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人类视网膜色素上皮细胞命运的分子决定因素及精准医学的潜在药物基因组学靶点

Molecular Determinants of the Human Retinal Pigment Epithelium Cell Fate and Potential Pharmacogenomic Targets for Precision Medicine.

作者信息

Zibetti Cristina

机构信息

Independent Researcher, Caravaggio, 24043 Bergamo, Italy.

出版信息

Int J Mol Sci. 2025 Jun 17;26(12):5817. doi: 10.3390/ijms26125817.

Abstract

Age-related macular degeneration (AMD) is a common cause of blindness worldwide, and it is projected to affect several million individuals by 2040. The human retinal pigment epithelium (hRPE) degenerates in dry AMD, prompting the need to develop stem cell therapies to replace the lost tissue by autologous transplantation and restore the visual function. Nevertheless, the molecular factors behind the hRPE cell fate determination have not been elucidated. Here we identify all molecular determinants of the hRPE cell fate identity by comprehensive and unbiased screening of predicted pioneer factors in the human genome: such TFs mediate coordinated transitions in chromatin accessibility and transcriptional outcome along three major stages of the hRPE genesis. Furthermore, we compile a complete census of all transcription factor-specific binding sites by footprinting analysis of the human epigenome along the RPE developmental trajectory. Gene regulatory networks were found to be involved in cellular responses to glucose and hypoxia, RPE nitrosative stress, type II epithelial-to-mesenchymal transition (EMT), and type III tumorigenic EMT, providing routes for therapeutic intervention on pleiotropic targets dysregulated in AMD, diabetic retinopathy, and cancer progression. Genome editing technologies may leverage this repository to devise functional screenings of regulatory elements and pharmacogenomic therapies in complex diseases, paving the way for strategies in precision medicine.

摘要

年龄相关性黄斑变性(AMD)是全球范围内导致失明的常见原因,预计到2040年将影响数百万人。干性AMD中人类视网膜色素上皮(hRPE)会发生退化,这促使人们需要开发干细胞疗法,通过自体移植来替代丢失的组织并恢复视觉功能。然而,hRPE细胞命运决定背后的分子因素尚未阐明。在这里,我们通过对人类基因组中预测的先驱因子进行全面且无偏见的筛选,确定了hRPE细胞命运特征的所有分子决定因素:这些转录因子(TFs)在hRPE发生的三个主要阶段介导染色质可及性和转录结果的协调转变。此外,我们通过沿着RPE发育轨迹对人类表观基因组进行足迹分析,编制了所有转录因子特异性结合位点的完整普查。发现基因调控网络参与细胞对葡萄糖和缺氧、RPE氧化应激、II型上皮-间质转化(EMT)和III型致瘤性EMT的反应,为针对AMD、糖尿病性视网膜病变和癌症进展中失调的多效性靶点进行治疗干预提供了途径。基因组编辑技术可以利用这个库来设计复杂疾病中调控元件的功能筛选和药物基因组疗法,为精准医学策略铺平道路。

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