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C4H9NO3 Isothreonine L-Homoserine CAS 672-15-1 Deoxidation Synthesized

Categories Amino Acids
Brand Name: Zhihua
Model Number: Handmade
Place of Origin: Made in China
MOQ: 1 Piece
Price: To be negotiated
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 1000Ton/Month
Delivery Time: 3-20Days
Packaging Details: 1KGS/Carton
CAS: 672-15-1
Product Name: L-Homoserine
Molecular Weight: 119.12
form  : powder
assay: ≥98% (TLC)
Chemical Formula: C4H9NO3
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    C4H9NO3 Isothreonine L-Homoserine CAS 672-15-1 Deoxidation Synthesized

    Homoserine (also called isothreonine) is an α-amino acid with the chemical formula HO2CCH(NH2)CH2CH2OH. l-Homoserine is not one of the common amino acids encoded by DNA. It differs from the proteinogenic amino acid serine by insertion of an additional -CH2- unit into the backbone. Homoserine, or its lactone form, is the product of a cyanogen bromide cleavage of a peptide by degradation of methionine.

    Homoserine is an intermediate in the biosynthesis of three essential amino acids: methionine, threonine (an isomer of homoserine), and isoleucine. It forms by two reductions of aspartic acid via the intermediacy of aspartate semialdehyde


    L-Homoserine is synthesized by deoxidation process, catalysed by homoserine dehydrogenase. This is one of the steps in the synthesis of L-threonine. The carbon flux in in bacteria such as E. coli is maintained by this reaction. L-Homoserine is used in the biosynthesis of methionine, threonine and isoleucine.


    Property NameProperty Value
    Molecular Weight119.12
    XLogP3-4.4
    Hydrogen Bond Donor Count3
    Hydrogen Bond Acceptor Count4
    Rotatable Bond Count3
    Exact Mass119.0582431
    Monoisotopic Mass119.0582431
    Topological Polar Surface Area83.6 Ų
    Heavy Atom Count8
    Formal Charge0
    Complexity83.4
    Isotope Atom Count0
    Defined Atom Stereocenter Count1
    Undefined Atom Stereocenter Count0
    Defined Bond Stereocenter Count0
    Undefined Bond Stereocenter Count0
    Covalently-Bonded Unit Count1
    Compound Is CanonicalizedYes

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