hHBrk1 Polyclonal Antibody, Biotin Conjugated


hHBrk1 Polyclonal Antibody, Biotin Conjugated

  • Size: 100ul
  • Application: WB, ELISA, IHC-P, IHC-F
  • Reactivity:
  • Predicted Reactivity: Human, Mouse, Rat, Cow, Pig

  • Datasheet      Tech Support


Catalog# bs-5124R-Biotin

Size:100ul Datasheet


 SizePrice
 100ul ₹ 49911

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PRODUCT DETAILS






SPECIFICATIONS

PRODUCT NAME

hHBrk1 Polyclonal Antibody, Biotin Conjugated

CONJUGATION

Biotin

HOST

Rabbit

SOURCE

KLH conjugated synthetic peptide derived from human hHBrk1

IMMUNOGEN RANGE

31-75/75

CLONALITY

Polyclonal

ISOTYPE

IgG

CONCENTRATION

1ug/ul

PURIFICATION

Purified by Protein A.

STORAGE BUFFER

Aqueous buffered solution containing 1% BSA, 50% glycerol and 0.09% sodium azide.

STORAGE CONDITION

Store at -20°C for 12 months.


TARGET

GENE ID

55845

SUBCELLULAR LOCATION

Cytoplasm

SYNONYMS

Brk1-like; C3orf10 chromosome 3 open reading frame 10; C3ORF10 GENE; Chromosome 3 open reading frame 10; hHBrk1; HSPC300; MDS027; Probable protein BRICK1; BRK1_HUMAN.

BACKGROUND

HSPC300 (hematopoietic stem cell protein 300) is also known as probable protein BRICK1 or C3orf10 (chromosome 3 open reading frame 10) and is a 75 amino acid protein that is expressed as two isoforms and localizes to both the cytoplasm and the cytoskeleton. HSPC300 is thought to regulate cytoskeletal organization and Actin polymerization. Free HSPC300 exists as homotrimers prior to its incorporation into the WAVE complex. The WAVE complex includes five proteins, one of which is HSPC300, that regulate the ARC (Arp2/3 complex) which is responsible for Actin nucleation and is Rac 1-dependent. Because HSPC300 is a highly conserved subunit of the WAVE complex across many species, it is thought to have the same or similar functions in many different organisms. In Drosophila, the WAVE/ARC pathway may affect the development of the nervous system. HSPC300 is thought to localize to axons of the central nervous system of Drosophila embryos and thus may also be involved in axonogenesis. In addition, HSPC300 is thought to be necessary for synaptic morphogenesis by motoneurons. In mice, the knockout of the WAVE complex leads to learning and memory defects, and it is therefore hypothesized that HSPC300 may also be involved in cognitive functions. Genetic depletion of HSPC300 results in cytoskeletal abnormalities and prevents cytokinesis of cells, suggesting that decreased levels of HSPC300 may be associated with tumor suppression.

APPLICATION DILUTION

WB(1:300-1000), ELISA(1:500-1000), IHC-P(1:200-400), IHC-F(1:100-500)












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