anti-Laminin S antibody [C4]

Key features and details

  • 产品描述: Mouse Monoclonal antibody [C4] recognizes Laminin S
  • 反应物种: Hu, Rat, Bov, Chk, Gpig, Pig
  • 应用: IP, WB
  • 宿主: Mouse
  • 克隆: Monoclonal
  • 克隆号: C4
  • 同位型: IgG1
  • 靶点名称: Laminin S
  • 抗原物种: Bovine
  • Brand:
CAT.NO. : ARG62532
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Product Details
概述
产品描述Mouse Monoclonal antibody [C4] recognizes Laminin S
反应物种Hu, Rat, Bov, Chk, Gpig, Pig
应用IP, WB
宿主Mouse
克隆Monoclonal
克隆号C4
同位型IgG1
靶点名称Laminin S
抗原物种Bovine
抗原bovine anterior lens capsule
偶联标记Un-conjugated
別名Laminin-3 subunit beta; S-laminin subunit beta; Laminin B1s chain; S-LAM beta; Laminin-4 subunit beta; LAMS; NPHS5; Laminin-14 subunit beta; Laminin-15 subunit beta; Laminin-9 subunit beta; Laminin-11 subunit beta; Laminin-7 subunit beta; Laminin subunit beta-2
应用说明
应用说明IP: 2 µg/mg of lysate.
WB: 1 - 2 µg/ml
* The dilutions indicate recommended starting dilutions and the optimal dilutions or concentrations should be determined by the scientist.
属性
形式Liquid
纯化Protein G purified
缓冲液10mM PBS (pH 7.4), 0.2% BSA and 0.09% Sodium azide
抗菌剂0.09% Sodium azide
稳定剂0.2% BSA
浓度0.2 mg/ml
存放说明For continuous use, store undiluted antibody at 2-8°C for up to a week. For long-term storage, aliquot and store at -20°C or below. Storage in frost free freezers is not recommended. Avoid repeated freeze/thaw cycles. Suggest spin the vial prior to opening. The antibody solution should be gently mixed before use.
注意事项For laboratory research only, not for drug, diagnostic or other use.
生物信息
数据库连接

GeneID: 25473 Rat LAMB2

GeneID: 3913 Human LAMB2

GeneID: 520167 Bovine LAMB2

基因名称LAMB2
全名laminin, beta 2 (laminin S)
背景介绍Laminins, a family of extracellular matrix glycoproteins, are the major noncollagenous constituent of basement membranes. They have been implicated in a wide variety of biological processes including cell adhesion, differentiation, migration, signaling, neurite outgrowth and metastasis. Laminins, composed of 3 non identical chains: laminin alpha, beta and gamma (formerly A, B1, and B2, respectively), form a cruciform structure consisting of 3 short arms, each formed by a different chain, and a long arm composed of all 3 chains. Each laminin chain is a multidomain protein encoded by a distinct gene. Several isoforms of each chain have been described. Different alpha, beta and gamma chain isomers combine to give rise to different heterotrimeric laminin isoforms which are designated by Arabic numerals in the order of their discovery, i.e. alpha1beta1gamma1 heterotrimer is laminin 1. The biological functions of the different chains and trimer molecules are largely unknown, but some of the chains have been shown to differ with respect to their tissue distribution, presumably reflecting diverse functions in vivo. This gene encodes the beta chain isoform laminin, beta 2. The beta 2 chain contains the 7 structural domains typical of beta chains of laminin, including the short alpha region. However, unlike beta 1 chain, beta 2 has a more restricted tissue distribution. It is enriched in the basement membrane of muscles at the neuromuscular junctions, kidney glomerulus and vascular smooth muscle. Transgenic mice in which the beta 2 chain gene was inactivated by homologous recombination, showed defects in the maturation of neuromuscular junctions and impairment of glomerular filtration. Alternative splicing involving a non consensus 5' splice site (gc) in the 5' UTR of this gene has been reported. It was suggested that inefficient splicing of this first intron, which does not change the protein sequence, results in a greater abundance of the unspliced form of the transcript than the spliced form. The full-length nature of the spliced transcript is not known. [provided by RefSeq, Aug 2011]
细胞定位Basement membrane
研究领域Cell Biology and Cellular Response antibody; Neuroscience antibody; Signaling Transduction antibody
预测分子量196 kDa
参考文献

克隆号文献

Characterization of commercial laminin preparations from human placenta in comparison to recombinant laminins 2 (alpha2beta1gamma1), 8 (alpha4beta1gamma1), 10 (alpha5beta1gamma1).

WB / Human

Wondimu Z et al.
Matrix Biol.,  (2006)

publication_link

 

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