Human USP10 (aa 1-798 ) Codon optimized cDNA Clone

Human USP10 (aa 1-798 ) Codon optimized cDNA Clone

Catalog Number:
CC01386148BIO
Mfr. No.:
RPY1929
Price:
$6,703
  • Size:
    10µg
    Quantity:
    Add to Cart:
      • Overview
        • Successful recombinant protein expression depends on factors such as codon preference, RNA secondary structure, GC content in heterologous expression systems. The results of many experiments proved that the expression level of the codon-optimized cDNA was significantly increased compared with that of pre-optimization, by 2 times to 100 times depending on the genes. Amerigo Scientific offers artificially synthesized codon-optimized cDNA clones (cloned in E. coli expression Vector).
          ▪ Codon-optimized cDNA/DNA can produce higher yield of recombinant protein. The cDNA/DNA clones are cloned into E. coli expression vector with 6x His-tag and ready-to-use for recombinant protein production.
          ▪ Codon-optimized cDNA/DNA can be used as a RNAi-assistance in validating the function of RNAi due to its ~30% difference in cDNA sequence when compared with original cDNA/DNA.

          Please contact us at for specific academic pricing.

      • Properties
        • Protein Name
          Ubiquitin carboxyl-terminal hydrolase 10 (EC 3.4.19.12) (Deubiquitinating enzyme 10) (Ubiquitin thiolesterase 10) (Ubiquitin-specific-processing protease 10) ; Entry name: UBP10_HUMAN
          Source
          Homo sapiens (Human)
          Formulation
          Liquid
          Storage
          -20°C to -70°C. Avoid repeated freeze-thaw cycles.

          More Information

          UniProt
          Gene ID
          USP10 KIAA0190

          * For in vitro Research Use Only.

      • Applications
        • Application Description
          1. Codon-optimized cDNA sequence designed for recombinant protein production in both E.coli and Mammalian cell. The cDNA has been cloned into E.coli expression vector with 6x Histidine tag.
          2. May be used as RNAi assistance to restore the loss-of-function.

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