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Rlip缺失在多个不同调控水平改变癌基因转录。

Rlip Depletion Alters Oncogene Transcription at Multiple Distinct Regulatory Levels.

作者信息

Hindle Ashly, Bose Chhanda, Lee Jihyun, Palade Philip T, Peterson Christopher J, Reddy P Hemachandra, Awasthi Sanjay, Singh Sharda P

机构信息

Department of Internal Medicine, Texas Tech University Health Sciences Center, Lubbock, TX 79430, USA.

Division of Hematology & Oncology, Department of Internal Medicine, Texas Tech University Health Sciences Center, Lubbock, TX 79430, USA.

出版信息

Cancers (Basel). 2022 Jan 21;14(3):527. doi: 10.3390/cancers14030527.

Abstract

Rlip76 (Rlip) is a multifunctional membrane protein that facilitates the high metabolic rates of cancer cells through the efflux of toxic metabolites and other functions. Rlip inhibition or depletion results in broad-spectrum anti-cancer effects in vitro and in vivo. Rlip depletion effectively suppresses malignancy and causes global reversion of characteristic CpG island methylomic and transcriptomic aberrations in the p53-null mouse model of spontaneous carcinogenesis through incompletely defined signaling and transcriptomic mechanisms. The methylome and transcriptome are normally regulated by the concerted actions of several mechanisms that include chromatin remodeling, promoter methylation, transcription factor interactions, and miRNAs. The present studies investigated the interaction of Rlip depletion or inhibition with the promoter methylation and transcription of selected cancer-related genes identified as being affected by Rlip depletion in our previous studies. We constructed novel promoter CpG island/luciferase reporter plasmids that respond only to CpG methylation and transcription factors. We found that Rlip depletion regulated expression by a transcription factor-based mechanism that functioned independently of promoter CpG methylation, lipid peroxidation, and p53 status.

摘要

Rlip76(Rlip)是一种多功能膜蛋白,它通过排出有毒代谢产物及其他功能来促进癌细胞的高代谢率。Rlip的抑制或缺失在体外和体内均产生广谱抗癌作用。在p53基因缺失的自发癌变小鼠模型中,Rlip缺失通过不完全明确的信号传导和转录组机制有效抑制恶性肿瘤,并导致特征性CpG岛甲基化组和转录组畸变的全面逆转。甲基化组和转录组通常受多种机制协同作用的调控,这些机制包括染色质重塑、启动子甲基化、转录因子相互作用和微小RNA。本研究调查了Rlip缺失或抑制与在我们之前的研究中被确定受Rlip缺失影响的特定癌症相关基因的启动子甲基化和转录之间的相互作用。我们构建了仅对CpG甲基化和转录因子有反应的新型启动子CpG岛/荧光素酶报告质粒。我们发现,Rlip缺失通过一种基于转录因子的机制调节表达,该机制独立于启动子CpG甲基化、脂质过氧化和p53状态发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e77/8833773/9c570ebccfb2/cancers-14-00527-g001.jpg

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