NewEast Biosciences pioneered the research and development of the antibodies for GTPases and mutated Oncogene ten years ago. GTPases involve (1) signal transduction in response to activation of cell surface receptors, including transmembrane receptors such as those mediating taste, smell and vision, (2) protein biosynthesis at the ribosome, (3) regulation of cell differentiation, proliferation, division and movement, (4) translocation of proteins through membranes, (5) transport of vesicles within the cell, and vesicle-mediated secretion and uptake, through GTPase control of vesicle coat assembly. An oncogene is a gene that has the potential to cause cancer.
We offer three unique categories of antibodies, which (1) recognize only the active configuration of GTPase (not the inactive one), (2) mutated Oncogene (not mild type) and (3) have super affinity for cAMP and cGMP (no acetylation required). We have over one thousand peer reviewed articles cited our products.
$349.00
Cat.#: N262885 | ||||
Product Name: Anti-SESN2 Rabbit Monoclonal Antibody | ||||
Synonyms: HI95; SES2; SEST2 | ||||
UNIPROT ID: P58004 | ||||
Background: Functions as an intracellular leucine sensor that negatively regulates the TORC1 signaling pathway through the GATOR complex. In absence of leucine, binds the GATOR subcomplex GATOR2 and prevents TORC1 signaling (PubMed:18692468, PubMed:25263562, PubMed:25457612, PubMed:26449471, PubMed:26612684, PubMed:26586190). Binding of leucine to SESN2 disrupts its interaction with GATOR2 thereby activating the TORC1 signaling pathway (PubMed:26449471, PubMed:26586190). This stress-inducible metabolic regulator also plays a role in protection against oxidative and genotoxic stresses. May negatively regulate protein translation in response to endoplasmic reticulum stress, via TORC1 (PubMed:24947615). May positively regulate the transcription by NFE2L2 of genes involved in the response to oxidative stress by facilitating the SQSTM1-mediated autophagic degradation of KEAP1 (PubMed:23274085). May also mediate TP53 inhibition of TORC1 signaling upon genotoxic stress (PubMed:18692468). Has an alkylhydroperoxide reductase activity born by the N-terminal domain of the protein (PubMed:26612684). Was originally reported to contribute to oxidative stress resistance by reducing PRDX1 (PubMed:15105503). However, this could not be confirmed (PubMed:19113821). | ||||
Immunogen: Recombinant protein of human SESN2 | ||||
Applications: WB,ICC/IF,IP | ||||
Recommended Dilutions: WB: 1/500-1/1000 IF: 1/50-1/200 IP: 1/20 | ||||
Host Species: Rabbit | ||||
Clonality: Rabbit Monoclonal | ||||
Clone ID: R05-8C1 | ||||
MW: Calculated MW: 54 kDa; Observed MW: 54 kDa | ||||
Isotype: IgG | ||||
Purification: Affinity Purified | ||||
Species Reactivity: Human,Mouse,Rat | ||||
Conjugation: Unconjugated | ||||
Modification: Unmodified | ||||
Constituents: PBS (without Mg2+ and Ca2+), pH 7.3 containing 50% glycerol, 0.5% BSA and 0.02% sodium azide | ||||
Research Areas: Cardiovascular | ||||
Storage & Shipping: Store at -20°C. Avoid repeated freezing and thawing | ||||
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