Identification of new modulator of DNA repairing pathways based on natural product (±)-peharmaline A
| Title | Identification of new modulator of DNA repairing pathways based on natural product (±)-peharmaline A |
| Publication Type | Journal Article |
| Year of Publication | 2023 |
| Authors | Kulkarni, AS, Dash, A, Shingare, RD, Chand, J, Manhas, D, Singh, A, Nandi, U, Goswami, A, D. Reddy, S |
| Journal | Bioorganic & Medicinal Chemistry |
| Volume | 91 |
| Pagination | 117365 |
| Date Published | AUG |
| Type of Article | Article |
| ISSN | 0968-0896 |
| Keywords | DNA damage, EMT, Pictet, Spengler reaction, Structure-activity relationship, Total synthesis |
| Abstract | The complex heterogenic environment of tumour mass often leads to drug resistance and facilitate chemo insensitivity triggering more malignant phenotypes among cancer patients. Major DNA-damaging cancer drugs have been consistently proven unsuccessful in terms of elevating chemo-resistance. (& PLUSMN;)-peharmaline A, a hybrid natural product isolated from seeds of Peganum harmala L. possesses significant cytotoxic activities. Herein, we have described the design, and synthesis of a novel library of close and simplified analogues around the anticancer natural product (& PLUSMN;)-peharmaline A and investigated their cytotoxic activities, which led to the identification of three structurally simplified lead compounds exhibiting better potency than parent natural product. Among them, demethoxy analogue of peharmaline A was further investigated for its anticancer potential eliciting demethoxy analogue as potent DNA-damage inducing agent attenuating the expression of the proteins responsible for the DNA damage repair. Therefore, this demethoxy analogue warrants detailed investigations for the confirmations of the molecular mechanism-based studies responsible for its anticancer activity. |
| DOI | 10.1016/j.bmc.2023.117365 |
| Type of Journal (Indian or Foreign) | Foreign |
| Impact Factor (IF) | 3.5 |
