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864263-02-5

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864263-02-5 Usage

General Description

4-(2-Fluorophenoxy)benzyl amine is a chemical compound with the molecular formula C13H12FNO. It is a benzyl amine derivative with a fluorophenyl group attached to the benzene ring. 4-(2-Fluorophenoxy)benzyl amine is commonly used in organic synthesis and medicinal chemistry research. It may also have potential applications in the development of pharmaceuticals and agrochemicals. The presence of the fluorophenyl group in the molecule may impart specific chemical and biological properties, which could make it useful for various applications. Overall, 4-(2-Fluorophenoxy)benzyl amine is a versatile compound with potential utility in the fields of chemistry and medicine.

Check Digit Verification of cas no

The CAS Registry Mumber 864263-02-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,6,4,2,6 and 3 respectively; the second part has 2 digits, 0 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 864263-02:
(8*8)+(7*6)+(6*4)+(5*2)+(4*6)+(3*3)+(2*0)+(1*2)=175
175 % 10 = 5
So 864263-02-5 is a valid CAS Registry Number.

864263-02-5Downstream Products

864263-02-5Relevant articles and documents

Natural Product Neopeltolide as a Cytochrome bc1 Complex Inhibitor: Mechanism of Action and Structural Modification

Zhu, Xiao-Lei,Zhang, Rui,Wu, Qiong-You,Song, Yong-Jun,Wang, Yu-Xia,Yang, Jing-Fang,Yang, Guang-Fu

, (2019/03/19)

The marine natural product neopeltolide was isolated from a deep-water sponge specimen of the family Neopeltidae. Neopeltolide has been proven to be a new type of inhibitor of the cytochrome bc1 complex in the mitochondrial respiration chain. However, its detailed inhibition mechanism has remained unknown. In addition, neopeltolide is difficult to synthesize because of its very complex chemical structure. In the present work, the binding mode of neopeltolide was determined for the first time by integrating molecular docking, molecular dynamics simulations, and molecular mechanics Poisson-Boltzmann surface area calculations, which showed that neopeltolide is a Qo site inhibitor of the bc1 complex. Then, according to guidance via inhibitor-protein interaction analysis, structural modification was carried out with the aim to simplify the chemical structure of neopeltolide, leading to the synthesis of a series of new neopeltolide derivatives with much simpler chemical structures. The calculated binding energies (ΔGcal) of the newly synthesized analogues correlated very well (R2 = 0.90) with their experimental binding free energies (ΔGexp), which confirmed that the computational protocol was reliable. Compound 45, bearing a diphenyl ether fragment, was successfully designed and synthesized as the most potent candidate (IC50 = 12 nM) against porcine succinate cytochrome c reductase. The molecular modeling results indicate that compound 45 formed a π-π interaction with Phe274 and two hydrogen bonds with Glu271 and His161. The present work provides a new starting point for future fungicide discovery to overcome the resistance that the existing bc1 complex inhibitors are facing.

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