You Searched For: Antibodies

Explore our premier selection of antibodies designed to advance scientific discovery in diverse laboratory settings. Our comprehensive catalog features monoclonal, polyclonal, and recombinant antibodies, each meticulously verified for applications such as Western Blot, ELISA, ImmunoChemistry, and Flow Cytometry. Tailor your choice by antigen symbol and name, reactivity, clonality, conjugation, and host species to perfectly match your research needs. Enhance your experimental outcomes with our precision-engineered antibodies, optimized for accuracy and reliability.

Explore our premier selection of antibodies designed to advance scientific discovery in diverse laboratory settings. Our comprehensive catalog features monoclonal, polyclonal, and recombinant antibodies, each meticulously verified for applications such as Western Blot, ELISA, ImmunoChemistry, and Flow Cytometry. Tailor your choice by antigen symbol and name, reactivity, clonality, conjugation, and host species to perfectly match your research needs. Enhance your experimental outcomes with our precision-engineered antibodies, optimized for accuracy and reliability.


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Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1

Supplier: Enzo Life Sciences
Description: The proteasome is widely recognised as the central enzyme of non-lysosomal protein degradation. It is responsible for intracellular protein turnover and it is also critically involved in many regulatory processes and, in higher eukaryotes, in antigen processing. The 26S proteasome is the key enzyme of the ubiquitin/ATP-dependent pathway of protein degradation. The catalytic core of this unusually large (2000kDa, 450Å in length) complex is formed by the 20S proteasome, a barrel shaped structure shown by electron microscopy to comprise of four rings each containing seven subunits.  Based on sequence similarity, all fourteen 20S proteasomal subunit sequences may be classified into two groups, α and β, each group having distinct structural and functional roles. The α-subunits comprise the outer rings and the β-subunits the inner rings of the 20S proteasome. Observations of the eukaryotic proteasome and analysis of subunit sequences indicate that each ring contains seven different subunits (α7β7β7α7) with a member of each sub-family represented in each particle. Each subunit is located in a unique position within the α- or β-rings. Lmp2, Lmp7 and MECL are interferon gamma-inducible catalytic subunits of the 20S proteasome which may replace the constitutive catalytic subunits, delta, X and Z respectively, during proteasome biogenesis. Lmp2 and Lmp7 alter the cleavage site specificity of the 20S proteasome and are required for the efficient generation of T cell epitopes from a number of viral proteins and for optimal MHC class I cell surface expression.

Catalog Number: (89155-690)
Supplier: Enzo Life Sciences
Description: Host: Rabbit, Isotype: IgG


Catalog Number: (89165-028)
Supplier: Enzo Life Sciences
Description: Tau is the principal microtubule-associated protein located in axons in the nervous system where it participates in events including the elongation, stabilisation and bundling of microtubules. The tau family consists of six isoforms identified by the insertion of three or four partial repeats of 30-31 amino acids in the C-terminal region. Subcellular fractionation studies have revealed tau to be associated with the membrane fraction, as well as with the cytoskeletal fraction and there is some evidence that the N-terminal domain of tau may be responsible for membrane binding as well as interaction with other cellular components. Tau extracted from human fetal and neonatal brains is moderately phosphorylated with 5-9 phosphorylated serine/threonine residues per molecule. Normal adult human brain tau shows a marked reduction in phosphorylation, but in certain neurodegenerative diseases (tauopathies) tau becomes hyperphosphorylated (6-15 phosphates per tau molecule have been identified) and associates to form filamentous aggregates. In Alzheimer’s disease (AD) hyperphosphorylated tau polymerises to form a mixture of paired helical filaments (PHF) and straight filaments which accumulate and contribute to the formation of neurofibrillary tangles - one of the characteristic features of AD. It was reported in 1998 that tau could be tyrosine phosphorylated when co-transfected with the src-family protein tyrosine kinase fyn. In 2004 the same group, using phospho-specific antibodies, reported that fyn phosphorylated Tyr18 of brain tau at an early developmental stage in mice, but that tyrosine phosphorylated tau was undetectable in adult mice. However, they also showed that PHF preparations were reactive to the tau-pTyr18-specific antibodies, implicating a role for fyn – and possibly other tyrosine kinases - in the neurodegenerative process.


Catalog Number: (89153-592)
Supplier: Enzo Life Sciences
Description: Host: Rat, Isotype: IgG2a


Catalog Number: (89153-672)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1


Catalog Number: (89153-664)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1


Catalog Number: (89154-424)
Supplier: Enzo Life Sciences
Description: The GST Family
Glutathione S-transferases (GSTs) are a large multigen family of multifunctional enzymes, which play an important role in detoxification of potentially genotoxic chemicals, by catalyzing the conjugation of glutathione to a large number of hydrophobic and electrophilic compounds, including carcinogens. They also bind to a variety of nonsubstrate ligands. The GSTs are widely distributed in mammalian species and can be grouped into four classes, based on their biochemical, immunological and structural properties: alpha, mu, pi and theta.

GSTs are dimeric, mainly cytosolic, enzymes that have extensive ligand binding properties in addition to their catalytic role in detoxification. A separate microsomal class of GSTs exists which is quite distinct from the cytosolic GSTs, and is designated as "membrane-associated proteins in eicosanoid and glutathione metabolism" (MAPEG). The N-terminal region tends to be better conserved within classes as it includes an important part of the active site.GSTs are believed to play a role in cancer prevention, as the electrophilic compounds that are conjugated to glutathione could otherwise react with and modify cellular components such as DNA, thereby initiating carcinogenesis. On the other hand, GSTs might detoxify chemotherapeutic drugs in cancer cells, thus contributing to drug resistance.
In summary, GSTs are a group of enzymes which are centrally involved in drug metabolism and detoxification. Because of their role in detoxification, they have been implicated in drug sensitivity and resistance. They may also influence mutagenesis and carcinogenesis and thus, increased GST activity may become a useful cancer marker.
Since many GST genes are polymorphic, there has been considerable interest in determining whether particular allelic variants are also associated with an increase of risk for certain diseases.

Glutathione S-transferase-Pi
The GST-Pi class (phase II detoxification enzymes) is the most abundant of the human glutathione S-transferases family, a major group of detoxification enzymes and widely distributed in the human body.
In normal human tissues, the enzymes protect cells against reactions with glutathione and reactive oxygen species by reducing organic hydroperoxides via gluthathione peroxidase activity.
The role of GST-Pi in tumor growth and progression is less well known. It is reported to be variably expressed in breast cancer and is associated with estrogen receptor levels expressed by the tumor. Down-regulation of GST-Pi activity in a study done on a T cell line appears to favor apoptosis and inhibition of GST-Pi function induces apoptosis in rat hepatoma cells.
The importance in cancer research is clear, as GST-Pi has been implicated in protection against apoptosis and also suggested to have a role in jun kinase inhibition.
The majority of human tumor cell lines express significant amounts of class pi GST, which is why it is being investigated as a potential marker for various types of cancer. GST-Pi is thought to be associated with increased resistance to anticancer drugs. GST-Pi expression is under investigation as a prognostic indicator for resistance to chemotherapy and a marker of treatment resistance.


Catalog Number: (89153-696)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1


Catalog Number: (89155-006)
Supplier: Enzo Life Sciences
Description: The lymphocyte activation gene-3 (LAG-3, CD223), a member of the immunoglobulin superfamily (IgSF) related to CD4, binds to the major histocompatibility complex (MHC) class II molecules but with higher affinity than CD4. Several alternative mRNA splice-variants of human LAG-3 have been described, two of them encoding potential secreted forms: LAG-3V1 (i.e. the D1-D2 domains of the protein, 36 kDa) and LAG-3V3 (D1-D3, 52 kDa). The longer form was detected by ELISA in the serum of healthy individuals as well as of tuberculosis patients with a favorable outcome. LAG-3 expression by T cell clones correlated with IFN-γ production, and hence soluble LAG-3 has been suggested as a serological marker of Th1 responses.


Catalog Number: (89155-048)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1


Catalog Number: (89146-348)
Supplier: Enzo Life Sciences
Description: Host: Rabbit


Catalog Number: (89146-276)
Supplier: Enzo Life Sciences
Description: RAIDD (RIP-associated ICH-1 homologous protein with a death domain) is an adaptor molecule that mediates the action of cysteine proteases involved in apoptosis. In human cell lines, the caspase-2 adaptor RAIDD interacts selectively with caspase-2 through its caspase recruitment domain (CARD) and leads to caspase-2-dependent death. RAIDD overexpression induced caspase-2, CARD- and caspase-9-dependent apoptosis of PC12 cells and sympathetic neurons. Apoptosis correlated with the formation of discrete perinuclear aggregates. Both death and aggregates required the expression of full-length RAIDD. It has been reported that activation of caspase-2 occurs in a complex that contains the death domain–containing protein PIDD, whose expression is induced by p53, and the adaptor protein RAIDD.


Catalog Number: (89155-084)
Supplier: Enzo Life Sciences
Description: Host: Rat, Isotype: IgG1


Catalog Number: (89155-150)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG1


Catalog Number: (89155-160)
Supplier: Enzo Life Sciences
Description: Host: Mouse, Isotype: IgG2a


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