Human CIRBP ELISA Kit (2) (V2LY-0626-LY5740)

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Tested Data
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Basic Information

Sensitivity
0.008 ng/mL
Detection Range
0.015-3 ng/mL
Sample Type
Serum, Plasma, cell culture supernates
Specificity
Human
Assay Type
Sandwich
Reactivity
Human
Assay Time
1.5 h
Molecule Mass
18.6 kDa
Components
  • Pre-coated ELISA Plate: 12 wells * 8 detachable strips
  • Standard solution: 0.5ml x1
  • Standard diluent: 3ml x1
  • Streptavidin-HRP: 6ml x1
  • Stop solution: 6ml x1
  • Substrate solution A: 6ml x1
  • Substrate solution B: 6ml x1
  • Wash buffer concentrate (25x): 20ml x1
  • Biotinylated antibody: 1ml x1

Formulations & Storage [For reference only, actual COA shall prevail!]

Storage
Store at 2-8°C
More Infomation

Target

Full Name
Cold Inducible RNA Binding Protein
Function
Cold-inducible mRNA binding protein that plays a protective role in the genotoxic stress response by stabilizing transcripts of genes involved in cell survival. Acts as a translational activator. Seems to play an essential role in cold-induced suppression of cell proliferation. Binds specifically to the 3'-untranslated regions (3'-UTRs) of stress-responsive transcripts RPA2 and TXN. Acts as a translational repressor (By similarity).

Promotes assembly of stress granules (SGs), when overexpressed.
Biological Process
mRNA stabilization Source: UniProtKB
Positive regulation of mRNA splicing, via spliceosome Source: GO_Central
Positive regulation of translation Source: UniProtKB
Response to cold Source: ProtInc
Response to UV Source: UniProtKB
Stress granule assembly Source: UniProtKB
Cellular Location
Cytoplasm; Nucleoplasm. Translocates from the nucleus to the cytoplasm after exposure to UV radiation. Translocates from the nucleus to the cytoplasm into stress granules upon various cytoplasmic stresses, such as osmotic and heat shocks. Its recruitment into stress granules occurs in the absence of TIAR proteins (By similarity).
PTM
Methylated on arginine residues. Methylation of the RGG motifs is a prerequisite for recruitment into SGs (By similarity).
Phosphorylated by CK2, GSK3A and GSK3B. Phosphorylation by GSK3B increases RNA-binding activity to the TXN 3'-UTR transcript upon exposure to UV radiation.

Fujita, Y., Yago, T., Asano, T., Matsumoto, H., Matsuoka, N., Temmoku, J., ... & Migita, K. (2021). Clinical relevance for circulating cold-inducible RNA-binding protein (CIRP) in patients with adult-onset Still’s disease. PloS one, 16(8), e0255493.

Ode, Y., Aziz, M., Jin, H., Arif, A., Nicastro, J. G., & Wang, P. (2019). Cold-inducible RNA-binding protein induces neutrophil extracellular traps in the lungs during sepsis. Scientific reports, 9(1), 1-11.

Hoekstra, M. M., Emmenegger, Y., Hubbard, J., & Franken, P. (2019). Cold-inducible RNA-binding protein (CIRBP) adjusts clock-gene expression and REM-sleep recovery following sleep deprivation. Elife, 8, e43400.

Liu, P., Yao, R., Shi, H., Liu, Y., Lian, S., Yang, Y., ... & Li, S. (2019). Effects of cold-inducible RNA-binding protein (CIRP) on liver glycolysis during acute cold exposure in C57BL/6 mice. International journal of molecular sciences, 20(6), 1470.

Lujan, D. A., Ochoa, J. L., & Hartley, R. S. (2018). Cold‐inducible RNA binding protein in cancer and inflammation. Wiley Interdisciplinary Reviews: RNA, 9(2), e1462.

Roilo, M., Kullmann, M. K., & Hengst, L. (2018). Cold-inducible RNA-binding protein (CIRP) induces translation of the cell-cycle inhibitor p27Kip1. Nucleic acids research, 46(6), 3198-3210.

McGinn, J., Zhang, F., Aziz, M., Yang, W. L., Nicastro, J., Coppa, G. F., & Wang, P. (2018). The protective effect of a short peptide derived from cold-inducible RNA-binding protein in renal ischemia-reperfusion injury. Shock (Augusta, Ga.), 49(3), 269.

Liao, Y., Tong, L., Tang, L., & Wu, S. (2017). The role of cold‐inducible RNA binding protein in cell stress response. International journal of cancer, 141(11), 2164-2173.

Zhong, P., & Huang, H. (2017). Recent progress in the research of cold-inducible RNA-binding protein. Future science OA, 3(4), FSO246.

Khan, M. M., Yang, W. L., Brenner, M., Bolognese, A. C., & Wang, P. (2017). Cold-inducible RNA-binding protein (CIRP) causes sepsis-associated acute lung injury via induction of endoplasmic reticulum stress. Scientific reports, 7(1), 1-13.

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For research use only. Not intended for any clinical use.

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