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癌症诱导的FOXP1破坏并重新编程恶病质中骨骼肌的昼夜节律转录。

Cancer-induced FOXP1 disrupts and reprograms skeletal-muscle circadian transcription in cachexia.

作者信息

Ducharme Jeremy B, Neyroud Daria, Schonk Martin M, Gutierrez-Monreal Miguel A, Huo Zhiguang, Tucker Haley O, Esser Karyn A, Judge Sarah M, Judge Andrew R

机构信息

Department of Physical Therapy, University of Florida, Gainesville, FL, USA; Myology Institute, University of Florida, Gainesville, FL, USA; University of Florida Health Cancer Center, Gainesville, FL, USA.

Department of Physical Therapy, University of Florida, Gainesville, FL, USA; Myology Institute, University of Florida, Gainesville, FL, USA.

出版信息

Cell Rep. 2025 May 27;44(5):115689. doi: 10.1016/j.celrep.2025.115689. Epub 2025 May 10.

Abstract

Cancer cachexia is a debilitating metabolic disorder characterized by involuntary loss of body and muscle mass, leading to increased morbidity and mortality. We previously found that forkhead box P1 (FoxP1) upregulation in skeletal muscle causes muscle wasting and is required for muscle wasting in response to cancer. However, transcriptional networks targeted by FoxP1 in skeletal muscles undergoing cancer-induced wasting remain largely unknown. Here, we identify FoxP1 as a key disruptor of the skeletal-muscle clock in response to cancer that reprograms circadian patterns of gene expression at cachexia onset. Specifically, we show that cancer-induced FoxP1 rewires the skeletal-muscle circadian transcriptome toward pathways associated with muscle wasting and disrupts the temporal patterning of pathways governing glucose, lipid, and oxidative metabolism. These findings thus implicate cancer/disease-specific functions of FOXP1 in the disruption and reprograming of the skeletal-muscle circadian transcriptome, which may contribute to muscle wasting and the development of cachexia.

摘要

癌症恶病质是一种使人衰弱的代谢紊乱疾病,其特征是身体和肌肉质量不由自主地丧失,导致发病率和死亡率增加。我们之前发现,骨骼肌中叉头框P1(FoxP1)的上调会导致肌肉萎缩,并且是癌症引起的肌肉萎缩所必需的。然而,在经历癌症诱导性萎缩的骨骼肌中,FoxP1靶向的转录网络在很大程度上仍然未知。在此,我们确定FoxP1是癌症引发的骨骼肌生物钟的关键破坏因子,它在恶病质发作时重新编程基因表达的昼夜节律模式。具体而言,我们表明癌症诱导的FoxP1使骨骼肌昼夜转录组朝着与肌肉萎缩相关的途径重新布线,并破坏了控制葡萄糖、脂质和氧化代谢途径的时间模式。因此,这些发现揭示了FOXP1在骨骼肌昼夜转录组的破坏和重新编程中的癌症/疾病特异性功能,这可能导致肌肉萎缩和恶病质的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a22/12166465/eb817f0a3560/nihms-2085659-f0002.jpg

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