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Rabbit anti-Human KIF19 Polyclonal Antibody

The antibody against KIF19 was raised in Rabbit using the recombinant fusion protein containing a sequence corresponding to amino acids 1-300 of human KIF19 (NP_694941.2) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, ELISA.

ADA-05980A

The antibody against KIF19 was raised in Rabbit using the recombinant fusion protein containing a sequence corresponding to amino acids 1-300 of human KIF19 (NP_694941.2) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, ELISA.

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Specifications


Cat.No ADA-05980A ClonalityPolyclonal
Host SpeciesRabbitTarget NameKIF19
Target SynonymsKIF19A; KIF19FormLiquid
Species ReactivityHuman, Mouse, RatIsotypeIgG
Storage Buffer50% Glycerol, PBS with 0.01% thimerosal, pH7.3.Purification MethodAffinity purification
Positive SamplesMouse lung, Mouse testis, Rat lung, U-87MGApplicationELISA, WB

Immunogen Information


Immunogen DescriptionRecombinant fusion protein containing a sequence corresponding to amino acids 1-300 of human KIF19 (NP_694941.2).Target SpeciesHuman
Uniprot IDQ2TAC6Immunogen Sequence
Background Information
  • Uniprot Id

    Q2TAC6

  • Target Species

    Human

  • Target Name

    KIF19

  • Target Full Name

    Kinesin-like protein KIF19

  • Target Function

    Plus end-directed microtubule-dependent motor protein that regulates the length of motile cilia by mediating depolymerization of microtubules at ciliary tips.

  • Target Subcellular Location

    Cytoplasm, cytoskeleton. Cell projection, cilium.

  • Target Protein Families

    TRAFAC class myosin-kinesin ATPase superfamily, Kinesin family

  • Target Synonyms

    KIF19; Kinesin-like protein KIF19

  • Target Background

    Predicted to enable microtubule binding activity and plus-end-directed microtubule motor activity. Predicted to be involved in axonemal microtubule depolymerization; microtubule-based movement; and plus-end specific microtubule depolymerization. Predicted to be located in cilium. Predicted to be part of kinesin complex. Predicted to be active in microtubule.

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