A Novel Phenazine Analog, CPUL1, Suppresses Autophagic Flux and Proliferation in Hepatocellular Carcinoma: Insight from Integrated Transcriptomic and Metabolomic Analysis

Author:

Chen Jiaqin1,Feng Dong2,Lu Yuanyuan1ORCID,Zhang Yanjun1,Jiang Hanxiang1,Yuan Man3,Xu Yifan3,Zou Jianjun45,Zhu Yubing45,Zhang Jingjing45,Ge Chun45ORCID,Wang Ying1

Affiliation:

1. School of Life Science and Technology, China Pharmaceutical University, Nanjing 211198, China

2. Nanjing Southern Pharmaceutical Technology Co., Ltd., Nanjing 211100, China

3. Department of Clinical Pharmacy, School of Basic Medicine & Clinical Pharmacy, China Pharmaceutical University, Nanjing 210009, China

4. Department of Pharmacy, Nanjing First Hospital, Nanjing Medical University, Nanjing 210006, China

5. Department of Clinical Pharmacology, Nanjing First Hospital, Nanjing Medical University, Nanjing 210006, China

Abstract

Background: CPUL1, a phenazine analog, has demonstrated potent antitumor properties against hepatocellular carcinoma (HCC) and indicates a promising prospect in pharmaceutical development. However, the underlying mechanisms remain largely obscure. Methods: Multiple HCC cell lines were used to investigate the in vitro effects of CPUL1. The antineoplastic properties of CPUL1 were assessed in vivo by establishing a xenograft nude mice model. After that, metabolomics, transcriptomics, and bioinformatics were integrated to elucidate the mechanisms underlying the therapeutic efficacy of CPUL1, highlighting an unanticipated involvement of autophagy dysregulation. Results: CPUL1 suppressed HCC cell proliferation in vitro and in vivo, thereby endorsing the potential as a leading agent for HCC therapy. Integrative omics characterized a deteriorating scenario of metabolic debilitation with CPUL1, presenting an issue in the autophagy contribution of autophagy. Subsequent observations indicated that CPUL1 treatment could impede autophagic flow by suppressing autophagosome degradation rather than its formation, which supposedly exacerbated cellular damage triggered by metabolic impairment. Moreover, the observed late autophagosome degradation may be attributed to lysosome dysfunction, which is essential for the final stage of autophagy and cargo disposal. Conclusions: Our study comprehensively profiled the anti-hepatoma characteristics and molecular mechanisms of CPUL1, highlighting the implications of progressive metabolic failure. This could partially be ascribed to autophagy blockage, which supposedly conveyed nutritional deprivation and intensified cellular vulnerability to stress.

Funder

National Nature Science Foundation of China

Nanjing Science and Technology Development Foundation

China Postdoctoral Science Foundation

Publisher

MDPI AG

Subject

Cancer Research,Oncology

Reference77 articles.

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