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FSIP2 Knockout Cell Lines

Gene: FSIP2

Official Full Name: fibrous sheath interacting protein 2provided by HGNC

Gene Summary: This gene encodes a protein associated with the sperm fibrous sheath. Genes encoding most of the fibrous-sheath associated proteins genes are transcribed only during the postmeiotic period of spermatogenesis. The protein encoded by this gene is specific to spermatogenic cells. Copy number variation in this gene may be associated with testicular germ cell tumors. Pseudogenes associated with this gene are reported on chromosomes 2 and X. [provided by RefSeq, Aug 2016]

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Products Background

Products

Catalog Number Product Name Species Gene Passage ratio Mycoplasma testing Price
KO21393 FSIP2 Knockout cell line (HeLa) Human FSIP2 1:3~1:6 Negative Online Inquiry

Background

FSIP2 Gene Knockout Cell Lines represent a pioneering advance in the field of gene editing and cellular biology. These cell lines have been specifically engineered to lack functional FSIP2 (Fibrous Structural Insulinoma Protein 2), which plays an integral role in various cellular processes, including the regulation of cellular signaling and structural integrity of cellular components. By utilizing CRISPR/Cas9 technology for the knockout, these cell lines provide researchers with a powerful tool to elucidate the functions of FSIP2 and its impacts on cellular behavior.

The primary mechanism by which FSIP2 Gene Knockout Cell Lines operate involves the complete disruption of the FSIP2 gene, resulting in the absence of its peptide products. This knockout system allows for detailed studies into the downstream effects of FSIP2 deficiency on cellular processes such as proliferation, apoptosis, response to oxidative stress, and potential involvement in cancer pathways. Furthermore, these cell lines serve as a valuable model for investigating the role of FSIP2 in disease states and for screening therapeutic compounds targeting related molecular pathways.

Scientifically, the application of FSIP2 Gene Knockout Cell Lines holds significant promise in advancing our understanding of cellular physiology and pathology. They can be used in both basic and applied research settings, including drug development, genetic disease modeling, and the dissection of multi-faceted gene interactions. Additionally, the ability to observe the phenotypic consequences of FSIP2 deletion allows for more robust experimentation in cellular and molecular biology.

Compared to alternative methods such as RNA interference or transient gene editing techniques, FSIP2 Gene Knockout Cell Lines offer the advantage of stable, long-term expression changes without the risk of off-target effects or transient expression variability. This stability ensures reproducibility and reliability in experimental results, which are critical for robust scientific conclusions.

For researchers and clinicians poised at the forefront of biological investigation, these knockout cell lines are invaluable tools. They provide clear insights into gene functions with potential applications ranging from basic research to translational medicine. By choosing FSIP2 Gene Knockout Cell Lines, users are positioned to make significant strides in their studies, ultimately contributing to the advancement of scientific knowledge and therapeutic strategies.

Our company specializes in the development and provision of high-quality biological products designed to empower researchers and expand the boundaries of current knowledge. With a commitment to innovation and scientific excellence, we offer a wide array of cutting-edge tools tailored to meet the evolving demands of the life sciences community.

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

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