
Gene knockout cell lines are generated using CRISPR-Cas9 based technology to precisely disrupt target genes, enabling functional genomics research, disease modeling, and target validation.
AAGAB (alpha and gamma adaptin binding protein) encodes a protein that interacts with alpha- and gamma-adaptin subunits of complexes involved in clathrin-coated vesicle trafficking. Through these interactions, AAGAB contributes to intracellular membrane trafficking and clathrin-dependent vesicle transport. Its function is relevant to studies of endocytic pathways and regulation of cellular membrane dynamics.
A human hepatocellular carcinoma cell line of Japanese origin, established from the liver tumor of a 57-year-old male patient. The cells are classified as an adult hepatocellular carcinoma line and have been extensively characterized for their molecular and genetic properties. The cell line exhibits a predominantly East Asian genomic ancestry profile and carries documented sequence variations affecting genes including KDR, POLD3, TERT, and TP53.
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.
For research use only. Not intended for human or animal clinical trials, therapeutic or diagnostic use






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