AbPlus™ Anti-DCX Magnetic Beads (VS-0724-YC124)

CAT#: VS-0724-YC124

The AbPlus Anti-DCX Magnetic Beads (VS-0724-YC124) is an innovative affinity resin which is bound with anti-DCX specific antibody. The beads were designed for small-scale affinity purification and immunoprecipitation (IP) of DCX protein under native and denaturing conditions.

Gene Expression
Figure 1 IF staining of human cell line SH-SY5Y Figure 2 Colon Figure 3 Kidney Figure 4 Testis Figure 5 RNA cell line category: Group enriched (SCLC-21H, SH-SY5Y)

Specifications

  • Applications
  • Immunoprecipitation, Protein Purification
  • Matrix
  • Magnetic bead
  • Bead Ligand
  • Anti-DCX specific antibody
  • Target
  • DCX
  • Immunogen
  • Synthetic peptide corresponding to the N-terminus of the human DCX.
  • Target Species
  • Human
  • Bead Capacity
  • 40 mg/mL
  • Bead size
  • 25 μm
  • Format
  • Suspension
  • Concentration
  • 2 mg/mL
  • Buffer
  • PBS, pH 7.4
  • Preservative
  • 0.1% Sodium azide
  • Storage
  • Stored at 4°C, and is stable for up to 2 years. Do not centrifuge, dry or freeze the magnetic beads.

Applications

  • Application Notes
  • The beads are in suspension and will settle upon storage. Prior to use, mix the vial gently (do not vortex) to ensure delivery of proper bead volume.

Target

  • Introduction
  • This gene encodes a member of the doublecortin family. The protein encoded by this gene is a cytoplasmic protein and contains two doublecortin domains, which bind microtubules. In the developing cortex, cortical neurons must migrate over long distances to reach the site of their final differentiation. The encoded protein appears to direct neuronal migration by regulating the organization and stability of microtubules. In addition, the encoded protein interacts with LIS1, the regulatory gamma subunit of platelet activating factor acetylhydrolase, and this interaction is important to proper microtubule function in the developing cortex. Mutations in this gene cause abnormal migration of neurons during development and disrupt the layering of the cortex, leading to epilepsy, cognitive disability, subcortical band heterotopia ("double cortex" syndrome) in females and lissencephaly ("smooth brain" syndrome) in males. Multiple transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Sep 2010]
  • Alternative Names
  • Doublecortin; Lissencephalin-X; Doublecortex; Doublin; Lis-X; DBCN; LISX;
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