品牌货号 产品名称 | 阿拉丁rp181302 Recombinant Human MMP-8 Protein |
---|---|
别名 | 重组人MMP-8蛋白 | 重组人基质金属蛋白酶8蛋白 |
英文别名 | CLG1HNC | Collagenase 2 | EC 3.4.24 | EC 3.4.24.34 | matrix metallopeptidase 8 (neutrophil collagenase) | matrix metalloproteinase 8 (neutrophil collagenase) | Matrix metalloproteinase-8 | MMP8 | MMP-8 | neutrophil collagenase | PMNL collagenase | PMNL-CL |
规格或纯度 | 无动物源, 无载体, ≥90%(SDS-PAGE) |
生化机理 | Matrix metalloproteinases (MMPs) are a family of zinc and calcium dependent endopeptidases with the combined ability to degrade all the components of the extracellular matrix. MMP-8 (neutrophil collagenase) is expressed in neutrophils, where it is stored in specific granules. MMP-8 release from the neutrophils is stimulated by various factors such as interleukins 1 and 8, TNF-alpha and GM-CSF. MMP-8 is capable of cleaving types I, II and III triple-helical collagen, gelatin peptides, fibronectin, proteoglycans, aggrecan, serpins, beta -casein and peptides such as angiotensin and substance P. In addition to its function in phagocytosis, MMP‑8 has a high capacity for infiltrating connective tissue, and is implicated in the breakdown of the extracellular matrix in diseases such as rheumatoid arthritis. Structurally, MMP-8 consists of several domains: a pro-domain that is cleaved upon activation, a catalytic domain containing the zinc-binding site, a short hinge region and a hemopexin-like domain. MMP-8 is heavily glycosylated. |
内毒素水平 | <1.0 EU/μg |
表达系统 | HEK293 |
种属 | 人(Human) |
氨基酸 | 1-467 aa |
序列 | MFSLKTLPFLLLLHVQISKAFPVSSKEKNTKTVQDYLEKFYQLPSNQYQSTRKNGTNVIVEKLKEMQRFFGLNVTGKPNEETLDMMKKPRCGVPDSGGFMLTPGNPKWERTNLTYRIRNYTPQLSEAEVERAIKDAFELWSVASPLIFTRISQGEADINIAFYQRDHGDNSPFDGPNGILAHAFQPGQGIGGDAHFDAEETWTNTSANYNLFLVAAHEFGHSLGLAHSSDPGALMYPNYAFRETSNYSLPQDDIDGIQAIYGLSSNPIQPTGPSTPKPCDPSLTFDAITTLRGEILFFKDRYFWRRHPQLQRVEMNFISLFWPSLPTGIQAAYEDFDRDLIFLFKGNQYWALSGYDILQGYPKDISNYGFPSSVQAIDAAVFYRSKTYFFVNDQFWRYDNQRQFMEPGYPKSISGAFPGIESKVDAVFQQEHFFHVFSGPRYYAFDLIAQRVTRVARGNKWLNCRYGHHHHHHHHHH |
蛋白标签 | C-10His |
无载体 | Yes |
无动物源 | Yes |
Accession # | P22894 |
来源 | 重组表达 |
预测分子量 | 52.5 kDa |
SDS-PAGE | 56.4-72.8 kDa, under reducing conditions; 56.4-72.8 kDa, under non-reducing conditions. |
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