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Catalog Number: (89361-246)
Supplier: Genetex
Description: Several members of the growing TNF superfamily can regulate the elimination of immune cells by inducing apoptosis (1). TRAIL (TNF-related apoptosis-inducing ligand) or APO-2L is a member of the TNF superfamily that induces apoptosis by activating the death receptors DR4 and DR5 (2,3). TRAIL is attracting great interesting as an anti-cancer agent because it can induce apoptosis in a broad range of tumor cells, but only rarely in non-transformed cells, and independently of p53 status (2&4). For a time it was a it was unclear how TRAIL could induce apoptosis in tumor cells but not in non-transformed cells, while both of the cell types expressed the DR4 and DR5 death receptors. The discovery that DcR1 or TRID are mostly expressed on normal cells but not in most cancer cell lines helped to solve the puzzle, because these proteins act as decoys for the TRAIL protein (5).


Catalog Number: (470126-644)
Supplier: Edvotek
Description: Simulate Testing for the FH Gene


Catalog Number: (76083-672)
Supplier: Bioss
Description: Insulin receptor substrates (IRS) are responsible for several insulin related activities, such as glucose homeostasis, cell growth, cell transformation, apoptosis and insulin signal transduction. Serine/threonine phosphorylation of IRS1 has been demonstrated to be a negative regulator of insulin signaling and is responsible for its degradation, although IRS1 degradation pathways are not well understood. IRS1 has also been shown to be constitutively activated in cancers such as breast cancer, Wilm's tumors, and adrenal cortical carcinomas, thus making IRS1 phosphorylation and subsequent degradation an attractive therapeutic target. To date there have been four subtypes identified: IRS1, 2, 3 and 4, with IRS1 being widely expressed.


Catalog Number: (10354-144)
Supplier: Bioss
Description: Insulin receptor substrates (IRS) are responsible for several insulin related activities, such as glucose homeostasis, cell growth, cell transformation, apoptosis and insulin signal transduction. Serine/threonine phosphorylation of IRS1 has been demonstrated to be a negative regulator of insulin signaling and is responsible for its degradation, although IRS1 degradation pathways are not well understood. IRS1 has also been shown to be constitutively activated in cancers such as breast cancer, Wilm's tumors, and adrenal cortical carcinomas, thus making IRS1 phosphorylation and subsequent degradation an attractive therapeutic target. To date there have been four subtypes identified: IRS1, 2, 3 and 4, with IRS1 being widely expressed.


Catalog Number: (10354-162)
Supplier: Bioss
Description: Insulin receptor substrates (IRS) are responsible for several insulin related activities, such as glucose homeostasis, cell growth, cell transformation, apoptosis and insulin signal transduction. Serine/threonine phosphorylation of IRS1 has been demonstrated to be a negative regulator of insulin signaling and is responsible for its degradation, although IRS1 degradation pathways are not well understood. IRS1 has also been shown to be constitutively activated in cancers such as breast cancer, Wilm's tumors, and adrenal cortical carcinomas, thus making IRS1 phosphorylation and subsequent degradation an attractive therapeutic target. To date there have been four subtypes identified: IRS1, 2, 3 and 4, with IRS1 being widely expressed.


Catalog Number: (76083-678)
Supplier: Bioss
Description: Insulin receptor substrates (IRS) are responsible for several insulin related activities, such as glucose homeostasis, cell growth, cell transformation, apoptosis and insulin signal transduction. Serine/threonine phosphorylation of IRS1 has been demonstrated to be a negative regulator of insulin signaling and is responsible for its degradation, although IRS1 degradation pathways are not well understood. IRS1 has also been shown to be constitutively activated in cancers such as breast cancer, Wilm's tumors, and adrenal cortical carcinomas, thus making IRS1 phosphorylation and subsequent degradation an attractive therapeutic target. To date there have been four subtypes identified: IRS1, 2, 3 and 4, with IRS1 being widely expressed.


Catalog Number: (76084-636)
Supplier: Bioss
Description: This gene encodes a tumor suppressor protein containing transcriptional activation, DNA binding, and oligomerization domains. The encoded protein responds to diverse cellular stresses to regulate expression of target genes, thereby inducing cell cycle arrest, apoptosis, senescence, DNA repair, or changes in metabolism. Mutations in this gene are associated with a variety of human cancers, including hereditary cancers such as Li-Fraumeni syndrome. Alternative splicing of this gene and the use of alternate promoters result in multiple transcript variants and isoforms. Additional isoforms have also been shown to result from the use of alternate translation initiation codons (PMIDs: 12032546, 20937277).


Supplier: Biotium
Description: PS2, Monoclonal antibody, Clone: TFF1/1091, Host: Mouse, Species reactivity: Human, Monkey, Isotype: IgG3, kappa, Conjugate: CF568, Immunogen: synthetic peptide from C-terminus of human TFF1 protein, Synonyms: Breast Cancer Estrogen Inducible Protein, Application: IF, Size: 100uL

Supplier: Biotium
Description: Major Vault Protein (MVP), Monoclonal antibody, Clone: 1032, Host: Mouse, Species reactivity: Human, Isotype: IgG1, kappa, Conjugate: CF488A, Immunogen: Proteins precipitated from human breast cancer MCF-7 cells, Synonyms: Lung resistance-related protein, Size: 100uL

Supplier: Biotium
Description: Major Vault Protein (MVP), Monoclonal antibody, Clone: 1032, Host: Mouse, Species reactivity: Human, Isotype: IgG1, kappa, Conjugate: CF405S, Immunogen: Proteins precipitated from human breast cancer MCF-7 cells, Synonyms: Lung resistance-related protein, Size: 100uL

Catalog Number: (75791-760)
Supplier: Prosci
Description: CD274, also known as B7-H1 or programmed death ligand 1 (PD-L1), is a 40 kD type I transmembrane protein and a member of the B7 family within the immunoglobulin receptor superfamily. Programmed death-1 ligand-1 (PD-L1, CD274, B7-H1) has been identified as the ligand for the immunoinhibitory receptor programmed death-1(PD1/PDCD1) and has been demonstrated to play a role in the regulation of immune responses and peripheral tolerance. By binding to PD1 on activated T-cells and B-cells, PD-L1 may inhibit ongoing T-cell responses by inducing apoptosis and arresting cell-cycle progression. Accordingly, it leads to growth of immunogenic tumor growth by increasing apoptosis of antigen specific T cells and may contribute to immune evasion by cancers. PD-L1 thus is regarded as promising therapeutic target for human autoimmune disease and malignant cancers.


Catalog Number: (75791-904)
Supplier: Prosci
Description: CD274, also known as B7-H1 or programmed death ligand 1 (PD-L1), is a 40 kD type I transmembrane protein and a member of the B7 family within the immunoglobulin receptor superfamily. Programmed death-1 ligand-1 (PD-L1, CD274, B7-H1) has been identified as the ligand for the immunoinhibitory receptor programmed death-1(PD1/PDCD1) and has been demonstrated to play a role in the regulation of immune responses and peripheral tolerance. By binding to PD1 on activated T-cells and B-cells, PD-L1 may inhibit ongoing T-cell responses by inducing apoptosis and arresting cell-cycle progression. Accordingly, it leads to growth of immunogenic tumor growth by increasing apoptosis of antigen specific T cells and may contribute to immune evasion by cancers. PD-L1 thus is regarded as promising therapeutic target for human autoimmune disease and malignant cancers.


Catalog Number: (76098-264)
Supplier: Bioss
Description: C3orf36 (chromosome 3 open reading frame 36), also known as FLJ22173, MGC125760 or MGC125761, is a 165 amino acid protein encoded by a gene that maps to human chromosome 3p25.3. Chromosome 3 is made up of approximately 214 million bases encoding over 1,100 genes. Notably, there is a chemokine receptor gene cluster and a variety of human cancer related loci on chromosome 3. Particular regions of the chromosome 3 short arm are deleted in many types of cancer cells. Key tumor suppressing genes on chromosome 3 encode apoptosis mediator RASSF1, cell migration regulator HYAL1 and angiogenesis suppressor SEMA3B. Marfan Syndrome, porphyria, von Hippel-Lindau syndrome, osteogenesis imperfecta and Charcot-Marie-Tooth disease are a few of the numerous genetic diseases associated with chromosome 3.


Catalog Number: (76080-988)
Supplier: Bioss
Description: TUSC2/FUS1 is a novel tumor suppressor gene identified in the human chromosome 3p21.3 region where allele losses and genetic alterations occur early and frequently for many human cancers. Expression of TUSC2 protein is absent or reduced in the majority of lung cancers and premalignant lung lesions. Restoration of TUSC2 function in 3p21.3-deficient non-small cell lung carcinoma cells significantly inhibits tumor cell growth by induction of apoptosis and alteration of cell cycle kinetics. TUSC2 may induce apoptosis through the activation of the intrinsic mitochondrial-dependent and Apaf-1-associated pathways and inhibit the function of protein tyrosine kinases including EGFR, PDGFR, AKT, c-Abl, and c-Kit.


Catalog Number: (10426-472)
Supplier: Bioss
Description: GTPase-activating protein (GAP) for ARF1 and ARF5, which also shows strong GTPase activity. Isoform 1 participates in the prevention of neuronal apoptosis by enhancing PI3 kinase activity. It aids the coupling of metabotropic glutamate receptor 1 (GRM1) to cytoplasmic PI3 kinase by interacting with Homer scaffolding proteins, and also seems to mediate anti-apoptotic effects of NGF by activating nuclear PI3 kinase. Isoform 2 does not stimulate PI3 kinase but may protect cells from apoptosis by stimulating Akt. It also regulates the adapter protein 1 (AP-1)-dependent trafficking of proteins in the endosomal system. It seems to be oncogenic. It is overexpressed in cancer cells, prevents apoptosis and promotes cancer cell invasion.


Catalog Number: (10421-696)
Supplier: Bioss
Description: TUSC2/FUS1 is a novel tumor suppressor gene identified in the human chromosome 3p21.3 region where allele losses and genetic alterations occur early and frequently for many human cancers. Expression of TUSC2 protein is absent or reduced in the majority of lung cancers and premalignant lung lesions. Restoration of TUSC2 function in 3p21.3-deficient non-small cell lung carcinoma cells significantly inhibits tumor cell growth by induction of apoptosis and alteration of cell cycle kinetics. TUSC2 may induce apoptosis through the activation of the intrinsic mitochondrial-dependent and Apaf-1-associated pathways and inhibit the function of protein tyrosine kinases including EGFR, PDGFR, AKT, c-Abl, and c-Kit.


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