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anti-Human Cathepsin B Antibodies:
anti-Mouse (Murine) Cathepsin B Antibodies:
anti-Rat (Rattus) Cathepsin B Antibodies:
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Human Polyclonal Cathepsin B Primary Antibody for FACS, IHC - ABIN222979
Rybicka, Balce, Chaudhuri, Allan, Yates: Phagosomal proteolysis in dendritic cells is modulated by NADPH oxidase in a pH-independent manner. in The EMBO journal 2012
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Human Polyclonal Cathepsin B Primary Antibody for WB - ABIN3042773
Zhang, Mai, Yang, Dong, Zheng, Yang: CTSB promotes porcine preadipocytes differentiation by degrading fibronectin and attenuating the Wnt/β-catenin signaling pathway. in Molecular and cellular biochemistry 2014
Show all 2 Pubmed References
Human Polyclonal Cathepsin B Primary Antibody for ICC, IF - ABIN4288227
Wang, Chen, Fernandez-Del Castillo, Yilmaz, Deshpande: Heterogeneity in signaling pathways of gastroenteropancreatic neuroendocrine tumors: a critical look at notch signaling pathway. in Modern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc 2013
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Human Polyclonal Cathepsin B Primary Antibody for IHC (p), IP - ABIN1996943
Gogiel, Wola?ska, Galewska, Kinalski, Sobolewski, Romanowicz: Cathepsin B in human myometrium and in uterine leiomyomas at various stages of tumour growth. in European journal of obstetrics, gynecology, and reproductive biology 2015
Mouse (Murine) Polyclonal Cathepsin B Primary Antibody for IHC, ELISA - ABIN238948
Tedelind, Poliakova, Valeta, Hunegnaw, Yemanaberhan, Heldin, Kurebayashi, Weber, Kopitar-Jerala, Turk, Bogyo, Brix: Nuclear cysteine cathepsin variants in thyroid carcinoma cells. in Biological chemistry 2010
Human Polyclonal Cathepsin B Primary Antibody for ID, WB - ABIN2477930
Martin, Moffitt, McDowell, Greenan, Bright-Thomas, Jones, Webb, Elborn: Association of airway cathepsin B and S with inflammation in cystic fibrosis. in Pediatric pulmonology 2010
Human Polyclonal Cathepsin B Primary Antibody for IF (p), IHC (p) - ABIN687412
Liu, Tang, Zhang, Li, Yuan, Wang: Autophagy activation aggravates neuronal injury in the hippocampus of vascular dementia rats. in Neural regeneration research 2014
Cathepsin B is involved in the programmed cell death of the fat body during B. mori metamorphosis, and that cathepsin B and cathepsin B contribute to B (show TDO2 Antibodies). mori metamorphosis.
in CTSB knockout (KO) mice, running did not enhance adult hippocampal neurogenesis and spatial memory function. Interestingly, in Rhesus monkeys and humans, treadmill exercise elevated CTSB in plasma.
SNPs in NLRP3 (show NLRP3 Antibodies) and CTSB, associated with an increased NLRP3 (show NLRP3 Antibodies)-inflammasome activation, are protective against the development of active pulmonary tuberculosis.
cathepsin B activity assays identified secreted cathepsin B as responsible for apoA-I (show APOA1 Antibodies) cleavage at Ser (show SIGLEC1 Antibodies)(228) Importantly
ctsB enhanced neutrophil migration though a putative effect on pseudopod retraction rates.
We have shown that keratolytic winter erythema in South African and Norwegian families is caused by two different tandem duplications in a non-coding genomic region upstream of CTSB.
CtsB/L as major regulators of lysosomal function and demonstrate that CtsB/L may play an important role in intracellular cholesterol trafficking and in degradation of the key AD proteins
Report non-proteolytic cathepsin B functiona in tumor cell lines.
cathepsin B (CTSB) inhibition or expression of a CTSB-resistant Dab2 (show DAB2 Antibodies) mutant maintains Dab2 (show DAB2 Antibodies) expression and shifts long-term TGF-beta (show TGFB1 Antibodies)-treated cells from autophagy to apoptosis
cathepsin L (show CTSL1 Antibodies) and cathepsin B as the lysosomal cysteine proteases that activate the PEDV spike.
Results showed an increase level of CTSL (show CTSL1 Antibodies), and CTSB in dilated cardiomyopathy patients which correlates with reduced left ventricular ejection fraction.
Using quenched activity-based probes, we identified mouse cathepsin B (CtsB), which is expressed in the lower regions of the hair follicle, as an additional target of mouse Cst6 (show CST6 Antibodies)
After phagocytosis, particles can disrupt lysosomes, and inhibitor studies have suggested that the resulting release of a lysosomal protease-cathepsin B-into the cytosol somehow activates NLRP3 (show NLRP3 Antibodies).
the roles of CTSB/S and SIRT1 (show SIRT1 Antibodies) in the regulation of hepatic inflammation using primary parenchymal and non-parenchymal hepatic cell types and cell lines.
Mice and macrophages lacking cathepsin B activity had increased resistance to the cytosolic bacterial pathogen Francisella novicida Genetic deletion.
Exposure of J774A.1 cells to HOCl or HOSCN resulted in a significant decrease in the activity of the Cys (show DNAJC5 Antibodies)-dependent cathepsins B and L, but not the Asp (show C3 Antibodies)-dependent cathepsin D (show CTSD Antibodies).
study brings forth a yet unappreciated role for Cathepsin B in regulating T cell responses during Leishmania major infection
Our results suggest that the Mucopolysaccharidosis type I mice have progressive heart failure and valve disease, which may be caused by cathepsin B overexpression.
The cathepsin B deserves further evaluation as therapeutic targets to develop disease modifying drugs to treat Alzheimer's disease.
evidence shows cathepsin B activity may not be redox regulated; however, the stability of the enzyme at neutral pH is dependent on redox potential, and on the presence of oxidising agents.
Overexpressing cathepsin B reduced the Vascular Endothelial Growth Factor-dependent tube response
The peptides, all of which contain a C-terminal free acid, were tested as inactivators of bovine cathepsin B, in an attempt at exploiting the known and, amongst the cysteine proteinases, unique carboxy dipeptidyl peptidase (show ACE Antibodies) activity of the protease.
Findings showed that CTSB facilitates adipogenesis, and its effect is associated with fibronectin degradation and Wnt/b-catenin signaling pathway.
CTSB may be required to remodel endometrial and placental tissues for close apposition between maternal and fetal vasculatures and to facilitate transplacental transport of gases, micronutrients (amino acids, glucose), and macromolecules (proteins).
The protein encoded by this gene is a lysosomal cysteine proteinase composed of a dimer of disulfide-linked heavy and light chains, both produced from a single protein precursor. It is also known as amyloid precursor protein secretase and is involved in the proteolytic processing of amyloid precursor protein (APP). Incomplete proteolytic processing of APP has been suggested to be a causative factor in Alzheimer disease, the most common cause of dementia. Overexpression of the encoded protein, which is a member of the peptidase C1 family, has been associated with esophageal adenocarcinoma and other tumors. At least five transcript variants encoding the same protein have been found for this gene.
, cathepsin B-2744
, cathepsin B-1674
, cathepsin B-84
, cathepsin B-3098
, cathepsin B-16D2
, cathepsin B-1874
, cathepsin B-3483
, cathepsin B-10270
, APP secretase
, amyloid precursor protein secretase
, cathepsin B1
, cysteine protease