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Anti-LAP-TGF-β1 Monoclonal Antibody-APC

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产品编号 TMAZ-0057A
别名 Transforming growth factor beta-1 proprotein

Anti-LAP-TGF-β1 Monoclonal Antibody-APC is a Biotin-conjugated rabbit antibody targeting LAP-TGF-β1. Anti-LAP-TGF-β1 Monoclonal Antibody-APC can be used in ELISA, FACS.

Anti-LAP-TGF-β1 Monoclonal Antibody-APC

Anti-LAP-TGF-β1 Monoclonal Antibody-APC

Rating icon 还可以
产品编号 TMAZ-0057A 别名 Transforming growth factor beta-1 proprotein

Anti-LAP-TGF-β1 Monoclonal Antibody-APC is a Biotin-conjugated rabbit antibody targeting LAP-TGF-β1. Anti-LAP-TGF-β1 Monoclonal Antibody-APC can be used in ELISA, FACS.

规格价格库存数量
25 μg¥ 3,5997日内发货
50 μg¥ 5,9987日内发货
100 μg¥ 8,9977日内发货
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产品介绍

生物活性
产品描述
Anti-LAP-TGF-β1 Monoclonal Antibody-APC is a Biotin-conjugated rabbit antibody targeting LAP-TGF-β1. Anti-LAP-TGF-β1 Monoclonal Antibody-APC can be used in ELISA, FACS.
别名Transforming growth factor beta-1 proprotein
Ig Type
Rabbit monoclonal IgG
交叉反应
Human
验证活性
Flow cytometry analysis of LAP-TGF-β1 overexpressed 440F cells with TMAZ-0057A, followed by goat anti-rabbit IgG-ABflo 647 (red line). The isotype control is rabbit IgG (black line).
应用
ELISA, FACS
推荐剂量
0.1-0.2 μg/10E6 cells for FACS; 1 ng/μl for ELISA
抗体种类
Monoclonal
宿主来源Rabbit
亚细胞定位Single-pass type I membrane
构建方式This antibody was produced from a rabbit immunized with purified, recombinant human extracellular domain of LAP-TGF-β1 protein.
纯化方式Protein A Affinity Purified
性状Liquid
缓冲液0.22 μm filtered solution in 20 mM HEPES7.4, 150 mM NaCl, 50% glycerol and 0.03% proclin.
纯度> 95% as determined by SDS-PAGE.
研究背景Transforming growth factor beta-1 proprotein: Precursor of the Latency-associated peptide (LAP) and Transforming growth factor beta-1 (TGF-beta-1) chains, which constitute the regulatory and active subunit of TGF-beta-1, respectively|Required to maintain the Transforming growth factor beta-1 (TGF-beta-1) chain in a latent state during storage in extracellular matrix (PubMed: 28117447). Associates non-covalently with TGF-beta-1 and regulates its activation via interaction with 'milieu molecules', such as LTBP1, LRRC32/GARP and LRRC33/NRROS, that control activation of TGF-beta-1 (PubMed: 19651619, PubMed: 19750484, PubMed: 2022183, PubMed: 22278742, PubMed: 8617200, PubMed: 8939931). Interaction with LRRC33/NRROS regulates activation of TGF-beta-1 in macrophages and microglia (Probable). Interaction with LRRC32/GARP controls activation of TGF-beta-1 on the surface of activated regulatory T-cells (Tregs) (PubMed: 19651619, PubMed: 19750484, PubMed: 22278742). Interaction with integrins (ITGAV: ITGB6 or ITGAV: ITGB8) results in distortion of the Latency-associated peptide chain and subsequent release of the active TGF-beta-1 (PubMed: 22278742, PubMed: 28117447)|Multifunctional protein that regulates the growth and differentiation of various cell types and is involved in various processes, such as normal development, immune function, microglia function and responses to neurodegeneration (By similarity). Activation into mature form follows different steps: following cleavage of the proprotein in the Golgi apparatus, Latency-associated peptide (LAP) and Transforming growth factor beta-1 (TGF-beta-1) chains remain non-covalently linked rendering TGF-beta-1 inactive during storage in extracellular matrix (PubMed: 29109152). At the same time, LAP chain interacts with 'milieu molecules', such as LTBP1, LRRC32/GARP and LRRC33/NRROS that control activation of TGF-beta-1 and maintain it in a latent state during storage in extracellular milieus (PubMed: 19651619, PubMed: 19750484, PubMed: 2022183, PubMed: 22278742, PubMed: 8617200, PubMed: 8939931). TGF-beta-1 is released from LAP by integrins (ITGAV: ITGB6 or ITGAV: ITGB8): integrin-binding to LAP stabilizes an alternative conformation of the LAP bowtie tail and results in distortion of the LAP chain and subsequent release of the active TGF-beta-1 (PubMed: 22278742, PubMed: 28117447). Once activated following release of LAP, TGF-beta-1 acts by binding to TGF-beta receptors (TGFBR1 and TGFBR2), which transduce signal (PubMed: 20207738). While expressed by many cells types, TGF-beta-1 only has a very localized range of action within cell environment thanks to fine regulation of its activation by Latency-associated peptide chain (LAP) and 'milieu molecules' (By similarity). Plays an important role in bone remodeling: acts as a potent stimulator of osteoblastic bone formation, causing chemotaxis, proliferation and differentiation in committed osteoblasts (By similarity). Can promote either T-helper 17 cells (Th17) or regulatory T-cells (Treg) lineage differentiation in a concentration-dependent manner (By similarity). At high concentrations, leads to FOXP3-mediated suppression of RORC and down-regulation of IL-17 expression, favoring Treg cell development (By similarity). At low concentrations in concert with IL-6 and IL-21, leads to expression of the IL-17 and IL-23 receptors, favoring differentiation to Th17 cells (By similarity). Stimulates sustained production of collagen through the activation of CREB3L1 by regulated intramembrane proteolysis (RIP) (PubMed: 25310401). Mediates SMAD2/3 activation by inducing its phosphorylation and subsequent translocation to the nucleus (PubMed: 25893292, PubMed: 29483653, PubMed: 30696809). Positively regulates odontoblastic differentiation in dental papilla cells, via promotion of IPO7-mediated translocation of phosphorylated SMAD2 to the nucleus and subsequent transcription of target genes (By similarity). Can induce epithelial-to-mesenchymal transition (EMT) and cell migration in various cell types (PubMed: 25893292, PubMed: 30696809)
偶联与修饰
偶联
APC
其他可选修饰符
Biotin/PE/AF488/AF555/AF647
可提供抗体种类
1
抗原信息
免疫原
LAP-TGF-β1
抗原种属
Human
基因ID
7040
Uniprot ID
研究领域
Immunology Research
化学信息
分子量150 kDa
存储&运输
储存方式For unconjugated and biotin antibody, store at -20°C or -80°C for long term. Avoid repeated freeze-thaw cycles. For APC/PE/AF647/AF555/AF488 conjugated antibody, store at 4°C, do not freeze.
运输方式For unconjugated and biotin antibody, shipping with dry ice. For APC/PE/AF647/AF555/AF488 conjugated antibody, shipping with blue ice.

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