PRDX2 may serve as a useful prognostic factor and a therapeutic target.

  7. REV7-PRDX2 complex also assembled onto DNA double-strand breaks.

  8. both DNMT3A-WT and R882H/C mutants interacted with PRDX2; and R882C/H mutation-induced hypomethylation increased PRDX2 expression which enhanced cell proliferation and growth with impairment of apoptosis, thereby contributing to leukemogenesis.

  9. A comparison of a new, 2.15-A-resolution crystal structure of Prx2 in the oxidized, disulfide-bonded state with the hyperoxidized structure of Prx2 and Prx1 in complex with sulfiredoxin revealed three structural regions that rearrange during catalysis.

  10. Results indicate that PRDX2 plays two roles in acute infarction - the promotion of cell survival and inflammatory myocardial hypertrophy. Also, PRDX2 expression promotes TLR4 mediated inflammatory factor expression and VEGF expression under hypoxia conditions.

  11. Thus our study suggests that PrxII may be the first thiol peroxidase that simultaneously regulates both survival and metastasis in gastric cancer cells with high clinical relevance.

  12. Changes in PRDX2 redox/oligomeric states correlated with Obstructive Sleep Apnea severity/metabolic status. Six month of positive airway pressure (PAP) treatment decreased this overoxidation and generated multimeric overoxidized forms associated with chaperone/transduction signaling activity of PRDX2.

  13. our data suggest that overexpression of peroxiredoxin-2, annexin A2, and heat shock protein beta-1 was correlated with tumor invasion, metastasis, and poor prognosis, and therefore, these proteins may serve as potential diagnostic and therapeutic biomarkers.

  14. PRX-2 gene can inhibit the phenotypic change of Epidermal Stem Cells differentiating into Sweat Gland Cells and improve the ability to maintain their own specific antigens.

  15. Prx II exhibited more effective molecular chaperone activity than Prx I when UCH-L1 was the client. Prx II interacted with UCH-L1 through its C-terminal region to protect UCH-L1 from thermal or oxidative inactivation

  16. The c-Myc/miR-200b/PRDX2 loop regulates colorectal cancer (CRC) progression and its disruption enhances tumor metastasis and chemotherapeutic resistance in CRC.

  17. Lys191 residue in this exposed C-terminal region of oxidized Prx2 is polyubiquitinated and the ubiquitinated Prx2 is readily degraded in proteasome and autophagy.

  18. Our findings indicate that Prdx2 might have an important role in the regulation of trophoblast proliferation and apoptosis during early pregnancy, and that its expression is mediated by c-Myc. Thus, these two proteins may be involved in the pathogenesis of RM and may represent potential therapeutic targets

  19. Data indicate that Prx2 is denitrosylated by Srxn1-mediated, and the two proteins physically bind via disulfide bond formation, providing a structural basis for the enzymatic reaction that requires ATP hydrolysis.

  20. Overexpression of peroxiredoxin 2 and VEGFR2 in pterygium might be involved in the pathogenesis or recurrence of pterygium. The increase of VEGFR2 might be related to the increase of peroxiredoxin 2 in response to excessive reactive oxygen species from ultraviolet exposure.

Mouse (Murine) Peroxiredoxin 2 (PRDX2) interaction partners

  1. These results showed that Prx2 expression declines in athero-prone aortic root before lesion formation, and this reduction in Prx2 expression correlates with lipid peroxidation, smooth muscle cells dedifferentiation, and macrophage recruitment

  2. Deletion of Prdx2 increases age-related ovarian failure.

  3. CDK2 depletion led to the reactivation of differentiation pathway translation, and the differentiation blockade function of CDK2 may be achieved directly by maintaining the activity of PRDX2. CDK2 depletion arrested tumor growth of acute myeloid leukemia (AML) cells in nude mice.

  4. Data suggests that Prdx1 and Prdx2 in pronuclei of zygotes are involved in antioxidant mechanisms and epigenetic programming during maternal-to-zygotic transition (during ectogenesis following in vitro fertilization). PRDX1 and PRDX2 appear to be ninth and twenty-second highest expressed proteins, respectively, among 64 proteins identified in mouse zygotes.

  5. our data highlight a novel role of Prx2 in iron homeostasis. Prx2 is a key cytoprotector against IO that is induced either by iron supplementation or due to chronic hemolysis as in beta-thalassemia.

  6. The data indicate that Prx2 is able to interrupt the hypoxia induced vicious cycle involving oxidation-inflammation-autophagy in the pathogenesis of pulmonary hypertension.

  7. one of the antioxidant enzymes, Prdx-2, was abundantly nitrosylated and temporarily reduced in antioxidant activity, causing transient endogenous hydrogen peroxide (H2O2) accumulation and subsequent X-box binding protein-1s/phosphatidylinositol 3-kinase pathway activation.Prdx-2 nitrosylation could be a potent strategy to affect the pluripotent stem cell-derived cardiomyogenesis.

  8. Oxidative stress promotes PRX2 and PRX3 hyperoxidation and attenuates pro-survival signaling in aging chondrocytes.

  9. The ventral signal observed for Prdx2 from early stages colocalized with motor neuron markers Isl1/2 and FoxP1 and strong ventral signal colocalizing with Isl1/2 was observed in all rostrocaudal segments of the spinal cord.

  10. Prx2 glutathionylation is a favorable reaction that can occur in cells under oxidative stress and may have a role in redox signaling. GSH/Grx1 provide an alternative mechanism to thioredoxin and thioredoxin reductase for Prx2 recycling.

  11. elevation in hyperoxidized Prxs, notably Prx2 and Prx3, was observed in several organs from SOD1-deficient mice. However, a SOD1 deficiency had no impact on the wheel-running activity of the mice

  12. PrxII functions as a protective antioxidant enzyme against collagen-stimulated platelet activation and platelet-dependent thrombosis

  13. Prx I and Prx II appear to have a tight association with the mechanism underlying the protection of ESC stemness in developing teratomas.

  14. results suggest that inactivation of PrxII is important for the stability of FoxO1 protein, which subsequently mediates Foxp3( ) Treg cell development, thereby attenuating colonic inflammation

  15. PRDX2 neutralizes hydrogen peroxide generated in vivo under the transient hypoxic conditions experienced as erythrocytes pass through the microcirculation.

  16. PRX2 battles poly(ADP-ribose) polymerase 1- and p53-dependent prodeath pathways after ischemic injury

  17. These findings suggest that Prx II plays an important role in preventing hemolytic anemia from oxidative stress by binding to Hb as a decameric structure to stabilize it.

  18. These results strongly demonstrate that Prx II plays an essential role in maintaining normal erythropoiesis by protecting DNA damage.

  19. This study shows that both fructose and glucose-sweetened liquid consumption results in fatty liver, with both sweeteners showing similar peroxiredoxin-2 expression.

  20. Prx-2 is upregulated via the PI3K/NF-kappaB pathway and attenuates oxidative stress during muscle differentiation and regeneration.

Peroxiredoxin 2 (PRDX2) profil antigène

Antigen Summary

This gene encodes a member of the peroxiredoxin family of antioxidant enzymes, which reduce hydrogen peroxide and alkyl hydroperoxides. The encoded protein plays an antioxidant protective role in cells, and it may contribute to the antiviral activity of CD8(+) T-cells. The crystal structure of this protein has been resolved to 2.7 angstroms. This protein prevents hemolytic anemia from oxidative stress by stabilizing hemoglobin, thus making this gene a therapeutic target for patients with hemolytic anemia. This protein may have a proliferative effect and play a role in cancer development or progression. Related pseudogenes have been identified on chromosomes 5, 6, 10 and 13.

Gene names and symbols associated with Peroxiredoxin 2 (PRDX2) Kits ELISA

  • peroxiredoxin 2 (PRDX2) anticorps
  • peroxiredoxin 2 (Prdx2) anticorps
  • peroxiredoxin 2 L homeolog (prdx2.L) anticorps
  • AL022839 anticorps
  • Band-8 anticorps
  • NKEF-B anticorps
  • nkefb anticorps
  • PRP anticorps
  • prx-2 anticorps
  • prx2 anticorps
  • prxii anticorps
  • PTX1 anticorps
  • tdpx1 anticorps
  • TDX1 anticorps
  • Torin anticorps
  • TPx anticorps
  • TPx-B anticorps
  • tpx1 anticorps
  • TR anticorps
  • TSA anticorps

Protein level used designations for Peroxiredoxin 2 (PRDX2) Kits ELISA

natural killer cell-enhancing factor B , peroxiredoxin-2 , thiol-specific antioxidant 1 , thioredoxin peroxidase 1 , thioredoxin-dependent peroxide reductase 1 , torin , Calpromotin , Prx II-1 , Trx dependent peroxide reductase 1 , protector protein , thiol specific antioxidant protein , thiol-specific antioxidant protein , thioredoxin dependent peroxide reductase 1 , thioredoxin reductase , TSA

100063348 Equus caballus
7001 Homo sapiens
21672 Mus musculus
29338 Rattus norvegicus
443840 Xenopus laevis
100512521 Sus scrofa
286793 Bos taurus
100715787 Cavia porcellus
100307046 Ovis aries
100172251 Pongo abelii
100689349 Cricetulus griseus
100856470 Canis lupus familiaris
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