Human iPSC-derived cerebral organoids model features of Leigh syndrome and reveal abnormal corticogenesis

Author:

Romero-Morales Alejandra I.1,Robertson Gabriella L.1,Rastogi Anuj1,Rasmussen Megan L.1,Temuri Hoor1,McElroy Gregory Scott2,Chakrabarty Ram Prosad2,Hsu Lawrence3,Almonacid Paula M.4,Millis Bryan A.15,Chandel Navdeep S.26,Cartailler Jean-Philippe3,Gama Vivian137ORCID

Affiliation:

1. Vanderbilt University 1 Department of Cell and Developmental Biology , , Nashville, TN 37232, USA

2. Northwestern University 2 Feinberg School of Medicine, Department of Medicine, Division of Pulmonary and Critical Care Medicine , , Chicago, IL 60611, USA

3. Vanderbilt University, 3 Creative Data Solutions, Vanderbilt Center for Stem Cell Biology, Nashville, TN 37232, USA

4. Universidad EAFIT 4 School of Economics and Finances , , Colombia

5. Vanderbilt University 5 Vanderbilt Biophotonics Center, , Nashville, TN 37232, USA

6. Northwestern University 6 Feinberg School of Medicine, Department of Biochemistry and Molecular Genetics , , Chicago, IL 60611, USA

7. Vanderbilt University, 7 Vanderbilt Brain Institute, Nashville, TN 37232 , USA

Abstract

ABSTRACT Leigh syndrome (LS) is a rare, inherited neurometabolic disorder that presents with bilateral brain lesions caused by defects in the mitochondrial respiratory chain and associated nuclear-encoded proteins. We generated human induced pluripotent stem cells (iPSCs) from three LS patient-derived fibroblast lines. Using whole-exome and mitochondrial sequencing, we identified unreported mutations in pyruvate dehydrogenase (GM0372, PDH; GM13411, MT-ATP6/PDH) and dihydrolipoyl dehydrogenase (GM01503, DLD). These LS patient-derived iPSC lines were viable and capable of differentiating into progenitor populations, but we identified several abnormalities in three-dimensional differentiation models of brain development. LS patient-derived cerebral organoids showed defects in neural epithelial bud generation, size and cortical architecture at 100 days. The double mutant MT-ATP6/PDH line produced organoid neural precursor cells with abnormal mitochondrial morphology, characterized by fragmentation and disorganization, and showed an increased generation of astrocytes. These studies aim to provide a comprehensive phenotypic characterization of available patient-derived cell lines that can be used to study Leigh syndrome.

Funder

National Institutes of Health

Vanderbilt University

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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