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Rabbit anti-Human Bcl-XL Polyclonal Antibody

The antibody against Bcl-XL was raised in Rabbit using the recombinant fusion protein containing a sequence corresponding to amino acids 1-80 of human Bcl-XL (NP_001304848.1) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, IHC-P, IF/ICC, ELISA.

ADA-12974A

The antibody against Bcl-XL was raised in Rabbit using the recombinant fusion protein containing a sequence corresponding to amino acids 1-80 of human Bcl-XL (NP_001304848.1) as the immunogen. The polyclonal antibody exists as a isotype IgG, by affinity purification. This antibody has been validated on WB, IHC-P, IF/ICC, ELISA.

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Specifications


Cat.No ADA-12974A ClonalityPolyclonal
Host SpeciesRabbitTarget NameBcl-XL
Target SynonymsBCLX; BCL2L; Bcl-X; PPP1R52; BCL-XL/S; Bcl-XLFormLiquid
Species ReactivityHuman, RatIsotypeIgG
Storage Buffer50% Glycerol, PBS with 0.01% thimerosal, pH7.3.Purification MethodAffinity purification
Positive SamplesOVCAR3, Rat lung, Rat spleenApplicationELISA, WB, IF/ICC, IHC-P

Immunogen Information


Immunogen DescriptionRecombinant fusion protein containing a sequence corresponding to amino acids 1-80 of human Bcl-XL (NP_001304848.1).Target SpeciesHuman
Immunogen SequenceMSQSNRELVVDFLSYKLSQKGYSWSQFSDVEENRTEAPEGTESEMETPSAINGNPSWHLADSPAVNGATGHSSSLDAREVUniprot IDQ07817
Background Information
  • Uniprot Id

    Q07817

  • Target Species

    Human

  • Target Name

    BCL2L1

  • Target Full Name

    Bcl-2-like protein 1

  • Target Function

    Potent inhibitor of cell death. Inhibits activation of caspases. Appears to regulate cell death by blocking the voltage-dependent anion channel (VDAC) by binding to it and preventing the release of the caspase activator, CYC1, from the mitochondrial membrane. Also acts as a regulator of G2 checkpoint and progression to cytokinesis during mitosis.; Isoform Bcl-X(L) also regulates presynaptic plasticity, including neurotransmitter release and recovery, number of axonal mitochondria as well as size and number of synaptic vesicle clusters. During synaptic stimulation, increases ATP availability from mitochondria through regulation of mitochondrial membrane ATP synthase F(1)F(0) activity and regulates endocytic vesicle retrieval in hippocampal neurons through association with DMN1L and stimulation of its GTPase activity in synaptic vesicles. May attenuate inflammation impairing NLRP1-inflammasome activation, hence CASP1 activation and IL1B release.; Isoform Bcl-X(S) promotes apoptosis.

  • Target Subcellular Location

    [Isoform Bcl-X(L)]: Mitochondrion inner membrane. Mitochondrion outer membrane. Mitochondrion matrix. Cytoplasmic vesicle, secretory vesicle, synaptic vesicle membrane. Cytoplasm, cytosol. Cytoplasm, cytoskeleton, microtubule organizing center, centrosome. Nucleus membrane; Single-pass membrane protein; Cytoplasmic side.

  • Target Protein Families

    Bcl-2 family

  • Target Tissue Specificity

    Bcl-X(S) is expressed at high levels in cells that undergo a high rate of turnover, such as developing lymphocytes. In contrast, Bcl-X(L) is found in tissues containing long-lived postmitotic cells, such as adult brain.

  • Target Research Area

    Cancer

  • Target Synonyms

    Apoptosis regulator Bcl X; Apoptosis regulator Bcl-X; Apoptosis regulator BclX; B cell lymphoma 2 like; B2CL1_HUMAN; Bcl 2 like 1 protein; Bcl X; Bcl xL; BCL XL/S; Bcl xS; Bcl-2-like protein 1; Bcl2 Like 1; Bcl2 related gene; Bcl2-L-1; BCL2L; Bcl2l1; BCLX; BclXL; BclXs; DKFZp781P2092; PPP1R52; Protein phosphatase 1 regulatory subunit 52

  • Target Background

    The protein encoded by this gene belongs to the BCL-2 protein family. BCL-2 family members form hetero- or homodimers and act as anti- or pro-apoptotic regulators that are involved in a wide variety of cellular activities. The proteins encoded by this gene are located at the outer mitochondrial membrane, and have been shown to regulate outer mitochondrial membrane channel (VDAC) opening. VDAC regulates mitochondrial membrane potential, and thus controls the production of reactive oxygen species and release of cytochrome C by mitochondria, both of which are the potent inducers of cell apoptosis. Alternative splicing results in multiple transcript variants encoding two different isoforms. The longer isoform acts as an apoptotic inhibitor and the shorter isoform acts as an apoptotic activator.

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