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1-(3-chlorophenyl)-1H-quinazoline-2,4-dione is a chemical compound with the molecular formula C14H8ClNO2. It is a derivative of quinazoline, a tricyclic aromatic organic compound, and features a chlorophenyl group attached to the 1-position of the quinazoline ring. 1-(3-chlorophenyl)-1H-quinazoline-2,4-dione is known for its potential applications in medicinal chemistry, particularly as a building block for the synthesis of various quinazoline-based drugs. The presence of the chlorophenyl group can influence the compound's reactivity and its ability to interact with biological targets, making it a subject of interest in the development of new therapeutic agents.

20865-85-4

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20865-85-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 20865-85-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,0,8,6 and 5 respectively; the second part has 2 digits, 8 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 20865-85:
(7*2)+(6*0)+(5*8)+(4*6)+(3*5)+(2*8)+(1*5)=114
114 % 10 = 4
So 20865-85-4 is a valid CAS Registry Number.

20865-85-4Downstream Products

20865-85-4Relevant academic research and scientific papers

Chemical synthesis and characterization of a new quinazolinedione competitive antagonist for strigolactone receptors with an unexpected binding mode

Hamiaux, Cyril,Larsen, Lesley,Lee, Hui Wen,Luo, Zhiwei,Sharma, Prachi,Hawkins, Bill C.,Perry, Nigel B.,Snowden, Kimberley C.

, p. 1843 - 1856 (2019)

Strigolactones (SLs) are multifunctional plant hormones regulating essential physiological processes affecting growth and development. In vascular plants, SLs are recognized by α/β hydrolase-fold proteins from the D14/DAD2 (Dwarf14/Decreased Apical Dominance 2) family in the initial step of the signaling pathway. We have previously discovered that N-phenylanthranilic acid derivatives (e.g. tolfenamic acid) are potent antagonists of SL receptors, prompting us to design quinazolinone and quinazolinedione derivatives (QADs and QADDs, respectively) as second-generation antagonists. Initial in silico docking studies suggested that these compounds would bind to DAD2, the petunia SL receptor, with higher affinity than the first-generation compounds. However, only one of the QADs/ QADDs tested in in vitro assays acted as a competitive antagonist of SL receptors, with reduced affinity and potency compared with its N-phenylanthranilic acid ‘parent’. X-ray crystal structure analysis revealed that the binding mode of the active QADD inside DAD2’s cavity was not that predicted in silico, highlighting a novel inhibition mechanism for SL receptors. Despite a ~10-fold difference in potency in vitro, the QADD and tolfenamic acid had comparable activity in planta, suggesting that the QADD compensates for lower potency with increased bioavailability. Altogether, our results establish this QADD as a novel lead compound towards the development of potent and bioavailable antagonists of SL receptors.

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