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C30H44O9 is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

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  • 1310326-19-2 Structure
  • Basic information

    1. Product Name: C30H44O9
    2. Synonyms: C30H44O9
    3. CAS NO:1310326-19-2
    4. Molecular Formula:
    5. Molecular Weight: 548.674
    6. EINECS: N/A
    7. Product Categories: N/A
    8. Mol File: 1310326-19-2.mol
  • Chemical Properties

    1. Melting Point: N/A
    2. Boiling Point: N/A
    3. Flash Point: N/A
    4. Appearance: N/A
    5. Density: N/A
    6. Refractive Index: N/A
    7. Storage Temp.: N/A
    8. Solubility: N/A
    9. CAS DataBase Reference: C30H44O9(CAS DataBase Reference)
    10. NIST Chemistry Reference: C30H44O9(1310326-19-2)
    11. EPA Substance Registry System: C30H44O9(1310326-19-2)
  • Safety Data

    1. Hazard Codes: N/A
    2. Statements: N/A
    3. Safety Statements: N/A
    4. WGK Germany:
    5. RTECS:
    6. HazardClass: N/A
    7. PackingGroup: N/A
    8. Hazardous Substances Data: 1310326-19-2(Hazardous Substances Data)

1310326-19-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1310326-19-2 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,1,0,3,2 and 6 respectively; the second part has 2 digits, 1 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1310326-19:
(9*1)+(8*3)+(7*1)+(6*0)+(5*3)+(4*2)+(3*6)+(2*1)+(1*9)=92
92 % 10 = 2
So 1310326-19-2 is a valid CAS Registry Number.

1310326-19-2Downstream Products

1310326-19-2Relevant articles and documents

Enzyme-catalysed [4+2] cycloaddition is a key step in the biosynthesis of spinosyn A

Kim, Hak Joong,Ruszczycky, Mark W.,Choi, Sei-Hyun,Liu, Yung-Nan,Liu, Hung-Wen

, p. 109 - 112 (2011)

The Diels-Alder reaction is a [4+2] cycloaddition reaction in which a cyclohexene ring is formed between a 1,3-diene and an electron-deficient alkene via a single pericyclic transition state. This reaction has been proposed as a key transformation in the biosynthesis of many cyclohexene-containing secondary metabolites. However, only four purified enzymes have thus far been implicated in biotransformations that are consistent with a Diels-Alder reaction, namely solanapyrone synthase, LovB, macrophomate synthase, and riboflavin synthase. Although the stereochemical outcomes of these reactions indicate that the product formation could be enzyme-guided in each case, these enzymes typically demonstrate more than one catalytic activity, leaving their specific influence on the cycloaddition step uncertain. In our studies of the biosynthesis of spinosyn A, a tetracyclic polyketide-derived insecticide from Saccharopolyspora spinosa, we identified a cyclase, SpnF, that catalyses a transannular [4+2] cycloaddition to form the cyclohexene ring in spinosyn A. Kinetic analysis demonstrates that SpnF specifically accelerates the ring formation reaction with an estimated 500-fold rate enhancement. A second enzyme, SpnL, was also identified as responsible for the final cross-bridging step that completes the tetracyclic core of spinosyn A in a manner consistent with a Rauhut-Currier reaction. This work is significant because SpnF represents the first example characterized in vitro of a stand-alone enzyme solely committed to the catalysis of a [4+2] cycloaddition reaction. In addition, the mode of formation of the complex perhydro-as-indacene moiety in spinosyn A is now fully established.

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