Nitration of deoxypeganine (DOP), deoxyvasicinone (DOV), 2,3-tetramethylene-, 2,3-pentamethylene-, and 3,4-dihydroquinazol-4-ones and their 1,2-dihydro derivatives was studied. It was shown that the reaction pathway changed depending on the presence of a carbonyl on C-4 and an N=C bond in these compounds. Only the H atom on C-6 was subject to nitration if both functional groups were present, for example DOV and its homologs. Substitution of the H atom of either the 6-position (DOP, 1,2-dihydro-DOV, and their homologs) or the 6- and 8-positions simultaneously (DOP and its homologs) was enhanced if one of these functional groups was missing depending on the substrate:nitrating agent ratio. The bromination and nitration reactions of 1,2-dihydro-DOV and its analogs in a 1:2 ratio were accompanied by oxidation of the N1H-CH bond with formation of 6,8-dibromo- and 6,8-nitro-DOV and their homologs. The difference in the behavior of these compounds was due to the different nucleophilicity of the benzene rings in them. The reaction of 1,2-dihydro-DOV and its homologs with isocyanates and p-nitro- and p-methylbenzoic acid chlorides was studied. 6-Nitro- and 6,8-dinitro-DOP and 6,8-dibromo- and 6,8-dinitro-DOV and their homologs and 6-bromo- and 6-nitro-1,2,3,4-tetrahydro-2,3-polymethylenequinazol-4-ones and their 1-alkyl(aryl)-carbamoyl and p-nitro(methyl)-benzoyl derivatives were synthesized. The molecular structures of 1-ethyl-and 1-(o-chlorophenyl)-carbamoyl-1,2-dihydrodeoxyvasicinones and 6,8-dinitro-2,3pentamethylene-3,4-dihydroquinazol-4-one were established.


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Kh. N. Khashimov, M. V. Telezhenetskaya, and S. Yu. Yunusov, Khim. Prir. Soedin., 456 (1969).
B. Kh. Zharkeev, M. V. Telezhenetskaya, Kh. N. Khashimov, and S. Yu. Yunusov, Khim. Prir. Soedin., 679 (1974).
Kh. M. Shakhidoyatov, A. Irisbaev, L. M. Yun, and Ch. Sh. Kadyrov, Khim. Geterotsikl. Soedin., 1564 (1976).
Kh. M. Shakhidoyatov, Quinazol-4-ones and Their Biological Activity [in Russian], Fan, Tashkent (1988), p. 56.
E. Oripov, Kh. M. Shakhidoyatov, and Ch. Sh. Kadyrov, Khim. Geterotsikl. Soedin., 684 (1976).
Kh. M. Shakhidoyatov, “Synthesis and Chemical Transformations of Quinazolones,” Doctoral Dissertation in Chemical Sciences, Tashkent (1983).
Kh. M. Shakhidoyatov and G. A. Belova, Khim. Prir. Soedin., 659 (1990).
Kh. M. Shakhidoyatov, Ya. Barakat, M. G. Levkovich, and N. D. Abdullaev, Khim. Prir. Soedin., 353 (2007).
A. L. D´yakonov, M. V. Telezhenetskaya, and B. Tashkhodzhaev, Khim. Prir. Soedin., 233 (1992).
A. Tozhiboev, K. K. Turgunov, B. Tashkhodzhaev, N. I. Mukarramov, and Kh. M. Shakhidoyatov, Dokl. Akad. Nauk Resp. Uzb., 59 (2006).
A. G. Tozhiboev, B. Tashkhodzhaev, K. K. Turgunov, N. I. Mukarramov, and Kh. M. Shakhidoyatov, Zh. Strukt. Khim., 48, No. 3, 575 (2007).
O. B. Ryabova, V. A. Makarov, L. M. Alekseeva, A. S. Shashkov, V. V. Chernyshev, and V. G. Granik, Izv. Ross. Akad. Nauk, Ser. Khim., 1851 (2005).
Ya. Barakat, Candidate Dissertation in Chemical Sciences, Tashkent (1998).
Kh. M. Shakhidoyatov, Z. U. Samarov, N. I. Mukarramov, M. G. Levkovich, N. D. Abdullaev, B. Tashkhodzhaev, Ya. Barakat, and B. A. Urakov, Khim. Prir. Soedin., 364 (2007).
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The work was supported financially by Basic Research of TsNT of the Republic of Uzbekistan (Project No. FA-FZT047).
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Translated from Khimiya Prirodnykh Soedinenii, No. 4, pp. 387-393, July-August, 2008. Original article submitted May 5, 2008.
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Samarov, Z.U., Khakimova, Z.M., Okmanov, R. et al. Reactions of Quinazoline Alkaloids and their Derivatives with Electrophilic Reagents. Chem Nat Compd 44, 480–488 (2008). https://doi.org/10.1007/s10600-008-9106-z
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DOI: https://doi.org/10.1007/s10600-008-9106-z


