Recombinant Human MMP9 protein, His-Avi-tagged
Cat.No. : | MMP9-780H |
Product Overview : | Recombinant Human MMP9 protein(P14780)(Ala20-Asp707), fused with C-terminal His and Avi tag, was expressed in HEK293. |
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Source : | HEK293 |
Species : | Human |
Tag : | C-His-Avi |
Protein length : | Ala20-Asp707 |
Form : | Lyophilized from 0.22μm filtered solution in PBS (pH 7.4). Normally 5% trehalose is added as protectant before lyophilization. |
Bio-activity : | Immobilized Human MMP-9, His Tag at 1ug/ml (100ul/Well) on the plate. Dose response curve for Anti-MMP-9 Antibody, hFc Tag with the EC50 of 6.5ng/ml determined by ELISA. |
Molecular Mass : | The protein has a predicted MW of 79.3 kDa. Due to glycosylation, the protein migrates to 85-100 kDa based on Tris-Bis PAGE result. |
Endotoxin : | Less than 1EU per μg by the LAL method. |
Purity : | > 95% as determined by Tris-Bis PAGE;> 95% as determined by HPLC |
Storage : | Reconstituted protein stable at -80°C for 12 months, 4°C for 1 week. Use a manual defrost freezer and avoid repeated freeze-thaw cycles. |
Reconstitution : | Centrifuge tubes before opening. Reconstituting to a concentration more than 100 μg/ml is recommended. Dissolve the lyophilized protein in distilled water. |
Gene Name : | MMP9 matrix metallopeptidase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase) [ Homo sapiens ] |
Official Symbol : | MMP9 |
Synonyms : | MMP9; matrix metallopeptidase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase); CLG4B, matrix metalloproteinase 9 (gelatinase B, 92kD gelatinase, 92kD type IV collagenase) , matrix metalloproteinase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase); matrix metalloproteinase-9; 92 kDa gelatinase; type V collagenase; macrophage gelatinase; 92 kDa type IV collagenase; matrix metalloproteinase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase); GELB; CLG4B; MMP-9; MANDP2; |
Gene ID : | 4318 |
mRNA Refseq : | NM_004994 |
Protein Refseq : | NP_004985 |
MIM : | 120361 |
UniProt ID : | P14780 |
Products Types
◆ Recombinant Protein | ||
Mmp9-242M | Recombinant Mouse MMP9 Protein, His-tagged(C-ter) | +Inquiry |
MMP9-1131P | Recombinant Pig MMP9 Protein, His-tagged | +Inquiry |
Mmp9-37H | Active Recombinant Rat Mmp9 protein (20-708aa), C-6×His-tagged | +Inquiry |
Mmp9-4101M | Recombinant Mouse Mmp9 Protein, Myc/DDK-tagged | +Inquiry |
Mmp9-1132M | Recombinant Mouse Mmp9 Protein, His-tagged | +Inquiry |
◆ Native Protein | ||
MMP9-30035TH | Native Human MMP9 | +Inquiry |
MMP9-39H | Native Human MMP-9/Lipocalin Complex | +Inquiry |
MMP9-38H | Native Human MMP-9 | +Inquiry |
◆ Lysates | ||
MMP9-2560HCL | Recombinant Human MMP9 cell lysate | +Inquiry |
MMP9-2026MCL | Recombinant Mouse MMP9 cell lysate | +Inquiry |
MMP9-1940RCL | Recombinant Rat MMP9 cell lysate | +Inquiry |
◆ Assay kits | ||
Kit-2130 | MMP-9 Inhibitor Screening Kit | +Inquiry |
Kit-3100 | MMP-9 Fluorimetric Assay Kit | +Inquiry |
Related Gene
Not For Human Consumption!
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Customer Reviews (3)
Write a reviewThe superior quality of this recombined protein has significantly enhanced the precision of our research outcomes.
Fast shipping! Ordered this product, and it arrived well-packaged and ready for use in our experiments.
Customer service went above and beyond to accommodate our specific needs, ensuring a smooth purchasing experience.
Q&As (5)
Ask a questionDysregulated MMP9 expression is associated with cancer invasion and metastasis, as it enables tumor cells to degrade the extracellular matrix and invade surrounding tissues.
Polymorphisms in the MMP9 gene can influence enzyme activity, potentially affecting the individual's susceptibility to certain diseases and the progression of pathological conditions.
MMP9 facilitates tissue remodeling by cleaving structural proteins in the extracellular matrix, such as collagen and gelatin, leading to changes in tissue architecture.
MMP9 contributes to the breakdown of the blood-brain barrier by degrading tight junction proteins, potentially exacerbating neurological disorders and neuroinflammation.
MMP9 plays a role in angiogenesis by promoting the release and activation of growth factors sequestered in the extracellular matrix, facilitating the formation of new blood vessels.
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