
Ubigene gene knockout cell lines mediated by optimized CRISPR-Cas9 technology provide reliable in vitro models for investigating gene function, signaling pathways, disease mechanisms, and therapeutic targets.
ABCC1 (ATP binding cassette subfamily C member 1) encodes a member of the multidrug resistance-associated protein family of ATP-binding cassette transporters. It functions as a multispecific organic anion transporter and transports glutathione conjugates, cysteinyl leukotrienes, glucuronides, sulfate conjugates, and other organic anions across cellular membranes. ABCC1 therefore contributes to membrane transport, cellular detoxification, and handling of diverse endogenous and xenobiotic compounds.
Human cardiac ventricular cells are represented by AC16, an immortalized cell line derived from primary human ventricular tissue. The cells were generated by fusion of primary adult ventricular cardiomyocytes with a human fibroblast-like cell line carrying a temperature-sensitive SV40 large T antigen. AC16 exhibits cardiac-related characteristics and is used as an in vitro model for studies of human cardiomyocyte biology.
Before delivery, each clone is authenticated by STR, tested for sterility and mycoplasma, and genotype‑verified by two‑round PCR‑sequencing. Comprehensive QC data accompany every shipment to support reproducible research.

Cas9 cell lines in our cell bank can stably express Cas9 protein. Each Cas9 Stable Cell Line is easy to use and enables gene knockout simply by transfecting gRNA, while transfection of gRNA and donor DNA results in gene knock-in or point mutations
These Cas9 stable cell lines have been used to construct the KO cell lines for various genes, gene KO efficiency 5-10 times improved.
Selected cells, low passages, good cell condition, high activity, applicable for all kinds of gene-editing experiments.

Targeted knockout region: EExon 2
Reference Transcript: NM_004996
Frameshift Mutation Strategy
For research use only. Not intended for human or animal clinical trials, therapeutic or diagnostic use






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