TargetMol

D-Sedoheptulose-7-phosphate (barium salt)

Product Code:
 
TAR-T37989
Product Group:
 
Inhibitors and Activators
Supplier:
 
TargetMol
Regulatory Status:
 
RUO
Shipping:
 
cool pack
Storage:
 
-20℃
1 / 1

No additional charges, what you see is what you pay! *

CodeSizePrice
TAR-T37989-10mg10mgEnquire
Special offer! Add £1 to your order to get a TargetMol CCK-8 Kit. Read more here.
Quantity:
TAR-T37989-5mg5mgEnquire
Special offer! Add £1 to your order to get a TargetMol CCK-8 Kit. Read more here.
Quantity:
TAR-T37989-1mg1mg£409.00
Special offer! Add £1 to your order to get a TargetMol CCK-8 Kit. Read more here.
Quantity:
Prices exclude any Taxes / VAT
Stay in control of your spending. These prices have no additional charges, not even shipping!
* Rare exceptions are clearly labelled (only 0.14% of items!).
Multibuy discounts available! Contact us to find what you can save.
This product comes from: United States.
Typical lead time: 10-14 working days.
Contact us for more accurate information.
  • Further Information
  • Documents
  • References
  • Show All

Further Information

Bioactivity:
D-Sedoheptulose-7-phosphate is an intermediate in the pentose phosphate pathway. [1] [2] In this pathway, transaldolase catalyzes the transfer of a three carbon dihydroxyacetone moiety from D-sedoheptulose-7-phosphate to glyceraldehyde-3-phosphate to generate D-fructose-6-phosphate . D-Sedoheptulose-7-phosphate is also an intermediate in carbon fixation in photosynthetic organisms, as well as in the biosynthesis of lipopolysaccharide, amino acids, secondary metabolites, and antibiotics. [3]
CAS:
17187-72-3
Formula:
C7H13O10P?Ba
Molecular Weight:
425.5
Purity:
0.98
SMILES:
O[C@H]1[C@@H]([C@@H]([C@H](O[C@@]1(CO)O)COP([O-])([O-])=O)O)O.[Ba+2]

References

Gumaa, K.A., and McLean, P. The pentose phosphate pathway of glucose metabolism: Enzyme profiles and transient and steady-state content of intermediates of alternative pathways of glucose metabolism in Krebs ascites cells. Biochemistry Journal 115(5), 1009-1029 (1969). Patra, K.C., and Hay, N. The pentose phosphate pathway and cancer. Trends Biochem. Sci. 39(8), 347-354 (2014). Wolosiuk, R.A., Ballicora, M.A., and Hagelin, K. The reductive pentose phosphate cycle for photosynthetic CO2 assimilation: Enzyme modulation. FASEB J. 7, 622-637 (1993).