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Cat. No. | Product Name | Target | Signaling Pathways |
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T65181 |
Fmoc-Bpa-OH
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Fmoc-Bpa-OH 是一种有用的有机化合物,可用于生命科学领域的相关研究。其产品编号为 T65181,CAS号为 117666-96-3。 | |||
T65186 |
Fmoc-D-Bpa-OH
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Fmoc-D-Bpa-OH 是一种有用的有机化合物,可用于生命科学领域的相关研究。其产品编号为 T65186,CAS号为 117666-97-4。 | |||
T9177 |
BPAM344
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iGluR | Membrane transporter/Ion channel; Neuroscience |
BPAM344 是一种红藻氨酸受体亚基GluK1b、GluK2a 和GluK3a 的正变构调节剂。 | |||
T22081 |
FBPase-1 inhibitor-1
Fructose 1,6-bisphosphatase-1 Inhibitor |
Others | Others |
FBPase-1 inhibitor-1 (Fructose 1,6-bisphosphatase-1 Inhibitor) 是一种fructose-1,6-bisphosphatase (FBPase-1)的变构抑制剂。 | |||
T60312 |
FBPase-IN-1
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FBPase-IN-1 is a powerful inhibitor of Fructose-1,6-bisphosphatase (FBPase), a key enzyme involved in Type 2 diabetes (T2D) research. It exhibits an impressive IC50 value of 0.22 μM. Aside from its potency, FBPase-IN-1 also demonstrates the ability to effectively lower blood glucose levels and improve glucose tolerance. Its mechanism of action involves covalently modifying the C128 site, thereby influencing the N125-S124-S123 allosteric pathway of FBPase, ultimately impacting its catalytic activ... | |||
T64272 | MTL-CEBPA | ||
MTL-CEPBA 是一种靶向 C/EBPα 上调的小活化 RNA,表现出抗炎和抗癌效果。 | |||
T82635 |
Cy-FBP/SBPase-IN-1
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Cy-FBP/SBPase-IN-1(compound S5)是一种针对蓝藻光合作用调节酶的Cy-FBP/SBPase抑制剂。该化合物能有效阻断卡尔文循环和光系统,从而减少蓝藻的光合效率。此外,Cy-FBP/SBPase-IN-1能抑制包括集胞藻PCC6803在内的蓝藻生长,并在人源细胞与斑马鱼模型中表现出良好的安全性。 | |||
T60294 | FBPase-IN-2 | ||
FBPase-IN-2 (HS36) 是一种有效的果糖-1,6-二磷酸酶 (FBPase) 共价抑制剂,IC50值为 0.15 μM。FBPase-IN-2 可减少肝细胞内葡萄糖的产生,可用于二型糖尿病的研究。 |
Cat. No. | Product Name | Target | Signaling Pathways |
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T20189 |
Benzoylphenylalanine
L-BPA,NSC118532,N-Benzoyl-L-phenylalanine,LBPA,NSC-118532,L BPA,N-苯甲酰-L-苯丙氨酸,NSC 118532 |
Others | Others |
Benzoylphenylalanine (LBPA) 可用作光亲和肽灭活剂。 |
Cat. No. | Product Name | Species | Expression System |
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TMPY-04845 |
IL-3 Protein, Mouse, Recombinant
Il-3,白介素,PSF,HCGF,BPA,白细胞介素,MCGF,Csfmu,interleukin ... |
Mouse | HEK293 Cells |
IL-3 Protein, Mouse, Recombinant is expressed in HEK293 mammalian cells. The predicted molecular weight is 15.7 kDa and the accession number is P01586. | |||
TMPH-02614 |
CREB5 Protein, Mouse, Recombinant (His)
Creb5,Cyclic AMP-responsive element-binding protein 5,cAMP-r... |
Mouse | E. coli |
Binds to the cAMP response element and activates transcription. | |||
TMPJ-00816 |
FBPase1 Protein, Human, Recombinant (His)
D-fructose-1,FBP,6-bisphosphate 1-phosphohydrolase 1,FBP... |
Human | HEK293 Cells |
Fructose-1,6-bisphosphatase 1(FBP1) is a homotetramer protein and belongs to the FBPase class 1 family. It involves in carbohydrate biosynthesis; gluconeogenesis pathway. FBP1 is a gluconeogenesis regulatory protein which catalyzes the hydrolysis of fructose 1,6-bisphosphate to fructose 6-phosphate and inorganic phosphate. FBP1 deficiency is associated with hypoglycemia and metabolic acidosis. FBP1 regulates mouse endogenous glucose production. FBP1 coupled with phosphofructokinase (PFK) takes p... | |||
TMPJ-00815 |
FBPase1 Protein, Human, Recombinant (His, E. coli)
6-Bisphosphate 1-Phosphohydrolase 1,FBP1,FBP,FBPase... |
Human | E. coli |
Fructose-1,6-Bisphosphatase 1 (FBPase 1) is a member of the FBPase class 1 family. FBPase 1 is a gluconeogenesis regulatory protein, which catalyzes the hydrolysis of fructose 1,6-bisphosphate to fructose 6-phosphate and inorganic phosphate. FBPase 1 can assume an active R-state, or an inactive T-state. FBPase 1 deficiency is inherited as an autosomal recessive disorder mainly in the liver and causes life-threatening episodes of hypoglycemia and metabolic acidosis in newborn infants or young chi... | |||
TMPH-00296 |
Pregnancy-associated protein bPAP Protein, Bovine, Recombinant (His & Myc)
|
Bovine | E. coli |
Pregnancy-associated protein bPAP Protein, Bovine, Recombinant (His & Myc) is expressed in E. coli expression system with N-10xHis and C-Myc tag. The predicted molecular weight is 17.3 kDa and the accession number is P84291. | |||
TMPH-03721 |
IbpA Protein, Yersinia pestis bv. Antiqua, Recombinant (His)
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Yersinia pestis | E. coli |
Associates with aggregated proteins, together with IbpB, to stabilize and protect them from irreversible denaturation and extensive proteolysis during heat shock and oxidative stress. Aggregated proteins bound to the IbpAB complex are more efficiently refolded and reactivated by the ATP-dependent chaperone systems ClpB and DnaK/DnaJ/GrpE. Its activity is ATP-independent. |