Date published: 2026-8-31

1-800-457-3801

SCBT Portrait Logo
Seach Input

Ala-Phe-OH (CAS 3061-90-3)

0.0(0)
Write a reviewAsk a question

Alternate Names:
Ala-Phe
CAS Number:
3061-90-3
Molecular Weight:
236.27
Molecular Formula:
C12H16N2O3
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

QUICK LINKS

Ala-Phe-OH is a dipeptide compound that functions as a substrate in enzymatic reactions. It plays a role in peptide synthesis and serves as a building block for the formation of larger peptide chains. Ala-Phe-OH′s mechanism of action involves its ability to undergo specific chemical reactions with other compounds, leading to the formation of peptide linkages. This dipeptide compound facilitates the study of enzymatic processes and the synthesis of peptides in experimental applications. Its molecular structure allows for precise interactions with enzymes, enabling the investigation of peptide bond formation and enzymatic catalysis.


Ala-Phe-OH (CAS 3061-90-3) References

  1. Weak exchange interaction supported by a biologically relevant long chemical bridge in a Cu-peptide model compound.  |  Vieira, ED., et al. 2006. Inorg Chem. 45: 2942-7. PMID: 16562949
  2. L-Alanine Exporter, AlaE, of Escherichia coli Functions as a Safety Valve to Enhance Survival under Feast Conditions.  |  Katsube, S., et al. 2019. Int J Mol Sci. 20: PMID: 31591285
  3. Altitudinal Variation of Metabolites, Mineral Elements and Antioxidant Activities of Rhodiola crenulata (Hook.f. & Thomson) H.Ohba.  |  Dong, T., et al. 2021. Molecules. 26: PMID: 34885966
  4. The Correlation Mechanism between Dominant Bacteria and Primary Metabolites during Fermentation of Red Sour Soup.  |  Zhou, X., et al. 2022. Foods. 11: PMID: 35159491
  5. Metabolic Insight into Cold Stress Response in Two Contrasting Maize Lines.  |  Yu, T., et al. 2022. Life (Basel). 12: PMID: 35207570
  6. A comparative metabolomics study of anthocyanins and taste components in Chinese bayberry (Morella rubra) with different flesh colors.  |  Lin, Q., et al. 2022. PeerJ. 10: e13466. PMID: 35669961
  7. Enzymes and microorganisms jointly promote the fermentation of rapeseed cake.  |  Song, Y., et al. 2022. Front Nutr. 9: 989410. PMID: 36185678
  8. Metabolome and transcriptome association analysis revealed key factors involved in melatonin mediated cadmium-stress tolerance in cotton.  |  Li, L., et al. 2022. Front Plant Sci. 13: 995205. PMID: 36204073
  9. Comparative metabolomics analysis of pericarp from four varieties of Zanthoxylum bungeanum Maxim.  |  Cao, Y., et al. 2022. Bioengineered. 13: 14815-14826. PMID: 36274249
  10. Transcriptome and Metabolome Combined to Analyze Quinoa Grain Quality Differences of Different Colors Cultivars.  |  Liu, Y., et al. 2022. Int J Mol Sci. 23: PMID: 36361672
  11. Transcriptome and metabolome analyses of Shatian pomelo (Citrus grandis var. Shatinyu Hort) leaves provide insights into the overexpression of the gibberellin-induced gene CcGASA4.  |  Wu, T., et al. 2022. Front Plant Sci. 13: 1022961. PMID: 36407630
  12. Telomere-to-telomere genome assembly of bitter melon (Momordica charantia L. var. abbreviata Ser.) reveals fruit development, composition and ripening genetic characteristics.  |  Fu, A., et al. 2023. Hortic Res. 10: uhac228. PMID: 36643758
  13. Dynamic Changes in Non-Volatile Components during Steamed Green Tea Manufacturing Based on Widely Targeted Metabolomic Analysis.  |  Gui, A., et al. 2023. Foods. 12: PMID: 37048372
  14. Combined Transcriptome and Metabolome Analysis Reveals Adaptive Defense Responses to DON Induction in Potato.  |  Zhao, B., et al. 2023. Int J Mol Sci. 24: PMID: 37175760
  15. Peptide hydrolase activities of the mucosa of human small intestine.  |  Heizer, WD. and Laster, L. 1969. J Clin Invest. 48: 210-28. PMID: 5765024

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Ala-Phe-OH, 250 mg

sc-479083
250 mg
$87.00