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Rabbit anti-Human ACTL6B Polyclonal Antibody

The antibody against ACTL6B was raised in rabbit using the Recombinant Human Actin-like protein 6B protein (1-280AA) as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.

ADC-45122A

The antibody against ACTL6B was raised in rabbit using the Recombinant Human Actin-like protein 6B protein (1-280AA) as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, WB, IHC.

$299.00

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Specifications


Cat.No ADC-45122A ClonalityPolyclonal
Host SpeciesRabbitTarget NameACTL6B
FormLiquidSpecies ReactivityHuman
IsotypeIgGStorage Buffer50% Glycerol, PBS with 0.02% sodium azide, pH7.3.
Purification MethodAntigen affinity purifiedConjugateNon-conjugated
ApplicationELISA, IHC, WBStorageUpon receipt

Immunogen Information


Immunogen DescriptionRecombinant Human Actin-like protein 6B protein (1-280AA)Target SpeciesHuman
Immunogen SequenceComplete sequences for the immunogen, target protein, and peptides are available upon request.Uniprot IDO94805
Background Information
  • Uniprot Id

    O94805

  • Target Species

    Human

  • Target Name

    ACTL6B

  • Target Full Name

    Actin-like protein 6B

  • Target Function

    Involved in transcriptional activation and repression of select genes by chromatin remodeling (alteration of DNA-nucleosome topology). Component of SWI/SNF chromatin remodeling complexes that carry out key enzymatic activities, changing chromatin structure by altering DNA-histone contacts within a nucleosome in an ATP-dependent manner. Belongs to the neuron-specific chromatin remodeling complex (nBAF complex), as such plays a role in remodeling mononucleosomes in an ATP-dependent fashion, and is required for postmitotic neural development and dendritic outgrowth. During neural development a switch from a stem/progenitor to a postmitotic chromatin remodeling mechanism occurs as neurons exit the cell cycle and become committed to their adult state. The transition from proliferating neural stem/progenitor cells to postmitotic neurons requires a switch in subunit composition of the npBAF and nBAF complexes. As neural progenitors exit mitosis and differentiate into neurons, npBAF complexes which contain ACTL6A/BAF53A and PHF10/BAF45A, are exchanged for homologous alternative ACTL6B/BAF53B and DPF1/BAF45B or DPF3/BAF45C subunits in neuron-specific complexes (nBAF). The npBAF complex is essential for the self-renewal/proliferative capacity of the multipotent neural stem cells. The nBAF complex along with CREST plays a role regulating the activity of genes essential for dendrite growth. ACTL6B/BAF53B is not essential for assembly of the nBAF complex but is required for targeting the complex and CREST to the promoter of genes essential for dendritic growth. Essential for neuronal maturation and dendrite development.

  • Target Subcellular Location

    Nucleus.

  • Target Protein Families

    Actin family

  • Target Research Area

    Epigenetics and Nuclear Signaling

  • Target Synonyms

    53 kDa BRG1 associated factor B; 53 kDa BRG1-associated factor B; ACL 6B; ACL6B; ACL6B_HUMAN; Actin like 6; Actin like protein 6B; Actin like protein6B; Actin related protein; Actin related protein Baf53b; actin-like 6B; Actin-like protein 6B; Actin-related protein Baf53b; Actl 6; ACTL 6B; Actl6; ACTL6 B; Actl6b; Arp Na; ArpN a; ArpN alpha; ArpNa; ArpNalpha; Baf 53b; BAF53B; BRG1-associated factor 53B

  • Target Background

    The protein encoded by this gene is a member of a family of actin-related proteins (ARPs) which share significant amino acid sequence identity to conventional actins. Both actins and ARPs have an actin fold, which is an ATP-binding cleft, as a common feature. The ARPs are involved in diverse cellular processes, including vesicular transport, spindle orientation, nuclear migration and chromatin remodeling. This gene encodes a subunit of the BAF (BRG1/brm-associated factor) complex in mammals, which is functionally related to SWI/SNF complex in S. cerevisiae and Drosophila; the latter is thought to facilitate transcriptional activation of specific genes by antagonizing chromatin-mediated transcriptional repression. This subunit may be involved in the regulation of genes by structural modulation of their chromatin, specifically in the brain. Alternative splicing results in multiple transcript variants.

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