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抗Human s100 抗体:
抗Rat (Rattus) s100 抗体:
抗Mouse (Murine) s100 抗体:
Bullfrog (Rana catesbeiana) Polyclonal s100 Primary Antibody for IEM, ICC - ABIN789006
Correale, Procopio, Celio, Caraglia, Genua, Coppola, Pepe, Normanno, Vecchio, Palmieri: Phorbol 12-myristate 13-acetate induces resistance of human melanoma cells to natural-killer- and lymphokine-activated-killer-mediated cytotoxicity. in Cancer immunology, immunotherapy : CII 1992
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Human Monoclonal s100 Primary Antibody for ELISA - ABIN966986
Koenig, Wojcieszyn, Weeks, Modiano: Expression of S100a, vimentin, NSE, and melan A/MART-1 in seven canine melanoma cells lines and twenty-nine retrospective cases of canine melanoma. in Veterinary pathology 2001
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Cow (Bovine) Monoclonal s100 Primary Antibody for FACS, ICC - ABIN4351558
Bikmaz, Cosar, Kurtkaya-Yapicier, Iplikcioglu, Gokduman: Recurrent solitary fibrous tumour in the cerebellopontine angle. in Journal of clinical neuroscience : official journal of the Neurosurgical Society of Australasia 2005
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Human Monoclonal s100 Primary Antibody for IHC, ELISA - ABIN1724663
Pingerelli, Mizukami, Wagner, Bartnicki, Oliver: Investigation of the Ca2(+)-dependent interaction of trifluoperazine with S100a: a 19F NMR and circular dichroism study. in Journal of protein chemistry 1990
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Human Monoclonal s100 Primary Antibody for ELISA, WB - ABIN562757
Brunelli, Segala, Delahunt, Parolini, Bersani, Cheng, Eble, Chilosi, Gobbo, Martignoni: FISH scoring on paraffin sections versus single-cell suspension for chromophobe renal carcinoma and renal oncocytoma. in Anticancer research 2011
Human Polyclonal s100 Primary Antibody for IHC, IHC (p) - ABIN4351555
Peluffo, Solari-Saquieres, Negro-Demontel, Francos-Quijorna, Navarro, López-Vales, Sayós, Lago: CD300f immunoreceptor contributes to peripheral nerve regeneration by the modulation of macrophage inflammatory phenotype. in Journal of neuroinflammation 2015
Cow (Bovine) Polyclonal s100 Primary Antibody for IHC (fro), IHC (p) - ABIN2476410
Moore: A soluble protein characteristic of the nervous system. in Biochemical and biophysical research communications 1970
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Human Monoclonal s100 Primary Antibody for ELISA, WB - ABIN2476406
Valencia, Ormazábal, Zandueta, Luis-Ravelo, Antón, Pajares, Agorreta, Montuenga, Martínez-Canarias, Leitinger, Lecanda: Inhibition of collagen receptor discoidin domain receptor-1 (DDR1) reduces cell survival, homing, and colonization in lung cancer bone metastasis. in Clinical cancer research : an official journal of the American Association for Cancer Research 2012
Cow (Bovine) Polyclonal s100 Primary Antibody for IHC (fro), IHC (p) - ABIN2476408
Lauriola, Michetti, Sentinelli, Cocchia: Detection of S-100 labelled cells in nasopharyngeal carcinoma. in Journal of clinical pathology 1985
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Study provides evidence that mir-363 and its target S100A1 are under the regulatory function of FOXD2-AS1 aggravating nasopharyngeal carcinoma carcinogenesis.
X-ray crystal structure of human calcium-bound S100A1 has been reported.
a molecular mechanism for the potential regulation of TRPM1 (显示 TRPM1 抗体) by S100A1
Data suggest that calcium signaling plays important role in prevention of protein misfolding; complexes of S100A1 and STIP1 (显示 STIP1 抗体) are key players in this pathway; the stoichiometry of S100A1/STIP1 (显示 STIP1 抗体) interaction appears to be three S100A1 dimers plus one STIP1 (显示 STIP1 抗体) monomer; each S100A1-STIP1 (显示 STIP1 抗体)-binding interaction is entropically driven. (S100A1 = S100 calcium binding protein A1; STIP1 (显示 STIP1 抗体) = stress-induced-phosphoprotein 1 (显示 STIP1 抗体)) [REVIEW]
Data suggest that three dimers of S100A1 (S100 calcium binding protein A1) associate with one molecule of STIP1 (显示 STIP1 抗体) (stress-inducible phosphoprotein 1) in a calcium-dependent manner; individual STIP1 (显示 STIP1 抗体) TPR (tetratricopeptide repeat) domains, TPR1, TPR2A and TPR2B, bind a single S100A1 dimer with significantly different affinities; TPR2B domain possesses highest affinity for S100A1.
Results identified amino acids motif in S100A1 for protein binding to 2-oxohistidine which appears to be an evolutionarily conserved capacity from bacteria to human.
a correlation between S100B (显示 S100B 抗体) + A1-positive Human Articular Chondrocytes in monolayer culture and their neochondrogenesis capacity in pellet culture, is reported.
CaM and S100A1 can concurrently bind to and functionally modulate RyR1 and RyR2, but this does not involve direct competition at the RyR CaM binding site.
In line with these observations, rhesus monkey rhadinovirus infection resulted in rapid degradation of SP100 (显示 SP100 抗体), followed by degradation of PML (显示 PML 抗体) and the loss of ND10 structures, whereas the protein levels of ATRX (显示 ATRX 抗体) and DAXX (显示 DAXX 抗体) remained constant.
molecular dynamics simulations of S100A1 in the apo (显示 C9orf3 抗体)/holo (Ca(2 (显示 CA2 抗体)+)-free/bound) states, is reported.
identified S100A1, but not calmodulin (显示 KRIT1 抗体) or other S100 proteins, as a potent molecular chaperone (显示 HSP90AA1 抗体) and a new member of the Hsp70 (显示 HSP70 抗体)/Hsp90 (显示 HSP90 抗体) multichaperone complex (S100A1)
Results suggest that S100A1 can act as a linker between the calcium and redox signalling pathways.
beta-mercaptoethanol modification of apo (显示 C9orf3 抗体)-S100A1 makes its structure more similar to that of holo-S100A1, so that it becomes much better adjusted for calcium coordination.
Data (including data from studies using knockout mice) suggest that S100A1 (S-100 calcium-binding protein (显示 GUCA1B 抗体) A1 (显示 BCL2A1 抗体), alpha chain (显示 FCGRT 抗体)) is involved in protein kinase A- (RIIalpha and RIIbeta (显示 PRKAR2B 抗体))-dependent signaling resulting in nuclear redistribution/influx of HDAC4 (histone deacetylase 4 (显示 HDAC5 抗体)) in skeletal muscle fibers.
S100A1-KO exhibited increased right ventricular (RV) weight and elevated RV pressure in the absence of altered left ventricular filling pressures, increase in wall thickness of muscularized pulmonary arteries and a reduction in microvascular perfusion.
S100A1 and S100B (显示 S100B 抗体) are dispensable for endochondral ossification during skeletal development.
S100A1 ablationalso reduced plaque associated and increased non-plaque associated PO4-Akt and PO4-GSK3beta staining.
Patients with acute myocardial infarction (MI) showed significantly increased S100A1 serum levels. Experimental MI in mice induced comparable S100A1 release. S100A1 signaling in cardiac fibroblasts occurs through endosomal TLR4 (显示 TLR4 抗体)/MyD88 (显示 MYD88 抗体).
hypoxia-induced MiR (显示 MLXIP 抗体)-138 is an essential mediator of EC dysfunction via its ability to target the 3'UTR (显示 UTS2R 抗体) of S100A1.
Report downregulation of S100A1 expression in critical limb ischemia impairs postischemic angiogenesis via compromised proangiogenic endothelial cell function and nitric oxide synthase (显示 NOS 抗体) regulation.
S100A1 and calmodulin bind to an overlapping domain on the ryanodine receptor (显示 RYR3 抗体) type 1 to tune the Ca2 (显示 CA2 抗体)+ release process, and thereby regulate skeletal muscle function. (Review)
The RyR1 (显示 RYR1 抗体)-L3625D mutation removed both an early activating effect of S100A1 and calmodulin and delayed the suppression of RyR1 (显示 RYR1 抗体) Ca2 (显示 CA2 抗体)+ release, providing new insights into calmodulin and S100A1 regulation of skeletal muscle excitation-contraction coupling.
Data suggest that the absence of S100A1 suppresses physiological AP-induced Ca(2 (显示 CA2 抗体)+) release flux, resulting in impaired contractile activation and force production in skeletal muscle.
The protein encoded by this gene is a member of the S100 family of proteins containing 2 EF-hand calcium-binding motifs. S100 proteins are localized in the cytoplasm and/or nucleus of a wide range of cells, and involved in the regulation of a number of cellular processes such as cell cycle progression and differentiation. S100 genes include at least 13 members which are located as a cluster on chromosome 1q21. This protein may function in stimulation of Ca2+-induced Ca2+ release, inhibition of microtubule assembly, and inhibition of protein kinase C-mediated phosphorylation. Reduced expression of this protein has been implicated in cardiomyopathies.
S-100 protein alpha chain
, S-100 protein subunit alpha
, S100 alpha
, S100 calcium-binding protein A1
, S100 protein, alpha polypeptide
, protein S100-A1
, S100 calcium binding protein A1
, Protein S100-A1
, protein S100-A13