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◆ bioRxiv : the preprint server for biology2026-09-17· genetics

Systematic Engineering of Loss-of-Function Alleles in the Zebrafish Mitochondrial Proteome.

Ankit Sabharwal, Md Roushan Ali, Kyler S Mitra, Jun Morisue, Jace Klein, Rishav Sarkar, Kaila Savage, Lucy Rai Thulung, Amanda Zumbrock, Cassidy Petree, Santiago Restrepo Castillo, Mireya Mota, Gaurav K Varshney, Karl J Clark, Eiko Nakamuru-Ogiso, Stephen C Ekker

原始摘要(英文原文)· Original abstract
Pathogenic variants in the 13 protein-coding genes of the mitochondrial genome underlie clinically and biochemically heterogeneous disorders. Most mtDNA-encoded genes lack defined loss-of-function (LOF) models in vivo . To address this gap, we have generated Z-Terminator, a systematic in vivo atlas of loss-of-function alleles covering all the mtDNA-encoded OXPHOS subunits in zebrafish ( Danio rerio ). We used mitochondrial TALE base editors to introduce premature termination codon (PTC) alleles via C-to-T transitions across Complexes I, III, IV, and V. Larvae harboring PTC alleles displayed bioenergetic defects and elevated lactate. While mtDNA mutations are associated with sensorineural hearing loss, the cellular basis has remained unclear. We show that engineered mtDNA LOF alleles directly impair hair cell function in proportion to heteroplasmy in a living vertebrate. We investigated the germline transmission and tissue-specific heteroplasmy of these LOF alleles and observed that a subset of variants was transmitted to the F1 generation and displayed distinct mutant loads across organs. These findings establish Z-Terminator as a vertebrate platform for interrogating the role of mtDNA protein-coding genes in cellular dysfunction and for elucidating the pathophysiology of mitochondrial disorders.
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Systematic Engineering of Loss-of-Function Alleles in the Zebrafish Mitochondrial Proteome. — 科研速览 Science Skim