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Bax Polyclonal Antibody

View all (96) BAX antibodies

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Datasheet
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Datasheet
Protocols
Questions & Answers

Cite Bax Polyclonal Antibody

  • Antibody Testing Data (1)
Bax Antibody in Western Blot (WB)
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Bax Antibody in Western Blot (WB)
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Bax Antibody (TA590174) in WB

Western blot analysis of HEK293T cells were transfected with the pCMV6-ENTRY control (Cat # PS100001, Left lane) or pCMV6-ENTRY BAX (Cat # RC219954, Right lane) cDNA for 48 hrs and lysed. Equivalent amounts of cell lysates (5 µg per lane) were separated by SDS-PAGE and blotted with anti-BAX(Cat # TA590174). {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
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Bax Antibody in Western Blot (WB)
Bax Polyclonal Antibody

Product Details

TA590174

Applications
Tested Dilution
Publications

Western Blot (WB)

1:20,000
-

Immunohistochemistry (IHC)

1:150
-

ELISA (ELISA)

1:100-1:2,000
-
Product Specifications

Species Reactivity

Human

Host/Isotype

Rabbit / IgG

Class

Polyclonal

Type

Antibody

Immunogen

DNA immunization. This antibody is specific for the N Terminus Region of the target protein.
View immunogen

Conjugate

Unconjugated Unconjugated Unconjugated

Form

Liquid

Concentration

0.8 mg/mL

Purification

Protein A/G

Storage buffer

PBS

Contains

no preservative

Storage conditions

-20°C, Avoid Freeze/Thaw Cycles

Shipping conditions

Ambient (domestic); Wet ice (international)

Target Information

BAX is a members of the Bcl-2 Family and plays an important role in regulation of apoptosis. Whereas Bcl-2 is commonly regarded as an anti-apoptotic protein, BAX is considered to have a pro-apoptotic function. Regulation of apoptosis is supposed to involve both homo- and heterodimerization of different isoforms of BAX and Bcl-2. The Bax gene encodes different isoforms including Bax alpha (21 kDa) and Bax beta (24 kDa), whereas both isoforms contain the BH1, BH2 and BH3 domains, Bax beta has a unique carboxyl terminus and does not contain a hydrophobic transmembrane domain. Bcl-2 is also expressed in different Isoforms. Bcl-2 beta differs in the 3' UTR and coding region compared to variant alpha. Bcl-2 beta is shorter (22 kDa) and has a distinct C-terminus compared to Bcl-2 alpha (26 kDa). BAX is a member of the BCL-2 family of proteins, which function as regulators of apoptosis. Overexpression of BAX functions to promote cell death. BAX can form homodimers and is also able to heterodimerize with other BCL-2 related proteins.

For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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Bioinformatics

Protein Aliases: Apoptosis regulator BAX; Bax zeta; Baxdelta2G9; Baxdelta2G9omega; Baxdelta2omega; Bcl-2-like protein 4; BCL2 associated X protein; BCL2-associated X protein omega; Bcl2-L-4

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Gene Aliases: BAX; BCL2L4

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UniProt ID: (Human) Q07812

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Entrez Gene ID: (Human) 581

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Function(s)
protein binding lipid binding channel activity heat shock protein binding protein complex binding identical protein binding protein homodimerization activity protein heterodimerization activity chaperone binding BH3 domain binding
Process(es)
ovarian follicle development neuron migration T cell homeostatic proliferation B cell homeostasis B cell apoptotic process kidney development release of cytochrome c from mitochondria protein insertion into mitochondrial membrane involved in apoptotic signaling pathway blood vessel remodeling myeloid cell homeostasis B cell negative selection B cell homeostatic proliferation positive regulation of B cell apoptotic process glycosphingolipid metabolic process regulation of nitrogen utilization apoptotic process activation of cysteine-type endopeptidase activity involved in apoptotic process DNA damage response, signal transduction by p53 class mediator resulting in cell cycle arrest activation of signaling protein activity involved in unfolded protein response inner mitochondrial membrane organization outer mitochondrial membrane organization germ cell development aging mitochondrial fusion extrinsic apoptotic signaling pathway via death domain receptors intrinsic apoptotic signaling pathway in response to DNA damage activation of cysteine-type endopeptidase activity involved in apoptotic process by cytochrome c apoptotic mitochondrial changes fertilization response to toxic substance response to salt stress establishment or maintenance of transmembrane electrochemical gradient response to gamma radiation viral process hypothalamus development cerebral cortex development negative regulation of protein binding positive regulation of protein oligomerization endoplasmic reticulum calcium ion homeostasis negative regulation of endoplasmic reticulum calcium ion concentration release of matrix enzymes from mitochondria negative regulation of peptidyl-serine phosphorylation regulation of mammary gland epithelial cell proliferation glial cell apoptotic process cellular response to UV ectopic germ cell programmed cell death response to cocaine odontogenesis of dentin-containing tooth response to drug regulation of apoptotic process positive regulation of apoptotic process regulation of protein homodimerization activity regulation of protein heterodimerization activity negative regulation of neuron apoptotic process positive regulation of neuron apoptotic process mitochondrial fragmentation involved in apoptotic process development of secondary sexual characteristics cellular respiration retinal cell programmed cell death response to copper ion positive regulation of developmental pigmentation negative regulation of fibroblast proliferation spermatid differentiation post-embryonic camera-type eye morphogenesis response to axon injury homeostasis of number of cells within a tissue protein oligomerization protein homooligomerization positive regulation of release of sequestered calcium ion into cytosol neuron apoptotic process response to corticosterone regulation of mitochondrial membrane potential Sertoli cell proliferation retina development in camera-type eye positive regulation of apoptotic process involved in mammary gland involution vagina development intrinsic apoptotic signaling pathway in response to endoplasmic reticulum stress thymocyte apoptotic process mitochondrion morphogenesis intrinsic apoptotic signaling pathway by p53 class mediator positive regulation of release of cytochrome c from mitochondria apoptotic signaling pathway extrinsic apoptotic signaling pathway extrinsic apoptotic signaling pathway in absence of ligand intrinsic apoptotic signaling pathway activation of cysteine-type endopeptidase activity involved in apoptotic signaling pathway positive regulation of endoplasmic reticulum unfolded protein response positive regulation of mitochondrial outer membrane permeabilization involved in apoptotic signaling pathway apoptotic process involved in patterning of blood vessels apoptotic process involved in embryonic digit morphogenesis regulation of mitochondrial membrane permeability involved in programmed necrotic cell death positive regulation of apoptotic DNA fragmentation positive regulation of IRE1-mediated unfolded protein response B cell receptor apoptotic signaling pathway negative regulation of apoptotic signaling pathway positive regulation of extrinsic apoptotic signaling pathway in absence of ligand positive regulation of intrinsic apoptotic signaling pathway
It has to be done as per old AB suggested Products section.
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