p38 delta, Unactive(M38-14G)

p38 delta, Unactive(M38-14G)

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Description :Recombinant full-length human p38delta was expressed by baculovirus in Sf9 insect cells using a N-terminal GST tag.

Species :Human

Tag :GST tag

Expression System:Sf9 insect cells using baculovirus

Sequence :Full Length

Genbank Number :NM_002754

Purity :Sample Purity Data. For specific information on a given lot, see related technical data sheet.

Storage, Stability and Shipping :Store product at –70oC. For optimal storage, aliquot target into smaller quantities after centrifugation and store at recommended temperature. For most favorable performance, avoid repeated handling and multiple freeze/thaw cycles.

Applications :Kinase Assay, Western Blot

Molecular Weight :~65 kDa

Gene Aliases :SAPK4; PRKM13; MAPK13

Scientific Background :p38δ (SAPK4) is a member of the p38 MAPK family and is activated by chemical and environmental stresses as well as by proinflammatory cytokines. P38δ has a TGY dual phosphorylation motif and is activated in response to cellular stresses and proinflammatory cytokines (1). MAP kinase kinases 3, and 6 can phosphorylate and activate this kinase. Transcription factor ATF2, and microtubule dynamics regulator stathmin have been shown to be the substrates of this kinase (2).

References :
1. Goedert, M. et al: Activation of the novel stress-activated protein kinase SAPK4 by cytokines and cellular stresses is mediated by SKK3 (MKK6); comparison of its substrate specificity with that of other SAP kinases. EMBO J. 16: 3563-3571, 1997.

2. Kumar, S. et al: Novel homologues of CSBP/p38 MAP kinase: activation, substrate specificity and sensitivity to inhibition by pyridinyl imidazoles. Biochem Biophys Res Commun. 1997 Jun 27;235(3):533-8.

Product Sheets (By Lot #) :

K221-1.pdf

Research Areas :Neurobiology, Inflammation, Metabolic Disorder, Cardiovascular Disease, p38 Pathway, NfkB Pathway, Apoptosis/Autophagy, Cellular Stress, Angiogenesis, Ser/Thr Kinases, Neurobiology, Inflammation, Metabolic Disorder, Cardiovascular Disease, p38 Pathway, NfkB Pathway, Apoptosis/Autophagy, Cellular Stress, Angiogenesis, Ser/Thr Kinases