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STC1 Knockout Cell Lines

Gene: STC1

Official Full Name: stanniocalcin 1provided by HGNC

Gene Summary: This gene encodes a secreted, homodimeric glycoprotein that is expressed in a wide variety of tissues and may have autocrine or paracrine functions. The gene contains a 5' UTR rich in CAG trinucleotide repeats. The encoded protein contains 11 conserved cysteine residues and is phosphorylated by protein kinase C exclusively on its serine residues. The protein may play a role in the regulation of renal and intestinal calcium and phosphate transport, cell metabolism, or cellular calcium/phosphate homeostasis. Overexpression of human stanniocalcin 1 in mice produces high serum phosphate levels, dwarfism, and increased metabolic rate. This gene has altered expression in hepatocellular, ovarian, and breast cancers. [provided by RefSeq, Jul 2008]

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Products Background

Products

Catalog Number Product Name Species Gene Passage ratio Mycoplasma testing Price
KO02152 STC1 Knockout cell line (A549) Human STC1 1:3~1:4 Negative Online Inquiry

Background

STC1 Gene Knockout Cell Lines are specially designed cellular models created to elucidate the functional consequences of the STC1 gene, which encodes the protein stanniocalcin-1. These knockout cell lines are generated through precise gene editing technologies, such as CRISPR/Cas9, to completely disable the expression of the STC1 gene. This results in a loss-of-function context that researchers can use to study the biological roles of STC1 in various physiological and pathological processes, notably its involvement in cellular stress responses and calcium homeostasis.

The primary mechanisms through which these knockout cell lines operate involve the modulation of cellular signaling pathways that are typically governed by STC1. Research has demonstrated that STC1 plays a pivotal role in regulating apoptosis, cell survival, and the inflammatory response, making these cell lines invaluable for dissecting the gene's contribution to diseases such as cancer, metabolic disorders, and chronic inflammatory conditions.

In both research and clinical settings, STC1 Gene Knockout Cell Lines hold significant scientific importance. They can serve as powerful tools for drug discovery and development, providing insights into potential therapeutic targets that modulate STC1-related pathways. Moreover, understanding STC1’s impact in cell physiology can offer new strategies for the management of conditions linked to dysregulated calcium and phosphorus homeostasis.

What sets these knockout cell lines apart from alternative models is their specificity and precision in gene alteration, allowing for a higher degree of control over experimental conditions and more reliable reproducibility of results. These cell lines are rigorously validated for complete loss of STC1 functionality, ensuring that researchers can confidently correlate physiological changes with the absence of this gene.

Researchers and clinicians will find extraordinary value in STC1 Gene Knockout Cell Lines as they offer a platform to advance our understanding of the STC1's role in cellular mechanisms and disease states. With their ability to facilitate groundbreaking discoveries and support translational research, these cell lines are essential for innovative studies aimed at tackling complex health issues.

Our company specializes in the development of high-quality biological products tailored for advanced research applications. We bring extensive expertise in genetic engineering and cell line development, ensuring that our offerings, like STC1 Gene Knockout Cell Lines, meet the highest standards of scientific rigor and reliability.

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

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