Cargando…

Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease

OBJECTIVES: Patient‐derived induced pluripotent stem cells (iPSCs) are materials that can be used for autologous stem cell therapy. We screened mtDNA mutations in iPSCs and iPSC‐derived neuronal cells from patients with Alzheimer's disease (AD). Also, we investigated whether the mutations could...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Yeonmi, Kim, Minchul, Lee, Miju, So, Seongjun, Kang, Soon‐Suk, Choi, Jiwan, Kim, Deokhoon, Heo, Hyohoon, Lee, Sung Soo, Park, Hee Ra, Ko, Jung Jae, Song, Jihwan, Kang, Eunju
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9251050/
https://www.ncbi.nlm.nih.gov/pubmed/35698260
http://dx.doi.org/10.1111/cpr.13274
_version_ 1784739951239233536
author Lee, Yeonmi
Kim, Minchul
Lee, Miju
So, Seongjun
Kang, Soon‐Suk
Choi, Jiwan
Kim, Deokhoon
Heo, Hyohoon
Lee, Sung Soo
Park, Hee Ra
Ko, Jung Jae
Song, Jihwan
Kang, Eunju
author_facet Lee, Yeonmi
Kim, Minchul
Lee, Miju
So, Seongjun
Kang, Soon‐Suk
Choi, Jiwan
Kim, Deokhoon
Heo, Hyohoon
Lee, Sung Soo
Park, Hee Ra
Ko, Jung Jae
Song, Jihwan
Kang, Eunju
author_sort Lee, Yeonmi
collection PubMed
description OBJECTIVES: Patient‐derived induced pluripotent stem cells (iPSCs) are materials that can be used for autologous stem cell therapy. We screened mtDNA mutations in iPSCs and iPSC‐derived neuronal cells from patients with Alzheimer's disease (AD). Also, we investigated whether the mutations could affect mitochondrial function and deposition of β‐amyloid (Aβ) in differentiated neuronal cells. MATERIALS AND METHODS: mtDNA mutations were measured and compared among iPSCs and iPSC‐derived neuronal cells. The selected iPSCs carrying mtDNA mutations were subcloned, and then their growth rate and neuronal differentiation pattern were analyzed. The differentiated cells were measured for mitochondrial respiration and membrane potential, as well as deposition of Aβ. RESULTS: Most iPSCs from subjects with AD harbored ≥1 mtDNA mutations, and the number of mutations was significantly higher than that from umbilical cord blood. About 35% and 40% of mutations in iPSCs were shared with isogenic iPSCs and their differentiated neuronal precursor cells, respectively, with similar or different heteroplasmy. Furthermore, the mutations in clonal iPSCs were stable during extended culture and neuronal differentiation. Finally, mtDNA mutations could induce a growth advantage with higher viability and proliferation, lower mitochondrial respiration and membrane potential, as well as increased Aβ deposition. CONCLUSION: This study demonstrates that mtDNA mutations in patients with AD could lead to mitochondrial dysfunction and accelerated Aβ deposition. Therefore, early screening for mtDNA mutations in iPSC lines would be essential for developing autologous cell therapy or drug screening for patients with AD.
format Online
Article
Text
id pubmed-9251050
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-92510502022-07-05 Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease Lee, Yeonmi Kim, Minchul Lee, Miju So, Seongjun Kang, Soon‐Suk Choi, Jiwan Kim, Deokhoon Heo, Hyohoon Lee, Sung Soo Park, Hee Ra Ko, Jung Jae Song, Jihwan Kang, Eunju Cell Prolif Original Articles OBJECTIVES: Patient‐derived induced pluripotent stem cells (iPSCs) are materials that can be used for autologous stem cell therapy. We screened mtDNA mutations in iPSCs and iPSC‐derived neuronal cells from patients with Alzheimer's disease (AD). Also, we investigated whether the mutations could affect mitochondrial function and deposition of β‐amyloid (Aβ) in differentiated neuronal cells. MATERIALS AND METHODS: mtDNA mutations were measured and compared among iPSCs and iPSC‐derived neuronal cells. The selected iPSCs carrying mtDNA mutations were subcloned, and then their growth rate and neuronal differentiation pattern were analyzed. The differentiated cells were measured for mitochondrial respiration and membrane potential, as well as deposition of Aβ. RESULTS: Most iPSCs from subjects with AD harbored ≥1 mtDNA mutations, and the number of mutations was significantly higher than that from umbilical cord blood. About 35% and 40% of mutations in iPSCs were shared with isogenic iPSCs and their differentiated neuronal precursor cells, respectively, with similar or different heteroplasmy. Furthermore, the mutations in clonal iPSCs were stable during extended culture and neuronal differentiation. Finally, mtDNA mutations could induce a growth advantage with higher viability and proliferation, lower mitochondrial respiration and membrane potential, as well as increased Aβ deposition. CONCLUSION: This study demonstrates that mtDNA mutations in patients with AD could lead to mitochondrial dysfunction and accelerated Aβ deposition. Therefore, early screening for mtDNA mutations in iPSC lines would be essential for developing autologous cell therapy or drug screening for patients with AD. John Wiley and Sons Inc. 2022-06-13 /pmc/articles/PMC9251050/ /pubmed/35698260 http://dx.doi.org/10.1111/cpr.13274 Text en © 2022 The Authors. Cell Proliferation published by European Cell Proliferation Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Lee, Yeonmi
Kim, Minchul
Lee, Miju
So, Seongjun
Kang, Soon‐Suk
Choi, Jiwan
Kim, Deokhoon
Heo, Hyohoon
Lee, Sung Soo
Park, Hee Ra
Ko, Jung Jae
Song, Jihwan
Kang, Eunju
Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title_full Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title_fullStr Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title_full_unstemmed Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title_short Mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with Alzheimer's disease
title_sort mitochondrial genome mutations and neuronal dysfunction of induced pluripotent stem cells derived from patients with alzheimer's disease
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9251050/
https://www.ncbi.nlm.nih.gov/pubmed/35698260
http://dx.doi.org/10.1111/cpr.13274
work_keys_str_mv AT leeyeonmi mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT kimminchul mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT leemiju mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT soseongjun mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT kangsoonsuk mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT choijiwan mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT kimdeokhoon mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT heohyohoon mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT leesungsoo mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT parkheera mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT kojungjae mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT songjihwan mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease
AT kangeunju mitochondrialgenomemutationsandneuronaldysfunctionofinducedpluripotentstemcellsderivedfrompatientswithalzheimersdisease