Recombinant Human KLF17 protein
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Recombinant Human KLF17 protein is a Human Full Length protein, in the 2 to 389 aa range, expressed in Escherichia coli, with >90%, suitable for SDS-PAGE.
View Alternative Names
ZNF393, KLF17, Krueppel-like factor 17, Zinc finger protein 393
Reactivity data
Sequence info
Properties and storage information
Shipped at conditions
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
KLF17 influences cellular processes by modulating the expression of genes involved in cell differentiation and proliferation. It functions primarily as a transcriptional repressor acting independently and not as part of a larger multiprotein complex. Its regulatory role affects key cellular functions contributing to the control of epithelial-mesenchymal transition (EMT) which is critical during embryogenesis and cancer metastasis.
Pathways
KLF17 plays a significant role in the TGF-β signaling pathway which is important in numerous cellular functions such as growth and differentiation. KLF17 interacts with other transcription factors like SNAIL and TWIST influencing pathways that control EMT and metastasis. This regulation within TGF-β signaling highlights KLF17's role in maintaining cellular architecture and regulating processes critical to tissue development and disease progression.
Specifications
Form
Liquid
Additional notes
ab169919 was expressed in E.coli as inclusion bodies. The final product was refolded and chromatographically purified.
General info
Function
Transcription repressor that binds to the promoter of target genes and prevents their expression. Acts as a negative regulator of epithelial-mesenchymal transition and metastasis in breast cancer. Specifically binds the 5'-CACCC-3' sequence in the promoter of ID1, a key metastasis regulator in breast cancer, and repress its expression. May be a germ cell-specific transcription factor that plays important roles in spermatid differentiation and oocyte development (By similarity).
Sequence similarities
Belongs to the Sp1 C2H2-type zinc-finger protein family.
Subcellular localisation
Nucleus
Target data
Product promise
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