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WIF1 Knockout Cell Lines

Gene: WIF1

Official Full Name: WNT inhibitory factor 1provided by HGNC

Gene Summary: The protein encoded by this gene functions to inhibit WNT proteins, which are extracellular signaling molecules that play a role in embryonic development. This protein contains a WNT inhibitory factor (WIF) domain and five epidermal growth factor (EGF)-like domains, and is thought to be involved in mesoderm segmentation. This gene functions as a tumor suppressor gene, and has been found to be epigenetically silenced in various cancers. [provided by RefSeq, Jun 2010]

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Products Background

Products

Catalog Number Product Name Species Gene Passage ratio Mycoplasma testing Price
KO11635 WIF1 Knockout cell line (HEK293) Human WIF1 1:3~1:6 Negative Online Inquiry

Background

WIF1 Gene Knockout Cell Lines are specifically engineered cellular models that harbor targeted deletions of the WIF1 gene, a pivotal component in the modulation of signaling pathways associated with Wnt proteins. These knockout cell lines facilitate the investigation of the Wnt signaling pathway, which plays a crucial role in various biological processes including embryogenesis, cell differentiation, and the maintenance of stem cell characteristics. The absence of WIF1 allows researchers to study the resulting alterations in cellular behavior, gene expression, and response to external stimuli, providing insights into developmental biology and disease mechanisms.

Key functions of the WIF1 knockout cell lines include the elucidation of the role of WIF1 in inhibiting Wnt signaling. WIF1 binds to Wnt proteins, sequestering them and preventing their interaction with frizzled receptors, thus inhibiting canonical Wnt signaling. By utilizing these knockout cell lines, researchers are equipped to analyze the consequences of Wnt pathway dysregulation, which is a characteristic of various cancers, metabolic disorders, and other diseases.

The scientific importance of WIF1 Gene Knockout Cell Lines extends to both basic and applied research. In clinical settings, understanding the downstream effects of Wnt signaling can aid in designing targeted therapies for conditions where Wnt pathway modulation is beneficial. The utility of these cell lines in drug screening and biomarker discovery is significant, offering a robust platform for evaluating novel therapeutic agents.

Distinct advantages of the WIF1 Gene Knockout Cell Lines include their precise genetic alterations and the ability to provide reproducible results. Compared to traditional methods such as overexpression or chemical inhibition, the gene knockout approach allows for a clearer dissection of biological pathways, minimizing off-target effects and providing a more authentic representation of the in vivo environment.

Researchers, clinicians, and pharmaceutical developers will find that these knockout lines are invaluable tools for advancing our understanding of the complexities of Wnt signaling and its implications in health and disease. At [Company Name], we pride ourselves on our extensive expertise in developing high-quality, customized biological products that meet the diverse needs of the scientific community, ensuring that our customers can achieve their research goals with confidence.

Please note that all services are for research use only. Not intended for any clinical use.

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