Nuclear modifier YARS2 allele correction restored retinal ganglion cells-specific deficiencies in Leber’s hereditary optic neuropathy

Author:

Chen Jia-Rong12345,Chen Chao12345,Chen Jie6,Ji Yanchun345,Lian Yanna78,Zhang Juanjuan6,Yu Jialing349,Li Xiang-Yao78,Qu Jia6,Guan Min-Xin12345910ORCID

Affiliation:

1. Center for Mitochondrial Biomedicine , the Fourth Affiliated Hospital, , Hangzhou, Zhejiang , China

2. Zhejiang University School of Medicine , the Fourth Affiliated Hospital, , Hangzhou, Zhejiang , China

3. Division of Medical Genetics and Genomics , The Children’s Hospital, , Hangzhou, Zhejiang , China

4. Zhejiang University School of Medicine and National Clinical Research Center for Child Health , The Children’s Hospital, , Hangzhou, Zhejiang , China

5. Institute of Genetics, Zhejiang University School of Medicine , Hangzhou, Zhejiang , China

6. School of Optometry and Ophthalmology and Eye Hospital, Wenzhou Medical University , Wenzhou, Zhejiang , China

7. Department of Neurology , the Fourth Affiliated Hospital, , Yiwu, Zhejiang , China

8. Zhejiang University School of Medicine , the Fourth Affiliated Hospital, , Yiwu, Zhejiang , China

9. Zhejiang Provincial Key Lab of Genetic and Developmental Disorder , Hangzhou, Zhejiang , China

10. Joint Institute of Genetics and Genomic Medicine between Zhejiang University and University of Toronto, Zhejiang University , Hangzhou, Zhejiang , China

Abstract

Abstract Leber’s hereditary optic neuropathy (LHON) is a maternally transmitted eye disease due to the degeneration of retinal ganglion cells (RGCs). Mitochondrial 11778G > A mutation is the most common LHON-associated mitochondrial DNA (mtDNA) mutation. Our recent studies demonstrated some LHON families manifested by synergic interaction between m.11778G > A mutation and YARS2 allele (c.572G > T, p.Gly191Val) encoding mitochondrial tyrosyl-tRNA synthetase. However, the RGC-specific effects of LHON-associated mtDNA mutations remain elusive and there is no highly effective therapy for LHON. Here, we generated patients-derived induced pluripotent stem cells (iPSCs) from fibroblasts derived from a Chinese LHON family (both m.11778G > A and c.572G > T mutations, only m.11778G > A mutation, and control subject). The c.572G > T mutation in iPSC lines from a syndromic individual was corrected by CRISPR/Cas9. Those iPSCs were differentiated into neural progenitor cells and subsequently induced RGC-like cells using a stepwise differentiation procedure. Those RGC-like cells derived from symptomatic individual harboring both m.11778G > A and c.572G > T mutations exhibited greater defects in neuronal differentiation, morphology including reduced area of soma, numbers of neurites and shortened length of axons, electrophysiological properties than those in cells bearing only m.11778G > A mutation. Furthermore, these RGC-like cells revealed more drastic reductions in oxygen consumption rates, levels of mitochondrial ATP and increasing productions of reactive oxygen species than those in other cell models. These mitochondrial dysfunctions promoted the apoptotic process for RGC degenerations. Correction of YARS2 c.572G > T mutation rescued deficiencies of patient-derived RGC-like cells. These findings provide new insights into pathophysiology of LHON arising from RGC-specific mitochondrial dysfunctions and step toward therapeutic intervention for this disease.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Children’s Hospital, Zhejiang University School of Medicine

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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