Naseer Maliyakkal, Jong Min Oh, Sunil Kumar, Prashant Gahori, Anandkumar Tengli, Asmy Appadath Beeran, Hoon Kim, Bijo Mathew
{"title":"作为单胺氧化酶抑制剂的靛红基腙衍生物的合成、生物化学和硅学研究","authors":"Naseer Maliyakkal, Jong Min Oh, Sunil Kumar, Prashant Gahori, Anandkumar Tengli, Asmy Appadath Beeran, Hoon Kim, Bijo Mathew","doi":"10.1186/s13765-024-00917-3","DOIUrl":null,"url":null,"abstract":"<div><p>Ten isatin-based hydrazone derivatives were synthesized using two subseries, <b>IA</b> (isatin + acetophenone) and <b>IB</b> (isatin + benzaldehyde), and evaluated for their monoamine oxidases (MAOs) inhibitory activity. All the compounds showed stronger MAO-A inhibition than MAO-B, and the <b>IB</b> series showed more effective MAO-A inhibitory activity than <b>IA</b> series. Compound <b>IB4</b> most potently inhibited MAO-A (half maximal inhibitory concentration IC<sub>50</sub> = 0.015 µM), followed by <b>IB3</b> (IC<sub>50</sub> = 0.019 µM). On the contrary, compound <b>IB3</b> showed the highest MAO-B inhibition (IC<sub>50</sub> = 0.068 µM), followed by <b>IB4</b> (IC<sub>50</sub> = 1.87 µM). Compound <b>IB3</b> and <b>IB4</b> had low selectivity indices of 3.68 and 8.50, respectively. Structurally, the methyl group of <b>IA</b> series decreased the inhibition of both MAO-A and MAO-B. Among them, <b>IB3</b> and <b>IB4</b> (4-Cl and 4-Br in B-ring, respectively) showed higher MAO-A and MAO-B inhibition than the other substitutions. Inhibition constant K<sub>i</sub> values of <b>IB3</b> and <b>IB4</b> for MAO-A were 0.0088 and 0.0063 µM, respectively, and those for MAO-B were 0.048 and 0.060 µM, respectively. <b>IB3</b> and <b>IB4</b> were competitive, reversible inhibitors of MAO-A and MAO-B. Molecular docking analysis predicted that <b>IB3</b> and <b>IB4</b> formed stable hydrogen bonds between Asn181 and the NH atom of isatin in the ligand-protein complex. Dynamic analysis revealed that <b>IB3</b> and <b>IB4</b> are stable with both MAO isoforms. These observations suggest <b>IB3</b> and <b>IB4</b> are potent and reversible MAO-A and MAO-B inhibitors and both compounds can be used as therapeutic agents for neurological disorders.</p></div>","PeriodicalId":467,"journal":{"name":"Applied Biological Chemistry","volume":"67 1","pages":""},"PeriodicalIF":2.3000,"publicationDate":"2024-07-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://applbiolchem.springeropen.com/counter/pdf/10.1186/s13765-024-00917-3","citationCount":"0","resultStr":"{\"title\":\"Synthesis, biochemistry, and in silico investigations of isatin-based hydrazone derivatives as monoamine oxidase inhibitors\",\"authors\":\"Naseer Maliyakkal, Jong Min Oh, Sunil Kumar, Prashant Gahori, Anandkumar Tengli, Asmy Appadath Beeran, Hoon Kim, Bijo Mathew\",\"doi\":\"10.1186/s13765-024-00917-3\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Ten isatin-based hydrazone derivatives were synthesized using two subseries, <b>IA</b> (isatin + acetophenone) and <b>IB</b> (isatin + benzaldehyde), and evaluated for their monoamine oxidases (MAOs) inhibitory activity. All the compounds showed stronger MAO-A inhibition than MAO-B, and the <b>IB</b> series showed more effective MAO-A inhibitory activity than <b>IA</b> series. Compound <b>IB4</b> most potently inhibited MAO-A (half maximal inhibitory concentration IC<sub>50</sub> = 0.015 µM), followed by <b>IB3</b> (IC<sub>50</sub> = 0.019 µM). On the contrary, compound <b>IB3</b> showed the highest MAO-B inhibition (IC<sub>50</sub> = 0.068 µM), followed by <b>IB4</b> (IC<sub>50</sub> = 1.87 µM). Compound <b>IB3</b> and <b>IB4</b> had low selectivity indices of 3.68 and 8.50, respectively. Structurally, the methyl group of <b>IA</b> series decreased the inhibition of both MAO-A and MAO-B. Among them, <b>IB3</b> and <b>IB4</b> (4-Cl and 4-Br in B-ring, respectively) showed higher MAO-A and MAO-B inhibition than the other substitutions. Inhibition constant K<sub>i</sub> values of <b>IB3</b> and <b>IB4</b> for MAO-A were 0.0088 and 0.0063 µM, respectively, and those for MAO-B were 0.048 and 0.060 µM, respectively. <b>IB3</b> and <b>IB4</b> were competitive, reversible inhibitors of MAO-A and MAO-B. Molecular docking analysis predicted that <b>IB3</b> and <b>IB4</b> formed stable hydrogen bonds between Asn181 and the NH atom of isatin in the ligand-protein complex. Dynamic analysis revealed that <b>IB3</b> and <b>IB4</b> are stable with both MAO isoforms. These observations suggest <b>IB3</b> and <b>IB4</b> are potent and reversible MAO-A and MAO-B inhibitors and both compounds can be used as therapeutic agents for neurological disorders.</p></div>\",\"PeriodicalId\":467,\"journal\":{\"name\":\"Applied Biological Chemistry\",\"volume\":\"67 1\",\"pages\":\"\"},\"PeriodicalIF\":2.3000,\"publicationDate\":\"2024-07-16\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"https://applbiolchem.springeropen.com/counter/pdf/10.1186/s13765-024-00917-3\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Applied Biological Chemistry\",\"FirstCategoryId\":\"97\",\"ListUrlMain\":\"https://link.springer.com/article/10.1186/s13765-024-00917-3\",\"RegionNum\":3,\"RegionCategory\":\"农林科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q3\",\"JCRName\":\"FOOD SCIENCE & TECHNOLOGY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Applied Biological Chemistry","FirstCategoryId":"97","ListUrlMain":"https://link.springer.com/article/10.1186/s13765-024-00917-3","RegionNum":3,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"FOOD SCIENCE & TECHNOLOGY","Score":null,"Total":0}
Synthesis, biochemistry, and in silico investigations of isatin-based hydrazone derivatives as monoamine oxidase inhibitors
Ten isatin-based hydrazone derivatives were synthesized using two subseries, IA (isatin + acetophenone) and IB (isatin + benzaldehyde), and evaluated for their monoamine oxidases (MAOs) inhibitory activity. All the compounds showed stronger MAO-A inhibition than MAO-B, and the IB series showed more effective MAO-A inhibitory activity than IA series. Compound IB4 most potently inhibited MAO-A (half maximal inhibitory concentration IC50 = 0.015 µM), followed by IB3 (IC50 = 0.019 µM). On the contrary, compound IB3 showed the highest MAO-B inhibition (IC50 = 0.068 µM), followed by IB4 (IC50 = 1.87 µM). Compound IB3 and IB4 had low selectivity indices of 3.68 and 8.50, respectively. Structurally, the methyl group of IA series decreased the inhibition of both MAO-A and MAO-B. Among them, IB3 and IB4 (4-Cl and 4-Br in B-ring, respectively) showed higher MAO-A and MAO-B inhibition than the other substitutions. Inhibition constant Ki values of IB3 and IB4 for MAO-A were 0.0088 and 0.0063 µM, respectively, and those for MAO-B were 0.048 and 0.060 µM, respectively. IB3 and IB4 were competitive, reversible inhibitors of MAO-A and MAO-B. Molecular docking analysis predicted that IB3 and IB4 formed stable hydrogen bonds between Asn181 and the NH atom of isatin in the ligand-protein complex. Dynamic analysis revealed that IB3 and IB4 are stable with both MAO isoforms. These observations suggest IB3 and IB4 are potent and reversible MAO-A and MAO-B inhibitors and both compounds can be used as therapeutic agents for neurological disorders.
期刊介绍:
Applied Biological Chemistry aims to promote the interchange and dissemination of scientific data among researchers in the field of agricultural and biological chemistry. The journal covers biochemistry and molecular biology, medical and biomaterial science, food science, and environmental science as applied to multidisciplinary agriculture.