ZNF148 Products
ZBP-89, also known as BFCOL1, BERF1 and ZNF 148, is a zinc finger transcription factor that is universally expressed. ZBP-89, a Kruppel-like repressor protein, is the silencer element binding factor for Vimentin. ZBP-89 has been shown to bind to GC-rich DNA elements in promoters for gastrin, ornithine decarboxylase and the cyclin-dependent kinase inhibitor p21 (also designated Cip1 or WAF1). ZBP-89 expression is induced by trans-retinoic acid or butyrate, which also induces terminal differentiation of colon cancer cells. ZBP-89 cooperates with histone acetyltransferase coactivator p300 in the regulation of p21, a cyclin-dependent kinase inhibitor whose associated gene is a target gene of p53. ZBP-89 also regulates cell proliferation, in part, through its ability to directly bind the p53 protein and retard its nuclear export. Elevated levels of ZBP-89 induce growth arrest and apoptosis in human gastrointestinal cells.
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39 results for "ZNF148" in Products
39 results for "ZNF148" in Products
ZNF148 Products
ZBP-89, also known as BFCOL1, BERF1 and ZNF 148, is a zinc finger transcription factor that is universally expressed. ZBP-89, a Kruppel-like repressor protein, is the silencer element binding factor for Vimentin. ZBP-89 has been shown to bind to GC-rich DNA elements in promoters for gastrin, ornithine decarboxylase and the cyclin-dependent kinase inhibitor p21 (also designated Cip1 or WAF1). ZBP-89 expression is induced by trans-retinoic acid or butyrate, which also induces terminal differentiation of colon cancer cells. ZBP-89 cooperates with histone acetyltransferase coactivator p300 in the regulation of p21, a cyclin-dependent kinase inhibitor whose associated gene is a target gene of p53. ZBP-89 also regulates cell proliferation, in part, through its ability to directly bind the p53 protein and retard its nuclear export. Elevated levels of ZBP-89 induce growth arrest and apoptosis in human gastrointestinal cells.
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| Reactivity: | Human, Mouse, Rat |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC, WB, ICC/IF |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC, ICC/IF, ChIP |
| Reactivity: | Human |
| Details: | Rabbit IgG Polyclonal |
| Applications: | IHC, WB, ICC/IF |
| Reactivity: | Human |
| Details: | Rabbit Polyclonal |
| Applications: | IHC, WB |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human |
| Details: | Rabbit Polyclonal |
| Applications: | WB |
| Applications: | WB, ELISA, MA, AP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |
| Reactivity: | Human, Mouse |
| Details: | Rabbit IgG Polyclonal |
| Applications: | WB, IP |