NOVA1 prevents overactivation of the unfolded protein response and facilitates chromatin access during human white adipogenesis

Author:

Yang Zhigang12ORCID,Dong Ping1,Cao Jiankun1,Lin Na1,Ma Shize12,Cao Rui12,Cai Lei1,Wang Lei3,Cao Changchang3,Xue Yuanchao3,Pan Jing1,Li Xiu12,Wang Kang1,Liu Qiwei12,Li Chen12,Gong Fuxing12ORCID,Fu Xin12,Xiao Ran12

Affiliation:

1. Plastic Surgery Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College , Beijing 100144 , China

2. Key Laboratory of External Tissue and Organ Regeneration, Chinese Academy of Medical Sciences , Beijing 100144 , China

3. Key Laboratory of RNA Biology, Institute of Biophysics, Chinese Academy of Sciences , Beijing 100101 , China

Abstract

Abstract The molecular mechanism underlying white adipogenesis in humans has not been fully elucidated beyond the transcriptional level. Here, we found that the RNA-binding protein NOVA1 is required for the adipogenic differentiation of human mesenchymal stem cells. By thoroughly exploring the interactions between NOVA1 and its binding RNA, we proved that NOVA1 deficiency resulted in the aberrant splicing of DNAJC10 with an in-frame premature stop codon, reduced DNAJC10 expression at the protein level and hyperactivation of the unfolded protein response (UPR). Moreover, NOVA1 knockdown abrogated the down-regulation of NCOR2 during adipogenesis and up-regulated the 47b+ splicing isoform, which led to decreased chromatin accessibility at the loci of lipid metabolism genes. Interestingly, these effects on human adipogenesis could not be recapitulated in mice. Further analysis of multispecies genomes and transcriptomes indicated that NOVA1-targeted RNA splicing is evolutionarily regulated. Our findings provide evidence for human-specific roles of NOVA1 in coordinating splicing and cell organelle functions during white adipogenesis.

Funder

National Natural Science Foundation of China

Chinese Academy of Medical Sciences

Central Research Institute Fund of CAMS

Publisher

Oxford University Press (OUP)

Subject

Genetics

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