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anti-Human FURIN Antibodies:
anti-Mouse (Murine) FURIN Antibodies:
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Cow (Bovine) Polyclonal FURIN Primary Antibody for ELISA, WB - ABIN2473713
Bray: Notch signalling: a simple pathway becomes complex. in Nature reviews. Molecular cell biology 2006
Human Polyclonal FURIN Primary Antibody for ELISA, WB - ABIN4312814
Jin, Wang, Millar, Quertermous, Rothblat, Glick, Rader: Hepatic proprotein convertases modulate HDL metabolism. in Cell metabolism 2007
Silencing furin genes reduced the survival of M. marinum-infected zebrafish embryos. A mycobacterial infection upregulated furinA in adult zebrafish.
Genetic analysis of fin development in zebrafish identifies furin as potential novel fraser syndrome disease genes
furin genes may function partially redundantly to activate Endothelin1 signaling in craniofacial patterning
Using protein X-ray crystallography, this study investigated the extended substrate binding site of furin in complex with three peptide-derived inhibitors at up to 1.9 A resolution.
In squamous cell carcinoma of the cervix (SCCC), higher levels of MMP-14 (show MMP14 Antibodies) expression were established in tumor cells, as evidenced by IHC (+3) and RT-PCR.Furin activity in the tumor was much higher than that in normal tissues. The expression of TIMP-2 (show TIMP2 Antibodies) mRNA was sufficiently obvious in both the tumor and normal tissues to the bottom of the uterine cavity.
these findings identify furin as an important factor for aRMS progression and survival. Thus, we propose furin as a novel therapeutic target for treatment of aRMS.
Novel protein crystallographic structures of the prototypical PC family member furin in different functional states were determined to 1.8-2.0 A.
findings uncover a role of ERK1 (show MAPK3 Antibodies) in the regulation of furin activity by supporting a self-sustaining loop for high TGF-beta (show TGFB1 Antibodies) activity in glioma-initiating cells.
Divers studies have confirmed the expression of furin in a large spectrum of cancers. Functional studies modulating its activity uncovered its importance for the processing of many cancer-related substrates and strongly indicate that high furin activity promotes the malignant phenotype of cancer cells. [review]
Furin plays an important role in the malignant phenotype of rhabdomyosarcoma cells by activating proteins involved in tumor growth, vascularization, metastasis and invasion.
Furin promotes epithelial-mesenchymal transition in pancreatic cancer cells probably via Hippo-YAP (show YAP1 Antibodies) pathway and may be a potential target for anti-pancreatic cancer.
Results suggest that (pro)renin receptor (show ATP6AP2 Antibodies) (s(P)RR (show ATP6AP2 Antibodies)) is generated by sequential processing by site-1 protease (S1P (show MBTPS1 Antibodies)) and furin protein.
our study provides evidence that furin activity and epithelial-mesenchymal transition are potential indicators of the aggressive phenotype in recurrent laryngeal cancer after irradiation and that furin is a potentially useful target against laryngeal cancer
The developmental arrest of early secondary follicles following furin disruption might be rooted in the loss of the mature form of ADAMTS1 (show ADAMTS1 Antibodies) and compromised proliferation of granulosa cells in mutant mice.
FURIN has an anti-inflammatory function in LysM+ myeloid cells in vivo.
The proprotein convertase furin is responsible for pro-OCN maturation in vitro and in vivo.
Studied the impact of Furin inhibition on the development and progression of hepatocellular carcinoma.
PC7 (show PCSK7 Antibodies) and the related proteases Furin and Pace4 (show PCSK6 Antibodies) regulate E-cadherin (show CDH1 Antibodies) function during blastocyst formation.
work confirms the hypothesis that the TCR-regulated protease FURIN plays an important role in T cell activation and that it can specifically modulate TCR-activated transactivation
the role of serpinB8 (show SERPINB8 Antibodies)/furin in obesity-associated chronic inflammation
Furin has a role as the primary in vivo convertase of ANGPTL3 (show ANGPTL3 Antibodies) and endothelial lipase (show LIPG Antibodies) in hepatocytes
overexpression of PCs, furin and PC5 (show PCSK5 Antibodies), but not PC7 (show PCSK7 Antibodies), which are all expressed in SMC (show DYM Antibodies), increase PKGI (show PRKG1 Antibodies) cleavage in a dose-dependent manner
Point mutation of the furin cleavage site at the S2' position of the S protein enables the virus to infect cultured cells independently of trypsin.
The protein encoded by this gene belongs to the subtilisin-like proprotein convertase family. The members of this family are proprotein convertases that process latent precursor proteins into their biologically active products. This encoded protein is a calcium-dependent serine endoprotease that can efficiently cleave precursor proteins at their paired basic amino acid processing sites. Some of its substrates are: proparathyroid hormone, transforming growth factor beta 1 precursor, proalbumin, pro-beta-secretase, membrane type-1 matrix metalloproteinase, beta subunit of pro-nerve growth factor and von Willebrand factor. It is also thought to be one of the proteases responsible for the activation of HIV envelope glycoproteins gp160 and gp140. This gene is thought to play a role in tumor progression. The use of alternate polyadenylation sites has been found for this gene.
furin (paired basic amino acid cleaving enzyme)
, furin A
, furin B
, FES upstream region
, dibasic processing enzyme
, dibasic-processing enzyme
, furin, membrane associated receptor protein
, paired basic amino acid residue-cleaving enzyme
, proprotein convertase subtilisin/kexin type 3
, paired basic amino acid residue cleaving enzyme
, prohormone convertase 3
, subtilisin pro-protein processing enzyme
, paired basic amino acid cleaving enzyme
, trans Golgi network protease furin
, Paired basic amino acid cleaving enzyme (furin)
, Proprotein convertase subtilisin/kexin type 3 (paired basic amino acid cleaving enzyme, furin, membrane associated receptor protein)
, proprotein convertase subtilisin/kexin type3