RP00646B
Biotinylated Recombinant Human MMP-9 Protein

Size
£657.00
- SKU:
- RP00646B
- Additional Names:
- MMP9, CLG4B,MMP-9,Matrix metalloproteinase-9
- Molecular Weight:
- 95-105 kDa
- Purity:
- ≥ 95 % as determined by SDS-PAGE;≥ 95 %
- Storage Conditions:
- -20[o]C reconstituted. Avoid freeze/thaw cycles., 2-8[o]C reconstituted., -20[o]C/-70[o]C lyophilized. Avoid freeze/thaw cycles.
- Supplier:
- Abclonal
- Immunogen:
- Ala20-Asp707
- Formulation:
- Biotinylated Recombinant Human MMP-9 Protein is produced by HEK293 cells expression system. The target protein is expressed with sequence (Ala20-Asp707) of Human MMP-9 (Accession #P14780) fused with a C-His&Avi tag at the C-terminus.
- Species:
- Human
- Sequence:
- APRQRQSTLVLFPGDLRTNLTDRQLAEEYLYRYGYTRVAEMRGESKSLGPALLLLQKQLSLPETGELDSATLKAMRTPRCGVPDLGRFQTFEGDLKWHHHNITYWIQNYSEDLPRAVIDDAFARAFALWSAVTPLTFTRVYSRDADIVIQFGVAEHGDGYPFDGKDGLLAHAFPPGPGIQGDAHFDDDELWSLGKGVVVPTRFGNADGAACHFPFIFEGRSYSACTTDGRSDGLPWCSTTANYDTDDRFGFCPSERLYTQDGNADGKPCQFPFIFQGQSYSACTTDGRSDGYRWCATTANYDRDKLFGFCPTRADSTVMGGNSAGELCVFPFTFLGKEYSTCTSEGRGDGRLWCATTSNFDSDKKWGFCPDQGYSLFLVAAHEFGHALGLDHSSVPEALMYPMYRFTEGPPLHKDDVNGIRHLYGPRPEPEPRPPTTTTPQPTAPPTVCPTGPPTVHPSERPTAGPTGPPSAGPTGPPTAGPSTATTVPLSPVDDACNVNIFDAIAEIGNQLYLFKDGKYWRFSEGRGSRPQGPFLIADKWPALPRKLDSVFEERLSKKLFFFSGRQVWVYTGASVLGPRRLDKLGLGADVAQVTGALRSGRGKMLLFSGRRLWRFDVKAQMVDPRSASEVDRMFPGVPLDTHDVFQYREKAYFCQDRFYWRVSSRSELNQVDQVGYVTYDILQCPED
- Uniprot:
- P14780
- Synonyms:
- 92 kDa gelatinase;92 kDa type IV collagenase;CLG4B;Gelatinase B;GELB;macrophage gelatinase;MANDP2;matrix metallopeptidase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase);matrix metalloproteinase 9 (gelatinase B, 92kDa gelatinase, 92kDa type IV collagenase);matrix metalloproteinase-9;MMP-9;type V collagenase
- Extra Details:
- Matrix metalloproteinase 9 (MMP9) contributes to this process and deficiencies in the MMP9 lead to impaired healing. Inappropriate expression of MMP9 also contributes to impaired re-epithelialization. Previously we demonstrated that FOXO1 was activated in wound healing but to higher levels in diabetic wounds. To address mechanisms of impaired re-epithelialization we examined MMP9 expression in vivo in full thickness dermal scalp wounds created in experimental K14.
- Shipping Conditions:
- Blue Ice





