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CC-665

Hyal2 Easy KO Kit (Human)

For research use only. Not intended for any clinical use.

Cat. No. :   CC-665

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Product Information

Gene Information

Cat. No. CC-665
Description A complete kit for efficient gene knockout in mammalian cells, combining chemically synthesized sgRNAs with Cas9 RNPs to induce targeted DNA cleavage and generate frameshift mutations or deletions. All essential reagents for transfection and knockout validation are included for rapid, high-efficiency gene disruption.
Gene Abbr Hyal2
Gene Name HYAL2 hyaluronoglucosaminidase 2 [ Homo sapiens ]
Species Human
Ensembl ID ENSMUSG00000010047
NCBIGene ID 15587
Uni Prot ID O35632
Features
  • All-in-One workflow from gene editing to knockout validation for users with no prior experience.
  • Pre-validated sgRNAs and primers for rapid setup.
  • Streamlined experiment handling.
  • CRISPR RNP method ensures precise and efficient gene knockout.
Applications This kit enables in vitro gene knockout in human-derived cells using chemically synthesized sgRNAs and Cas9-gRNA RNP complexes. Transfected RNPs cleave early exons of the target gene, inducing deletions or frameshift mutations for efficient and rapid knockout.
Reactions 5–10 reactions per target gene
Kit Components 2–3 chemically synthesized sgRNAs (200pmol each)
3 PCR/Sequencing primers (500pmol each)
LM cell lysate (500µL)
Cas9 protein (12µg)
LM RNP transfection reagent (50µL)
Storage Store at -80°C for up to 1 year or at -20°C for up to 6 months. Avoid repeated freeze-thaw cycles.
Gene Name HYAL2 hyaluronoglucosaminidase 2 [ Homo sapiens ]
Gene Symbol HYAL2
Synonyms LUCA2
Gene Description hyaluronoglucosaminidase 2
Gene ID 8692
Uni Prot ID Q12891
m RNA Refseq NM_033158.4
Protein Refseq NP_149348.2
Chromosome Location 3p21.3
Function enzyme binding; hyaluronic acid binding; hyaluronoglucuronidase activity; hyalurononglucosaminidase activity; NOT hyalurononglucosaminidase activity; hyalurononglucosaminidase activity; protein binding; receptor signaling protein tyrosine kinase inhibitor activity; receptor tyrosine kinase binding; transforming growth factor beta binding; viral receptor activity;
Pathway Chondroitin sulfate degradation, organism-specific biosystem; Chondroitin sulfate degradation, conserved biosystem; Dermatan sulfate degradation, organism-specific biosystem; Dermatan sulfate degradation, conserved biosystem; Disease, organism-specific biosystem; Glycosaminoglycan degradation, organism-specific biosystem; Glycosaminoglycan degradation, conserved biosystem;
MIM 603551
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