catalog number :
MBS266444
products type :
ELISA Kit
products full name :
Mouse High mobility group protein B1 (HMGB-1) ELISA Kit
products short name :
High mobility group protein B1 (HMGB-1)
other names :
high mobility group protein B1; High mobility group protein B1; high mobility group protein B1; HMG-1; Amphoterin; high-mobility group box 1; high mobility group protein 1; Sulfoglucuronyl carbohydrate binding protein; high-mobility group (nonhistone chromosomal) protein 1; high mobility group box 1; High mobility group protein 1; HMG-1
products gene name :
HMGB-1
other gene names :
HMGB1; HMGB1; HMG1; HMG3; SBP-1; HMG1; HMG-1
uniprot entry name :
HMGB1_HUMAN
specificity :
No cross-reaction with other factors.
storage stability :
Store all reagents at 2-8 degree C.
other info1 :
Samples: Mouse serum, plasma or cell culture supernatant and organizations in the natural and recombinant HMGB-1 concentration. Assay Type: Sandwich. Detection Range: 5000 pg/ml-78 pg/ml. Sensitivity: 20 pg/ml.
other info2 :
Intra-assay Precision: <= 8%. Inter-assay Precision: <= 12%
products description :
Principle of the Assay This experiment use double-sandwich elisa technique and the ELISA Kit provided is typical. The pre-coated antibody is Mouse HMGB-1 monoclonal antibody and the detecting antibody is polyclonal antibody with biotin labeled. Samples and biotin labeling antibody are added into ELISA plate wells and washed out with PBS or TBS. Then Avidin-peroxidase conjugates are added to ELISA wells in order; Use TMB substrate for coloring after reactant thoroughly washed out by PBS or TBS. TMB turns into blue in peroxidase catalytic and finally turns into yellow under the action of acid. The color depth and the testing factors in samples are positively correlated.
ncbi acc num :
NP_002119.1
ncbi gb acc num :
NM_002128.4
ncbi mol weight :
24,894 Da
ncbi pathways :
Activated TLR4 Signalling Pathway (106400); Activation Of DNA Fragmentation Factor Pathway (105683); Advanced Glycosylation Endproduct Receptor Signaling Pathway (187092); Apoptosis Pathway (105648); Apoptosis Induced DNA Fragmentation Pathway (105682); Apoptotic Execution Phase Pathway (105677); Base Excision Repair Pathway (83043); Base Excision Repair Pathway (451); Cytosolic Sensors Of Pathogen-associated DNA Pathway (576255); DEx/H-box Helicases Activate Type I IFN And Inflammatory Cytokines Production Pathway (833822)
uniprot summary :
HMGB1: DNA binding proteins that associates with chromatin and has the ability to bend DNA. Binds preferentially single-stranded DNA. Involved in V(D)J recombination by acting as a cofactor of the RAG complex. Acts by stimulating cleavage and RAG protein binding at the 23 bp spacer of conserved recombination signal sequences (RSS). Heparin-binding protein that has a role in the extension of neurite-type cytoplasmic processes in developing cells. Component of the RAG complex composed of core components RAG1 and RAG2, and associated component HMGB1 or HMGB2. Belongs to the HMGB family. Protein type: Nuclear receptor co-regulator; DNA repair, damage. Chromosomal Location of Human Ortholog: 13q12. Cellular Component: nucleoplasm; extracellular space; cell surface; transcriptional repressor complex; extracellular region; condensed chromosome; nucleus. Molecular Function: RAGE receptor binding; protein binding; double-stranded DNA binding; cytokine activity; damaged DNA binding; chromatin binding; transcription factor binding; DNA bending activity; transcription factor activity; single-stranded DNA binding; chemoattractant activity. Biological Process: negative regulation of transcriptional preinitiation complex assembly; DNA topological change; V(D)J recombination; positive regulation of apoptosis; apoptosis; positive regulation of caspase activity; base-excision repair, DNA ligation; negative regulation of transcription from RNA polymerase II promoter; DNA recombination; chromatin remodeling; regulation of transcription from RNA polymerase II promoter; myeloid dendritic cell activation; inflammatory response to antigenic stimulus; positive chemotaxis; DNA ligation during DNA repair; innate immune response; dendritic cell chemotaxis; positive regulation of transcription from RNA polymerase II promoter; DNA fragmentation during apoptosis; neurite development; cell structure disassembly during apoptosis; positive regulation of DNA binding