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-(4-氟苄基)青蒿琥酯B诱导的ATF-4与C/EBPβ相互作用介导乳腺癌细胞从自噬向衰老的转变。

-(4-fluorobenzyl) Arteannuin B induced interaction of ATF-4 and C/EBPβ mediates the transition of breast cancer cells from autophagy to senescence.

作者信息

Mir Khalid Bashir, Faheem Mir Mohd, Ahmad Syed Mudabir, Rasool Javeed Ur, Amin Tanzeeba, Chakraborty Souneek, Bhagat Madhulika, Ahmed Zabeer, Ali Asif, Goswami Anindya

机构信息

Academy of Scientific & Innovative Research (AcSIR), Ghaziabad, India.

Pharmacology Division, Council of Scientific & Industrial Research (CSIR)-Indian Indian Institute of Integrative Medicine, Jammu, India.

出版信息

Front Oncol. 2022 Nov 17;12:1013500. doi: 10.3389/fonc.2022.1013500. eCollection 2022.

Abstract

ATF-4 is a master regulator of transcription of genes essential for cellular-adaptive function. In response to the quantum and duration of stress, ATF-4 diligently responds to both pro-apoptotic and pro-survival signals converging into either autophagy or apoptosis/senescence. Despite emerging cues implying a relationship between autophagy and senescence, how these two processes are controlled remains unknown. Herein, we demonstrate -(4-fluorobenzyl) Arteannuin B (here after Arteannuin 09), a novel semisynthetic derivative of Arteannuin B, as a potent ER stress inducer leading to the consistent activation of ATF-4. Persistent ATF-4 expression at early time-points facilitates the autophagy program and consequently by upregulating p21 at later time-points, the signaling is shifted towards G/M cell cycle arrest. As bZIP transcription factors including ATF-4 are obligate dimers, and because ATF-4 homodimers are not highly stable, we hypothesized that ATF-4 may induce p21 expression by physically interacting with another bZIP family member i.e., C/EBPβ. Our co-immunoprecipitation and co-localization studies demonstrated that ATF-4 is principally responsible for the autophagic potential of Arteannuin 09, while as, induction of both ATF-4 and C/EBPβ is indispensable for the p21 regulated-cell cycle arrest. Interestingly, inhibition of autophagy signaling switches the fate of Arteannuin 09 treated cells from senescence to apoptosis. Lastly, our data accomplished that Arteannuin 09 is a potent inhibitor of tumor growth and inducer of premature senescence .

摘要

ATF-4是细胞适应性功能所必需基因转录的主要调节因子。响应应激的量和持续时间,ATF-4会积极响应促凋亡和促生存信号,这些信号汇聚为自噬或凋亡/衰老。尽管有新线索暗示自噬与衰老之间存在关联,但这两个过程如何被调控仍不清楚。在此,我们证明了青蒿琥酯B的新型半合成衍生物-(4-氟苄基)青蒿琥酯B(以下简称青蒿琥酯09)是一种有效的内质网应激诱导剂,可导致ATF-4持续激活。早期时间点持续的ATF-4表达促进自噬程序,因此在后期时间点通过上调p21,信号转导转向G/M期细胞周期停滞。由于包括ATF-4在内的bZIP转录因子是 obligate二聚体,并且由于ATF-4同型二聚体不太稳定,我们推测ATF-4可能通过与另一个bZIP家族成员即C/EBPβ物理相互作用来诱导p21表达。我们的免疫共沉淀和共定位研究表明,ATF-4主要负责青蒿琥酯09的自噬潜能,而ATF-4和C/EBPβ的诱导对于p21调节的细胞周期停滞都是不可或缺的。有趣的是,抑制自噬信号会将青蒿琥酯09处理的细胞命运从衰老转变为凋亡。最后,我们的数据表明青蒿琥酯09是一种有效的肿瘤生长抑制剂和早衰诱导剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dae8/9713483/7e625e06e3d0/fonc-12-1013500-g001.jpg

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