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ELK Biotechnology
SKU:ES13869
PTF1A rabbit pAb
PTF1A rabbit pAb
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$250.00 USD
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Applications: WB;IHC
Reactivity: Human; Mouse;Rat
Source: Rabbit
Dilution: WB 1:500-2000;IHC-p 1:50-300
Immunogen: Synthesized peptide derived from human PTF1A AA range: 172-222
Storage_stability: -20°C/1 year
Clonality: Polyclonal
Isotype: IgG
Concentration: 1 mg/ml
Human_gene_id: 256297
Human_swiss_prot_no: Q7RTS3
Subcellular_location: Nucleus . Cytoplasm . In chronic pancreatitis associated with pancreas cancer preferentially accumulates in the cytoplasm of acinar/ductular complexes. In the cytoplasm loses its ability to form the PTF1 complex (By similarity). .
Background: This gene encodes a protein that is a component of the pancreas transcription factor 1 complex (PTF1) and is known to have a role in mammalian pancreatic development. The protein plays a role in determining whether cells allocated to the pancreatic buds continue towards pancreatic organogenesis or revert back to duodenal fates. The protein is thought to be involved in the maintenance of exocrine pancreas-specific gene expression including elastase 1 and amylase. Mutations in this gene cause cerebellar agenesis and loss of expression is seen in ductal type pancreas cancers. [provided by RefSeq, Jul 2008],
Reactivity: Human; Mouse;Rat
Source: Rabbit
Dilution: WB 1:500-2000;IHC-p 1:50-300
Immunogen: Synthesized peptide derived from human PTF1A AA range: 172-222
Storage_stability: -20°C/1 year
Clonality: Polyclonal
Isotype: IgG
Concentration: 1 mg/ml
Human_gene_id: 256297
Human_swiss_prot_no: Q7RTS3
Subcellular_location: Nucleus . Cytoplasm . In chronic pancreatitis associated with pancreas cancer preferentially accumulates in the cytoplasm of acinar/ductular complexes. In the cytoplasm loses its ability to form the PTF1 complex (By similarity). .
Background: This gene encodes a protein that is a component of the pancreas transcription factor 1 complex (PTF1) and is known to have a role in mammalian pancreatic development. The protein plays a role in determining whether cells allocated to the pancreatic buds continue towards pancreatic organogenesis or revert back to duodenal fates. The protein is thought to be involved in the maintenance of exocrine pancreas-specific gene expression including elastase 1 and amylase. Mutations in this gene cause cerebellar agenesis and loss of expression is seen in ductal type pancreas cancers. [provided by RefSeq, Jul 2008],
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