CyFlow™ Lck Alexa Fluor™ 647

CyFlow™ Lck Alexa Fluor™ 647

Catalog Number:
A001344213SYS
Mfr. No.:
BG039735
Price:
$536
  • Size:
    0.1 mg (0.1 mL)
    Quantity:
    Add to Cart:
      • Overview
        • Please contact us at for specific academic pricing.

          Background

          Lck is a Src-family tyrosine kinase, which is essential for signaling through the T-cell receptor (TCR) complex. Upon TCR triggering, Lck phosphorylates the ITAM motives in its ζ subunits, establishing binding sites for the SH2 domains of the tyrosine kinase ZAP70, which is also phosphorylated by Lck and thereby activated to generate subsequent signaling platforms by phosphorylation of adaptor LAT. Whereas the majority of Lck is localized to the plasma membrane, there is also a significant fraction associated with the Golgi apparatus, which may contribute to Raf activation under conditions of weak stimulation through the TCR. Lck is also involved in the regulation of apoptosis induced by various stimuli, but not by the death receptors.

      • Properties
        • Host
          mouse
          Antibody Type
          monoclonal
          Isotype
          IgG1
          Reactivity
          human
          Clone
          LCK-01
          Immunogen
          Peptide corresponding to amino acids 22-36 in the sequence of human Lck
          Conjugate
          Alexa-fluor®-647
          Formulation
          The reagent is provided in phosphate buffered saline (PBS) solution, pH ≈7.4, containing 0.09% (w/v) sodium azide.
          Storage
          Avoid prolonged exposure to light. Store in the dark at 2-8°C. Do not freeze.
          Concentration
          1 mg/mL
          Regulatory Status
          RUO

          * Research use only

      • Applications
        • Application
          Flow Cytometry
          Application Description
          The reagent is designed for Flow Cytometry analysis. Suggested working usage is 5·µg/ml. Indicated dilution is recommended starting point for use of this product, but working concentrations should be validated by the investigator.

          Emission Maximum: 665 nm
          Excitation Maximum: 650 nm

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