Selective Elimination of Mitochondrial Mutations in the Germline by Genome Editing
Author(s) -
Pradeep Reddy,
Alejandro Ocampo,
Keiichiro Suzuki,
Jinping Luo,
Sandra R. Bacman,
Siôn L. Williams,
Atsushi Sugawara,
Daiji Okamura,
Yuji Tsunekawa,
Jun Wu,
David Lam,
Xiong Xiong,
Núria Montserrat,
Concepción Rodrı́guez Esteban,
GuangHui Liu,
Ignacio Sancho-Martinez,
Dolors Manau,
Salva Civico,
Francesc Cardellach,
María del Mar O’Callaghan,
Jaime Campistol,
Huimin Zhao,
Josep M. Campistol,
Carlos T. Moraes,
Juan Carlos Izpisúa Belmonte
Publication year - 2015
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2015.03.051
Subject(s) - heteroplasmy , biology , mitochondrial dna , genetics , germline , mitochondrial disease , mitochondrion , mitochondrial myopathy , germline mutation , mutation , gene
Mitochondrial diseases include a group of maternally inherited genetic disorders caused by mutations in mtDNA. In most of these patients, mutated mtDNA coexists with wild-type mtDNA, a situation known as mtDNA heteroplasmy. Here, we report on a strategy toward preventing germline transmission of mitochondrial diseases by inducing mtDNA heteroplasmy shift through the selective elimination of mutated mtDNA. As a proof of concept, we took advantage of NZB/BALB heteroplasmic mice, which contain two mtDNA haplotypes, BALB and NZB, and selectively prevented their germline transmission using either mitochondria-targeted restriction endonucleases or TALENs. In addition, we successfully reduced human mutated mtDNA levels responsible for Leber's hereditary optic neuropathy (LHOND), and neurogenic muscle weakness, ataxia, and retinitis pigmentosa (NARP), in mammalian oocytes using mitochondria-targeted TALEN (mito-TALENs). Our approaches represent a potential therapeutic avenue for preventing the transgenerational transmission of human mitochondrial diseases caused by mutations in mtDNA. PAPERCLIP.
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