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Rabbit anti-Human ADAMTSL1 Polyclonal Antibody

The antibody against ADAMTSL1 was raised in rabbit using the Fusion protein of Human ADAMTSL1 as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, IHC.

ADC-31061A

The antibody against ADAMTSL1 was raised in rabbit using the Fusion protein of Human ADAMTSL1 as the immunogen. This antibody exists as a non-conjugated isotype IgG, Antigen affinity purified. This antibody has been validated on ELISA, IHC.

$299.00

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Specifications


Cat.No ADC-31061A ClonalityPolyclonal
Host SpeciesRabbitTarget NameADAMTSL1
FormLiquidSpecies ReactivityHuman, Mouse
IsotypeIgGStorage Buffer0.05% NaN3, 40% Glycerol., pH7.4 PBS
Purification MethodAntigen affinity purifiedConjugateNon-conjugated
ApplicationELISA, IHCStorageUpon receipt

Immunogen Information


Immunogen DescriptionFusion protein of Human ADAMTSL1Target SpeciesHuman
Immunogen SequenceComplete sequences for the immunogen, target protein, and peptides are available upon request.Uniprot IDQ8N6G6
Background Information
  • Uniprot Id

    Q8N6G6

  • Target Species

    Human

  • Target Name

    ADAMTSL1

  • Target Full Name

    ADAMTS-like protein 1

  • Target Subcellular Location

    Secreted, extracellular space, extracellular matrix.

  • Target Tissue Specificity

    Expressed primarily in adult skeletal muscle.

  • Target Synonyms

    ADAM TS related protein 1; ADAMTS like 1; ADAMTS-like protein 1; ADAMTSL-1; ADAMTSL1; ADAMTSR 1; ADAMTSR1; ATL1_HUMAN; C9orf94; Chromosome 9 open reading frame 94 ; MGC40193; Punctin 1 ; Punctin; Punctin-1; Thrombospondin

  • Target Background

    This gene encodes a secreted protein and member of the ADAMTS (a disintegrin and metalloproteinase with thrombospondin motif) family. This protein lacks the metalloproteinase and disintegrin-like domains, which are typical of the ADAMTS family, but contains other ADAMTS domains, including the thrombospondin type 1 motif. This protein may have important functions in the extracellular matrix. Alternative splicing results in multiple transcript variants encoding distinct proteins.

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