Cellular senescence induced by down-regulation of PTBP1 correlates with exon skipping of mitochondrial-related gene NDUFV3

Author:

Yang Yu12,Wen Haimei2,Li Yuxin2,Zeng Xin2,Wei Gang23,Gu Zhenglong12,Ni Ting245ORCID

Affiliation:

1. Center for Mitochondrial Genetics and Health Research, Greater Bay Area Institute of Precision Medicine (Guangzhou), Fudan University , Guangzhou 511400 , China

2. Collaborative Innovation Center of Genetics and Development, Human Phenome Institute, School of Life Sciences, Fudan University , Shanghai 200438 , China

3. MOE Key Laboratory of Contemporary Anthropology, School of Life Sciences, Fudan University , Shanghai 200438 , China

4. National Clinical Research Center for Aging and Medicine, Huashan Hospital, Fudan University , Shanghai 200438 , China

5. State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, Institutes of Biomedical Sciences, School of Life Sciences, Inner Mongolia University , Hohhot 010070 , China

Abstract

Abstract As the most prevalent type of alternative splicing in animal cells, exon skipping plays an important role in expanding the diversity of transcriptome and proteome, thereby participating in the regulation of diverse physiological and pathological processes such as development, aging, and cancer. Cellular senescence serving as an anti-cancer mechanism could also contribute to individual aging. Although the dynamic changes of exon skipping during cellular senescence were revealed, its biological consequence and upstream regulator remain poorly understood. Here, by using human foreskin fibroblasts (HFF) replicative senescence as a model, we discovered that splicing factor PTBP1 was an important contributor for global exon skipping events during senescence. Down-regulated expression of PTBP1 induced senescence-associated phenotypes and related mitochondrial functional changes. Mechanistically, PTBP1 binds to the third exon of mitochondrial complex I subunit coding gene NDUFV3 and protects the exon from skipping. We further confirmed that exon skipping of NDUFV3 correlates with and partially contributes to cellular senescence and related mitochondrial functional changes upon PTBP1 knockdown. Together, we revealed for the first time that mitochondrial-related gene NDUFV3 is a new downstream target for PTBP1-regulated exon skipping to mediate cellular senescence and mitochondrial functional changes.

Publisher

Oxford University Press (OUP)

Reference49 articles.

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