GAL4 Antibody

Code CSB-PA366145XA01SVG
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Product Details

Full Product Name
Rabbit anti-Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast) GAL4 Polyclonal antibody
Uniprot No.
Target Names
GAL4
Alternative Names
GAL4 antibody; YPL248C antibody; Regulatory protein GAL4 antibody
Raised in
Rabbit
Species Reactivity
Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast)
Immunogen
Recombinant Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast) GAL4 protein
Immunogen Species
Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast)
Conjugate
Non-conjugated
Clonality
Polyclonal
Isotype
IgG
Purification Method
Antigen Affinity Purified
Concentration
It differs from different batches. Please contact us to confirm it.
Buffer
Preservative: 0.03% Proclin 300
Constituents: 50% Glycerol, 0.01M PBS, pH 7.4
Form
Liquid
Tested Applications
ELISA, WB (ensure identification of antigen)
Protocols
Troubleshooting and FAQs
Storage
Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Value-added Deliverables
① 200ug * antigen (positive control);
② 1ml * Pre-immune serum (negative control);
Quality Guarantee
① Antibody purity can be guaranteed above 90% by SDS-PAGE detection;
② ELISA titer can be guaranteed 1: 64,000;
③ WB validation with antigen can be guaranteed positive;
Lead Time
Made-to-order (14-16 weeks)
Usage
For Research Use Only. Not for use in diagnostic or therapeutic procedures.

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Target Background

Function
This protein is a positive regulator for the gene expression of the galactose-induced genes such as GAL1, GAL2, GAL7, GAL10, and MEL1 which code for the enzymes used to convert galactose to glucose. It recognizes a 17 base pair sequence in (5'-CGGRNNRCYNYNCNCCG-3') the upstream activating sequence (UAS-G) of these genes.
Gene References into Functions
  1. To facilitate application of the KZip(+) technology, we have developed a versatile set of LexAop-KZip(+) fly lines that can be used directly with the large number of LexA driver lines with known expression patterns. KZip(+) significantly sharpens the precision of neuronal genetic control available in Drosophila and may be extended to other organisms where Split GAL4-like systems are used. PMID: 28363977
  2. Report drosophila line in which the expression of yeast GAL4 is up-regulated in response to ingestion of silver nanoparticles PMID: 23827194
  3. Gal4 binds to GAL gene UASGAL (upstream activation sequence in GAL gene promoter) sites as a dimer via its N-terminal domain and activates transcription via a C-terminal transcription activation domain (AD). PMID: 23858060
  4. Double-transgenic mice in a GAL4/WNT1 system exhibit increased locomotor activity, decreased social interaction, and impaired short-term spatial memory and nesting behavior. PMID: 23134367
  5. Gal80 binds to the activation domain of Gal4 and prevents it from activating transcription. PMID: 22479149
  6. These data demonstrate that Gal80 is a powerful addition to the genetic techniques available to map and manipulate neural circuits in zebrafish. PMID: 21905164
  7. Data show that the DE-Gal4 line is a useful tool with which to manipulate gene expression in half of Drosophila developing eye. PMID: 19882738
  8. A chimeric transactivator in which the Gal4 DNA-binding domain is fused to the activation domain of viral protein VP16 (GAL4-VP16) tightly associates with yeast chromatin and reorganizes nucleosome arrays by an ATP-independent mechanism. PMID: 15766286
  9. Gal4 ubiquitylation and destruction are required for initiation-competent transcription complexes to transition to fully mature elongating complexes capable of appropriate mRNA processing. PMID: 15797387
  10. identified polypeptides in close physical proximity to Gal4 during transcription activation PMID: 16199885
  11. Review provides an updated account of Gal4 function, including data from new technologies that have been recently applied to the study of the GAL network. PMID: 16670683
  12. Under non-inducing conditions, the complex is dynamic, but on induction the Gal4-promoter complexes 'lock in' and exhibit long half-lives; inhibition of proteasome-mediated proteolysis had little or no effect on Gal4-mediated gene expression PMID: 16929306
  13. The chimeric transcription factor Gal4-VP16 can enhance SWI/SNF histone octamer transfer activity, resulting in targeted histone eviction from a nucleosome probe. PMID: 17235287
  14. Increased gal4 dosage correlated with accumulation of insoluble GAL4, suggesting that the cascade of events leading to apoptosis might be triggered by protein deposits of either GAL4 or protein intermediates PMID: 17313569
  15. An engineered yeast Gal4 transcription activator construct illustrates a method that is applicable to functional studies of neural circuits in transgenic zebrafish. PMID: 18202183
  16. This study validates the physiological importance of Gal4 monoubiquitylation and clarifies its major role as that of protecting the activator from being destabilized by the proteasomal ATPases. PMID: 18326036
  17. A report on the structure of a complete Gal4 dimer bound to DNA and additional biochemical studies to address the molecular basis for Gal4 dimerization in DNA binding. PMID: 18611375
  18. In the presence of galactose, Gal4p-YFP remained in the nucleus. PMID: 18952899
  19. These results, using the Gal4BD-Spo11 fusion protein, demonstrate that Spo11 itself has sequence preference and contributes to the choice of DNA double-strand break positions. PMID: 19380488
  20. Gal4p can be crosslinked to Gal80p with bis(sulphosuccinimidyl) suberate. PMID: 11964151

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Subcellular Location
Nucleus.
Database Links

KEGG: sce:YPL248C

STRING: 4932.YPL248C

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