4.7 Article

Deep Sc-RNA sequencing decoding the molecular dynamic architecture of the human retina

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SCIENCE CHINA-LIFE SCIENCES
卷 66, 期 3, 页码 496-515

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SCIENCE PRESS
DOI: 10.1007/s11427-021-2163-1

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deep Sc-RNA sequencing; human retina; aging

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This study provides a deep understanding of the molecular events in the human retina, revealing regional and age differences in gene expression profiles. Sixty cell sub-types have been identified in the mature human retina with unique markers. Cell-cell interaction analysis shows a rich synaptic connection among retinal cells. The findings of this study contribute to our understanding of the vision system.
The human retina serves as a light detector and signals transmission tissue. Advanced insights into retinal disease mechanisms and therapeutic strategies require a deep understanding of healthy retina molecular events. Here, we sequenced the mRNA of over 0.6 million single cells from human retinas across six regions at nine different ages. Sixty cell sub-types have been identified from the human mature retinas with unique markers. We revealed regional and age differences of gene expression profiles within the human retina. Cell-cell interaction analysis indicated a rich synaptic connection within the retinal cells. Gene expression regulon analysis revealed the specific expression of transcription factors and their regulated genes in human retina cell types. Some of the gene's expression, such as DKK3, are elevated in aged retinas. A further functional investigation suggested that over expression of DKK3 could impact mitochondrial stability. Overall, decoding the molecular dynamic architecture of the human retina improves our understanding of the vision system.

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