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Human ULK2 (Serine, Threonine-protein Kinase Ulk2) ELISA Kit

Human ULK2 (Serine, Threonine-protein Kinase Ulk2) ELISA Kit

The Human (ULK2) Serine, Threonine-protein Kinase Ulk2 ELISA Kit measures serine/threonine-protein kinase ULK2 in samples. The plate has been pre-coated with Human ULK2 antibody. ULK2 present in the sample is added and binds to antibodies coated on the wells. And then biotinylated Human ULK2 Antibody is added and binds to ULK2 in the sample. Then Streptavidin-HRP is added and binds to the Biotinylated ULK2 antibody. After incubation unbound Streptavidin-HRP is washed away during a washing step. Substrate solution is then added and color develops in proportion to the amount of Human ULK2. The reaction is terminated by addition of acidic stop solution and absorbance is measured at 450 nm.

Catalog No: E6625Hu
Regular price $595.00 USD
Regular price $458.00 USD Sale price $595.00 USD
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2.5 weeks
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Product Details

Species Reactivity Human
Sensitivity 9.14 ng/L
Detection Range 20-3800 ng/L
Sample Type Serum, plasma, cell culture supernates
Incubation(s) 1.5 hour(s)
Research Areas Signal Transduction, Enzyme & Kinase
Background Serine/threonine-protein kinase involved in autophagy in response to starvation. Acts upstream of phosphatidylinositol 3-kinase PIK3C3 to regulate the formation of autophagophores, the precursors of autophagosomes. Part of regulatory feedback loops in autophagy: acts both as a downstream effector and a negative regulator of mammalian target of rapamycin complex 1 (mTORC1) via interaction with RPTOR. Activated via phosphorylation by AMPK, also acts as a negative regulator of AMPK through phosphorylation of the AMPK subunits PRKAA1, PRKAB2 and PRKAG1. May phosphorylate ATG13/KIAA0652, FRS2, FRS3 and RPTOR; however such data need additional evidences. Not involved in ammonia-induced autophagy or in autophagic response of cerebellar granule neurons (CGN) to low potassium concentration. Plays a role early in neuronal differentiation and is required for granule cell axon formation: may govern axon formation via Ras-like GTPase signaling and through regulation of the Rab5-mediated endocytic pathways within developing axons. Source: UniProt Consortium (2025)
Shipping Condition Shipped on cold gel packs.
Storage Condition and Shelf Life 2-8C
Analyte serine/threonine-protein kinase ULK2
Regulatory Status For Research Use Only
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