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Pgp9.5/UCHL1 [31A3]
Description Protein gene product 9.5 (PGP 9.5), also known as ubiquitin carboxyl-terminal hydrolase-1 (UCH-L1), is a 27-kDa protein originally isolated from whole brain extracts (1). Although PGP9.5 expression in normal tissues was originally felt to be strictly confined to neurons and neuroendocrine cells, it has been subsequently documented in distal renal tubular epithelium, spermatogonia, Leydig cells, oocytes, melanocytes, prostatic secretory epithelium, ejaculatory duct cells, epididymis, mammary epithelial cells, Merkel cells, and dermal fibroblasts. LK PGP 9.5 has been demonstrated immunostaining of a plethora of different mesenchymal neoplasms with this antibody. (Shipping Cost: €200.00) Host Mouse Application ELISA, Flow cytometry (FC), Immunohistochemistry (IHC), Western Blot (WB) Reactivity Human, Mouse, Rat, Bovine,Pig (Porcine) -
Pgp9.5/UCHL1 [31A3]
Description Protein gene product 9.5 (PGP 9.5), also known as ubiquitin carboxyl-terminal hydrolase-1 (UCH-L1), is a 27-kDa protein originally isolated from whole brain extracts (1). Although PGP9.5 expression in normal tissues was originally felt to be strictly confined to neurons and neuroendocrine cells, it has been subsequently documented in distal renal tubular epithelium, spermatogonia, Leydig cells, oocytes, melanocytes, prostatic secretory epithelium, ejaculatory duct cells, epididymis, mammary epithelial cells, Merkel cells, and dermal fibroblasts. LK PGP 9.5 has been demonstrated immunostaining of a plethora of different mesenchymal neoplasms with this antibody. (Shipping Cost: €200.00) Host Mouse Application ELISA, Flow cytometry (FC), Immunohistochemistry (IHC), Western Blot (WB) Reactivity Human, Mouse, Rat, Bovine,Pig (Porcine) -
SDHB (Succinate Dehydrogenase B) [SDHB/2382]
Description Succinate dehydrogenase (SDH) is Complex II in the mitochondria, vital for mitochondrial electron transport, as well as Krebs cycle function. SDH catalyzes the oxidation of succinate to fumarate and transfers electrons to ubiquinone through the coordination of its four subunits (SDHA, SDHB, SDHC, and SDHD). The SDH complex functions as a tumor suppressor. Loss of any subunit proteins lead to destabilization of the complex and tumor formation. SDH subunit B (SDHB) is ubiquitously expressed in normal tissues. Germline mutations in SDHB, SDHC, or SDHD genes predispose development of phaeochromocytoma, paraganglioma and gastrointestinal stromal tumor (GIST). SDHB immunohistochemistry is helpful in the identification of phaeochromocytomas, paragangliomas or GIST with SDHB mutation. (Shipping Cost: €200.00) Host Mouse Application ELISA, Flow cytometry (FC), Immunofluorescence (IF), Immunohistochemistry (IHC), Western Blot (WB) Reactivity Human -
SDHB (Succinate Dehydrogenase B) [SDHB/2382]
Description Succinate dehydrogenase (SDH) is Complex II in the mitochondria, vital for mitochondrial electron transport, as well as Krebs cycle function. SDH catalyzes the oxidation of succinate to fumarate and transfers electrons to ubiquinone through the coordination of its four subunits (SDHA, SDHB, SDHC, and SDHD). The SDH complex functions as a tumor suppressor. Loss of any subunit proteins lead to destabilization of the complex and tumor formation. SDH subunit B (SDHB) is ubiquitously expressed in normal tissues. Germline mutations in SDHB, SDHC, or SDHD genes predispose development of phaeochromocytoma, paraganglioma and gastrointestinal stromal tumor (GIST). SDHB immunohistochemistry is helpful in the identification of phaeochromocytomas, paragangliomas or GIST with SDHB mutation. (Shipping Cost: €200.00) Host Mouse Application ELISA, Flow cytometry (FC), Immunofluorescence (IF), Immunohistochemistry (IHC), Western Blot (WB) Reactivity Human -
SMAD4 (DPC4) [B-8]
Description Signaling from the ligand-activated membrane receptor serine/ threonine kinases to nuclear targets is mediated by a set of evolutionarily conserved proteins known as DCP4. Upon ligand binding, the receptors of the TGF-β family phosphorylate SMAD proteins (SMAD1 and SMAD 2). These proteins then move into the nucleus, where they activate transcription. To carry out this function, the receptor activated SMAD1 and 2 require association with the product of deleted in pancreatic carcinoma, locus 4 (DPC4), also known as SMAD4. SMAD4/DPC4 is also implicated as a tumor suppressor, since it is inactivated in more than half of pancreatic carcinomas and to a lesser extent in a variety of other cancers. The lack of SMAD4 expressionis is present in approximately 80% of cases of pancreatic adenocarcinoma, but rarely in endometrial (0%), colorectal (0%), ovarian (3%), lung (0%), breast (2% adenocarcinomas, and malignant melanoma (4%). SMAD4 is an important marker for confirming a diagnosis of pancreat Host Mouse Application ELISA, Flow cytometry (FC), Immunocytochemistry (ICC),Immunofluorescence (IF), Immunohistochemistry (IHC), Immunoprecipitation (IP), Western Blot (WB) Reactivity Human, Mouse, Rat -
SMAD4 (DPC4) [B-8]
Description Signaling from the ligand-activated membrane receptor serine/ threonine kinases to nuclear targets is mediated by a set of evolutionarily conserved proteins known as DCP4. Upon ligand binding, the receptors of the TGF-β family phosphorylate SMAD proteins (SMAD1 and SMAD 2). These proteins then move into the nucleus, where they activate transcription. To carry out this function, the receptor activated SMAD1 and 2 require association with the product of deleted in pancreatic carcinoma, locus 4 (DPC4), also known as SMAD4. SMAD4/DPC4 is also implicated as a tumor suppressor, since it is inactivated in more than half of pancreatic carcinomas and to a lesser extent in a variety of other cancers. The lack of SMAD4 expressionis is present in approximately 80% of cases of pancreatic adenocarcinoma, but rarely in endometrial (0%), colorectal (0%), ovarian (3%), lung (0%), breast (2% adenocarcinomas, and malignant melanoma (4%). SMAD4 is an important marker for confirming a diagnosis of pancreat Host Mouse Application ELISA, Flow cytometry (FC), Immunocytochemistry (ICC),Immunofluorescence (IF), Immunohistochemistry (IHC), Immunoprecipitation (IP), Western Blot (WB) Reactivity Human, Mouse, Rat -
Monoclonal antibody to human IFN-gamma (clone MD-1)
Description The monoclonal antibody to human IFN-γ (clone MD-1) was first described in 1985. It has shown to neutralize the antiviral activity of both natural and recombinant human IFN-γ and in a Western Blot the antibody reacts with the 20 kDa and 25 kDa polypeptides present in natural human IFN-γ. The MD-1 antibody has been descripted as useful in a sandwich ELISA and in ELISPOT assays. Further, the antibody has proven to cross react with chimpanzee and rhesus macaque IFN-γ and can be used for immunohistochemical staining of frozen tissues. The MD-1 antibody has been reported for use in intracellular flow cytometric analysis and in Luminex systems. Other available formats: biotin labeled (cat. no. CT218) and FITC labeled (cat. no. CT220). (Shipping cost: €30.00; Handling cost €30.00 - €50.00) Host Mouse Application ELISA,Enzyme-linked immunosorbent spot (ELISPOT),Flow cytometry (FC),Immunohistochemistry on frozen sections (IHC-Fs),Neutralization (Neut),Western Blot (WB) Reactivity Chimpanzee,Rhesus Macaque -
Monoclonal antibody to human IFN-gamma biotin (clone MD-1)
Description The monoclonal antibody to human IFN-γ was first described in 1985. It has shown to neutralize the antiviral activity of both natural and recombinant human IFN-γ and in a Western Blot the antibody reacts with the 20 kDa and 25 kDa polypeptides present in natural human IFN-γ. The MD-1 antibody has been descripted as useful in a sandwich ELISA. Further, the antibody has proven to cross react with rhesus macaque IFN-γ and can be used for immunohistochemical staining of frozen tissues. The MD-1 antibody has been reported for use in intracellular flow cytometric analysis. Other available formats: unconjugated (cat. no. CT215) and FITC labeled (cat. no. CT220). (Shipping cost: €30.00; Handling cost €30.00 - €50.00) Host Mouse Application ELISA,Flow cytometry (FC) Reactivity Chimpanzee,Rhesus Macaque Conjugate Biotin -
Monoclonal antibody to monkey IFN-gamma (clone MD-1)
Description The neutralizing monoclonal antibody to monkey IFN-γ (clone MD-1) was first described in 1985. The MD-1 antibody can be used in a sandwich ELISA and in ELISPOT assays. Further, the antibody has been descripted in immunohistochemical staining of frozen tissues of marmosets and in intracellular flow cytometric analysis. The MD-1 antibody has been reported to cross react with rhesus macaque, pig-tailed macaque, cynomogus monkey, baboon and African green monkey IFN-γ and can be used in Luminex systems. (Shipping cost: €30.00; Handling cost €30.00 - €50.00) Host Mouse Application ELISA,Enzyme-linked immunosorbent spot (ELISPOT),Flow cytometry (FC),Immunohistochemistry on frozen sections (IHC-Fs),Neutralization (Neut),Western Blot (WB) Reactivity Rhesus Macaque,Cynomolgus Monkey,Pig-tailed Macaque,Japanese Macaque,Crested Black Macaque,Barbary Macaque,Lion-tailed Macaque,Baboon,Mandrill,African Green Monkey (Chlorocebus),Black Mangabey