Single‐cell RNA sequencing: Inhibited Notch2 signalling underlying the increased lens fibre cells differentiation in high myopia

Author:

Yao Yunqian123,Wei Ling124,Chen Zhenhua56,Li Hao124,Qi Jiao124,Wu Qingfeng56789,Zhou Xingtao123,Lu Yi12410,Zhu Xiangjia12410ORCID

Affiliation:

1. Eye Institute and Department of Ophthalmology Eye & ENT Hospital, Fudan University Shanghai China

2. National Health Center Key Laboratory of Myopia (Fudan University), Key Laboratory of Myopia Chinese Academy of Medical Sciences Shanghai China

3. Shanghai Research Center of Ophthalmology and Optometry Shanghai China

4. Shanghai Key Laboratory of Visual Impairment and Restoration Shanghai China

5. State Key Laboratory of Molecular Development Biology Institute of Genetics and Developmental Biology, Chinese Academy of Sciences Beijing China

6. University of Chinese Academy of Sciences Beijing China

7. Center for Excellence in Brain Science and Intelligence Technology Chinese Academy of Sciences Beijing China

8. Chinese Institute for Brain Research Beijing China

9. Beijing Children's Hospital Capital Medical University Beijing China

10. State Key Laboratory of Medical Neurobiology Fudan University Shanghai China

Abstract

AbstractHigh myopia is the leading cause of blindness worldwide. It promotes the overgrowth of lens, which is an important component of ocular refractive system, and increases the risks of lens surgery. While postnatal growth of lens is based on the addition of lens fibre cells (LFCs) supplemented by proliferation and differentiation of lens epithelial cells (LECs), it remains unknown how these cellular processes change in highly myopic eyes and what signalling pathways may be involved. Single‐cell RNA sequencing was performed and a total of 50,375 single cells isolated from the lens epithelium of mouse highly myopic and control eyes were analysed to uncover their underlying transcriptome atlas. The proportion of LFCs was significantly higher in highly myopic eyes. Meanwhile, Notch2 signalling was inhibited during lineage differentiation trajectory towards LFCs, while Notch2 predominant LEC cluster was significantly reduced in highly myopic eyes. In consistence, Notch2 was the top down‐regulated gene identified in highly myopic lens epithelium. Further validation experiments confirmed NOTCH2 downregulation in the lens epithelium of human and mouse highly myopic eyes. In addition, NOTCH2 knockdown in primary human and mouse LECs resulted in enhanced differentiation towards LFCs accompanied by up‐regulation of MAF and CDKN1C. These findings indicated an essential role of NOTCH2 inhibition in lens overgrowth of highly myopic eyes, suggesting a therapeutic target for future interventions.

Publisher

Wiley

Subject

Cell Biology,General Medicine

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Complications of high myopia: An update from clinical manifestations to underlying mechanisms;Advances in Ophthalmology Practice and Research;2024-08

2. Single-Cell RNA Sequencing Analysis of the Early Postnatal Mouse Lens Epithelium;Investigative Opthalmology & Visual Science;2023-10-23

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