Literature DB >> 30303002

Ancistrolikokine E3, a 5,8'-Coupled Naphthylisoquinoline Alkaloid, Eliminates the Tolerance of Cancer Cells to Nutrition Starvation by Inhibition of the Akt/mTOR/Autophagy Signaling Pathway.

Suresh Awale1, Dya Fita Dibwe1, Chandrasekar Balachandran1, Shaimaa Fayez2, Doris Feineis2, Blaise Kimbadi Lombe2,3, Gerhard Bringmann2.   

Abstract

PANC-1 human pancreatic cancer cells are characterized by their ability to proliferate aggressively under hypovascular and hypoxic conditions in the tumor microenvironment, displaying a remarkable tolerance to nutrition starvation. The antiausterity strategy is a new approach in anticancer drug discovery aiming at the identification of potent agents that inhibit preferentially the survival of tumor cells during a limited supply of nutrients and oxygen. The new 5,8'-coupled naphthyldihydroisoquinoline alkaloid ancistrolikokine E3 (4), isolated from the Congolese liana Ancistrocladus likoko, showed potent preferential cytotoxicity against PANC-1 cells under nutrient-deprived conditions, with a PC50 value of 2.5 μM, without exhibiting toxicity in normal, nutrient-rich medium. The compound was found to induce dramatic alterations in cell morphology, leading to cell death. Moreover, it inhibited significantly PANC-1 cell migration and colony formation in a concentration-dependent manner. This study on 4 provides the first live evidence of the effect of a naphthyldihydroisoquinoline alkaloid against PANC-1 cells in nutrient-deprived medium. Mechanistic investigations conducted suggest that compound 4 is a potent inhibitor of the activation of the Akt/mTOR pathway. Furthermore, it inhibited the expression levels of the key autophagy regulators Atg5, Atg12, Beclin-1, LC3-I, and LC3-II. The results demonstrated that ancistrolikokine E3 (4) is a potent early-stage inhibitor of the autophagy pathway in PANC-1 human pancreatic cancer cells. Ancistrolikokine E3 (4) and related naphthylisoquinoline alkaloids are promising potential lead compounds for anticancer drug development based on the antiausterity strategy.

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Year:  2018        PMID: 30303002     DOI: 10.1021/acs.jnatprod.8b00733

Source DB:  PubMed          Journal:  J Nat Prod        ISSN: 0163-3864            Impact factor:   4.050


  7 in total

1.  Periplocin Induces Apoptosis of Pancreatic Cancer Cells through Autophagy via the AMPK/mTOR Pathway.

Authors:  Hewei Zhang; Yongqiang Wang; Yan Zhang; Beishi Zheng; Xiaowu Wang; Jiawei Chen; Bicheng Chen; Gangyin Xie; Lihong Yang
Journal:  J Oncol       Date:  2022-07-05       Impact factor: 4.501

Review 2.  Regulation and function of autophagy in pancreatic cancer.

Authors:  Jingbo Li; Xin Chen; Rui Kang; Herbert Zeh; Daniel J Klionsky; Daolin Tang
Journal:  Autophagy       Date:  2020-11-20       Impact factor: 16.016

Review 3.  Tumor microenvironment: a prospective target of natural alkaloids for cancer treatment.

Authors:  Yanming Luo; Shuangshuang Yin; Jia Lu; Shiyue Zhou; Yingying Shao; Xiaomei Bao; Tao Wang; Yuling Qiu; Haiyang Yu
Journal:  Cancer Cell Int       Date:  2021-07-20       Impact factor: 5.722

4.  Anti-Austerity Activity of Thai Medicinal Plants: Chemical Constituents and Anti-Pancreatic Cancer Activities of Kaempferia parviflora.

Authors:  Sijia Sun; Min Jo Kim; Dya Fita Dibwe; Ashraf M Omar; Sirivan Athikomkulchai; Ampai Phrutivorapongkul; Takuya Okada; Kiyoshi Tsuge; Naoki Toyooka; Suresh Awale
Journal:  Plants (Basel)       Date:  2021-01-25

5.  Antiprotozoal dimeric naphthylisoquinolines, mbandakamines B3 and B4, and related 5,8'-coupled monomeric alkaloids, ikelacongolines A-D, from a Congolese Ancistrocladus liana.

Authors:  Jean-Pierre Mufusama; Doris Feineis; Virima Mudogo; Marcel Kaiser; Reto Brun; Gerhard Bringmann
Journal:  RSC Adv       Date:  2019-04-16       Impact factor: 4.036

6.  Sidechain Diversification of Grandifloracin Allows Identification of Analogues with Enhanced Anti-Austerity Activity against Human PANC-1 Pancreatic Cancer Cells.

Authors:  Benjamin E Alexander; Sijia Sun; Matthew J Palframan; Gabriele Kociok-Köhn; Dya Fita Dibwe; Shiro Watanabe; Lorenzo Caggiano; Suresh Awale; Simon E Lewis
Journal:  ChemMedChem       Date:  2019-12-10       Impact factor: 3.466

7.  Mitochondrial Targeting in an Anti-Austerity Approach Involving Bioactive Metabolites Isolated from the Marine-Derived Fungus Aspergillus sp.

Authors:  Waleed A Abdel-Naime; Atsushi Kimishima; Andi Setiawan; John Refaat Fahim; Mostafa A Fouad; Mohamed Salah Kamel; Masayoshi Arai
Journal:  Mar Drugs       Date:  2020-11-07       Impact factor: 5.118

  7 in total

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