含4-氨基二芳醚结构的辅酶Q衍生物的合成与生物活性研究
收稿日期: 2020-11-20
修回日期: 2020-12-21
网络出版日期: 2021-02-22
基金资助
湖北省教育厅重点项目(D20192601); 湖北文理学院创新团队培育基金(2020kypyt004); 国家级大学生创新创业训练计划(201910519006); 湖北文理学院科研启动基金(2059057)
Synthesis and Biological Activities of Coenzyme Q Derivatives Containing (4-Aryloxylaryl)amino Moiety
Received date: 2020-11-20
Revised date: 2020-12-21
Online published: 2021-02-22
Supported by
Key Project of Hubei Provincial Department of Education(D20192601); Innovation Team Cultivation Fund of Hubei University of Arts and Sciences(2020kypyt004); National Undergraduate Innovation and Entrepreneurship Training Program(201910519006); Starting Research Fund of Hubei University of Arts and Science(2059057)
辅酶Q是天然存在于多种生物细胞且拥有重要生理功能的一类有机化合物, 因其自身的生化作用和药理作用得到了密切关注. 此外, 二芳醚广泛存在于多种医药及农药等生物活性分子中. 鉴于辅酶Q的独特结构与生理功能, 结合二芳醚片段的广泛生物活性与前期工作基础, 设计合成了一系列含4-氨基二芳醚结构的辅酶Q衍生物, 所得目标化合物的结构经1H NMR、13C NMR、高分辨质谱(HRMS)及熔点的确认. 测试了该类化合物对猪心来源琥珀酸-细胞色素c氧化还原酶(SCR)的抑制活性, 并对其开展了活体杀菌、除草及杀虫活性研究. 实验结果表明, 部分化合物具有一定的活性, 展现出进一步研究的潜在价值.
秦啸天 , 张俊朝 , 何钰晴 , 张锐 , 程华 , 陈宬 , 秦鑫 . 含4-氨基二芳醚结构的辅酶Q衍生物的合成与生物活性研究[J]. 有机化学, 2021 , 41(5) : 2045 -2054 . DOI: 10.6023/cjoc202011026
Coenzyme Q is a class of compounds that naturally exist in a variety of biological cells and have important physiological functions. They have attracted extensive attention due to their own biochemical and pharmacological effects. In addition, the diaryl ether skeleton is widely present in many biologically active molecules such as medicines and pesticides. In view of the unique structures and physiological functions of coenzyme Q, combined with the extensive biological activity of diaryl ether fragments and the basis of our previous work, a series of coenzyme Q derivatives containing (4-aryloxylaryl)- amino moiety were designed and synthesized. The structures of the target compounds were confirmed by nuclear magnetic resonance spectroscopy (1H NMR and 13C NMR), high resolution mass spectrometry (HRMS) and melting point measurements. Subsequently, the in vitro inhibitory activities of these compounds against porcine heart succinate-cytochrome c oxidoreductase (SCR) as well as their in vivobactericidal, herbicidal and insecticidal activities were evaluated. The bioassay results indicated that some compounds demonstrated certain biological activity, showing the potential values for further investigations.
Key words: coenzyme Q; derivative; diaryl ether; synthesis; biological activity
| [1] | Lipshutz, B. H.; Bulow, G.; Fernandez-Lazaro, F.; Kim, S. K.; Lowe, R.; Mollard, P.; Stevens, K. L. J. Am. Chem. Soc. 1999, 121, 11664. |
| [2] | Olgun, A.; Akman, S.; Tezcan, S.; Kutluay, T. Med. Hypotheses 2003, 60, 325. |
| [3] | Li, Q.; Gu, K.; Cheng, X. H. Chin. J. Org. Chem. 2005, 25, 1494. (in Chinese). |
| [3] | (李全, 古昆, 程晓红, 有机化学, 2005, 25, 1494.) |
| [4] | Festenstein, G. N.; Heaton, F. W.; Lowe, J. S.; Morton, R.A., Biochem. J. 1955, 59, 558. |
| [5] | Mitchell, P. FEBS Lett. 1975, 56, 1. |
| [6] | Frei, B.; Kim, M. C.; Ames, B. Proc. Natl. Acad. Sci. U. S. A. 1990, 87, 4879. |
| [7] | Brancato, R.; Fiore, T.; Papucci, L.; Schiavone, N.; Formigli, L.; Orlandini, S. Z.; Gobbi, P. G.; Carones, F.; Donnini, M.; Lapucci, A.; Capaccioli, S. J. Refract. Surg. 2002, 18, 135. |
| [8] | Schmelzer, C.; Lindner, I.; Vock, C.; Fujji, K.; D?ring, F. IUBMB Life 2007, 59, 628. |
| [9] | Chen, S.; Zhang, Y. H.; Han, Y. H.; Mc Clements, D. J.; Liao, W. Y.; Mao, L. K.; Yuan, F.; Gao, Y. X. Food Hydrocolloids 2020, 109, 106090. |
| [10] | Bentinger, M.; Brismar, K.; Dallner, G. Mitochondrion 2007, 7S, S41. |
| [11] | Tiano, L.; Belardinelli, R.; Carnevali, P.; Principi, F.; Seddaiu, G.; Littarru, G. P. Eur. Heart J. 2007, 28, 2249. |
| [12] | Moreira, P. I.; Zhu, X. W.; Wang, X. L.; Lee, H. Y.; Nunomura, A.; Petersen, R. B.; Perry, G.; Smith, M. A. Biochim. Biophys. Acta 2010, 1802, 212. |
| [13] | Sourris, K. C.; Harcourt, B. E.; Tang, P. H.; Morley, A. L.; Huynh, K.; Penfold, S. A.; Coughlan, M. T.; Cooper, M. E.; Nguyen, T. V.; Ritchie, R. H.; Forbes, J. M. Free Radical Biol. Med. 2012, 52, 716. |
| [14] | Conklin, K. A.; Nicolson, G. L. Curr. Cancer Ther. Rev. 2008, 4, 66. |
| [15] | Comhair, S. A.; Grandon, D.; Khan, A.; Zhang, R.; Hazen, S. L.; Erzurum, S. C. Am. J. Respir. Crit. Care Med. 2015, 191, 1336. |
| [16] | Xiong, M. Q.; Chen, T.; Wang, Y. X.; Zhu, X. L.; Yang, G. F. Bioorg. Med. Chem. Lett. 2020, 30, 127324. |
| [17] | Chen, T.; Xiong, H.; Yang, J. F.; Zhu, X. L.; Qu, R. Y.; Yang, G. F. J. Agric. Food Chem. 2020, 68, 9839. |
| [18] | Pitsinos, E. N.; Vidali, V. P.; Couladouros, E. A. Eur. J. Org. Chem. 2011,1207. |
| [19] | Dua, R.; Shrivastava, S.; Sonwane, S. K.; Srivastava, S. K.; Gour, H. S. Adv. Biol. Res. 2011, 5, 120. |
| [20] | Bedos-Belval, F.; Rouch, A.; Vanucci-Bacque, C.; Baltas, M. MedChemComm 2012, 3, 1356. |
| [21] | Zhu, X. L.; Zhang, R.; Wu, Q. Y.; Song, Y. J.; Wang, Y. X.; Yang, J. F.; Yang, G. F. J. Agric. Food Chem. 2019, 67, 2774. |
| [22] | Ikeda, R.; Che, X. F.; Yamaguchi, T.; Ushiyama, M.; Zheng, C. L.; Okumura, H.; Takeda, Y.; Shibayama, Y.; Nakamura, K.; Jeung, H. C.; Furukawa, T.; Sumizawa, T.; Haraguchi, M.; Akiyama, S. I.; Yamada, K. Cancer Sci. 2005, 96, 372. |
| [23] | Rainsford, K. D. Curr. Med. Res. Opin. 2006, 22, 1161. |
| [24] | Pan, Z. Y.; Scheerens, H.; Li, S. J.; Schultz, B. E.; Sprengeler, P. A.; Burrill, L. C.; Mendonca, R. V.; Sweeney, M. D.; Scott, K. C. K.; Grothaus, P. G.; Jeffery, D. A.; Spoerke, J. M.; Honigberg, L. A.; Young, P. R.; Dalrymple, S. A.; Palmer, J. T. ChemMedChem 2007, 2, 58. |
| [25] | Llovet, J. M.; Ricci, S.; Mazzaferro, V.; Hilgard, P.; Gane, E.; Blanc, J. F.; de Oliveira, A. C.; Santoro, A.; Raoul, J. L.; Forner, A.; Schwartz, M.; Porta, C.; Zeuzem, S.; Bolondi, L.; Greten, T. F.; Galle, P. R.; Seitz, J. F.; Borbath, I.; Haussinger, D.; Giannaris, T.; Shan, M. H.; Moscovici, M.; Voliotis, D.; Bruix, J. N. Engl. J. Med. 2008, 359, 378. |
| [26] | Meng, Z. P.; Li, T.; Ma, X. X.; Wang, X. Q.; Van Ness, C.; Gan, Y. C.; Zhou, H.; Tang, J. F.; Lou, G. Y.; Wang, Y. F.; Wu, J.; Yen, Y.; Xu, R. Z.; Huang, W. D. Mol. Cancer Ther. 2013, 12, 2067. |
| [27] | Shu, G. W.; Yue, L.; Zhao, W. H.; Xu, C.; Yang, J.; Wang, S. B.; Yang, X. Z. J. Agric. Food Chem. 2015, 63, 8793. |
| [28] | Gupta, N.; Wish, J. B. Am. J. Kidney Dis. 2017, 69, 815. |
| [29] | Ju, C.; Zhang, H. C.; Yao, S. J.; Dong, S. X.; Cao, D. T.; Wang, F. Y.; Fang, H.; Yu, Y. L. J. Agric. Food Chem. 2019, 67, 6691. |
| [30] | Feng, X. X.; Wang, K.; Pan, L. X.; Xu, T. H.; Zhang, H. Y.; Fantke, P. J. Agric. Food Chem. 2018, 66, 8489. |
| [31] | Aupinel, P.; Fortini, D.; Michaud, B.; Marolleau, F.; Tasei, J. N.; Odoux, J. F. Pest Manage. Sci. 2007, 63, 1090. |
| [32] | Fernandez, P.; Alcantara, R.; Osuna, M. D.; Vila-Aiub, M. M.; De Prado, R. Pest Manage. Sci. 2017, 73, 936. |
| [33] | Prime, M. E.; Andersen, O. A.; Barker, J. J.; Brook, M. A.; Cheng, R. K. Y.; Toogood-Johnson, I.; Courtney, S. M.; Brookfield, F. A.; Yarnold, C. J.; Marston, R. W.; Johson, P. D.; Johnsen, S. F.; Palfrey, J. J.; Vaidya, D.; Sayeh, E.; Osamu, I.; Brunella, F.; Shilpa, P.; Anna, P. D.; Sabine, S.; Ina, S.; Andreas, E.; Andreas, S.; Winkler, D.; Leticia, T. S.; Maria, B.; Macdonald, D.; Ignacio, M. S.; Dominguez, C.; John, W. J. Med. Chem. 2012, 55, 1021. |
| [34] | Alessia, C.; Alessia, C.; Ivana, D.; Marilena, M.; Antonio, C.; Fran?oise, V. B.; Antonio, R.; Filomena, C.; Carlo, F. Eur. J. Med. Chem. 2013, 64, 357. |
| [35] | Xiong, L.; Zhu, X. L.; Shen, Y. Q.; Wishwa, W. K. W. M.; Li, K.; Yang, G. F.; Eur. J. Med. Chem. 2015, 95, 424. |
| [36] | Wang, G. C.; Peng, Z. Y.; Wang, J.; Li, J.; Li, X. Bioorg. Med. Chem. 2016, 24, 5374. |
| [37] | Yoshioka, H.; Yamada, A.; Nishiyama, Y.; Kagechika, H.; Hashimoto, Y.; Fujii, S. Bioorg. Med. Chem. 2017, 25, 3461. |
| [38] | Xiong, L.; Li, H.; Jiang, L. N.; Ge, J. M.; Yang, W. C.; Zhu, X. L.; Yang, G. F. J. Agric. Food Chem. 2017, 65, 1021. |
| [39] | Qu, R. Y.; Yang, J. F.; Devendar, P.; Kang, W. M.; Liu, Y. C.; Chen, Q.; Niu, C. W.; Xi, Z.; Yang, G. F. J. Agric. Food Chem. 2017, 65, 11170. |
| [40] | Lei, S. W.; Zhang, D. D.; Qi, Y. Y.; Chowdhury, S. R.; Sun, R.; Wang, J. T.; Du, Y.; Fu, L.; Jiang, F. Q. Eur. J. Med. Chem. 2020, 205, 112508. |
| [41] | Li, H.; Gao, M. Q.; Chen, Y.; Wang, Y. X.; Zhu, X. L.; Yang, G. F. J. Agric. Food Chem. 2020, 68, 14001. |
| [42] | Cheng, H.; Jiang, W.; Shen, Y. Q.; Pan, X. Y.; Hou, Y. P.; Wu, Q. Y.; Yang, G. F. New J. Chem. 2015, 39, 7281. |
| [43] | Cheng, H.; Nie, R.; Wang, W. Q.; Huang, L.; Liu, K.; Chen, C.; Wu, Q. Y. Chin. J. Org. Chem. 2017, 37, 1368. (in Chinese). |
| [43] | (程华, 聂忍, 汪万强, 黄琳, 刘科, 陈宬, 吴琼友, 有机化学, 2017, 37, 1368.) |
| [44] | Cheng, H.; Song, W.; Nie, R.; Wang, Y. X.; Li, H. L.; Jiang, X. S.; Wu, J. J.; Chen, C.; Wu, Q. Y. Bioorg. Med. Chem. Lett. 2018, 28, 1330. |
| [45] | Cheng, H.; Fu, Y.; Chang, Q.; Zhang, N.; Bu, M. W.; Niu, Y.; Wu, Q. Y.; Chen, C.; Francis, V. Chin. Chem. Lett. 2018, 29, 1897. |
| [46] | Wang, W. Q.; Cheng, L.; Peng, H. Y.; Yao, W. Z.; Zhang, R.; Chen, C.; Cheng, H. Chin. J. Org. Chem. 2019, 39, 2851. (in Chinese). |
| [46] | (汪万强, 程兰, 彭宏英, 姚维忠, 张锐, 陈宬, 程华, 有机化学, 2019, 39, 2851.) |
| [47] | Cheng, H.; Yang, L.; Liu, H. F.; Zhang, R.; Chen, C.; Wu, Y.; Jiang, W. Bioorg. Med. Chem. Lett. 2020, 30, 127302. |
| [48] | Cheng, H.; Liu, H. F.; Yang, L.; Zhang, R.; Chen, C.; Wu, Y.; Jiang, W. Bioorg. Med. Chem. 2020, 28, 115299. |
| [49] | Zhu, Y. Q.; Zhang, R.; Sang, W.; Wang, H. J.; Wu, Y.; Yu, B. Y.; Zhang, J. C.; Cheng, H.; Chen, C. Org. Chem. Front. 2020, 7, 1981. |
| [50] | Wang, J.; Hu, X.; Yang, J. Synthesis 2014, 46, 2371. |
/
| 〈 |
|
〉 |