Barth syndrome (BTHS) is a rare mitochondrial disease caused by pathogenic variants in the gene TAFAZZIN, which leads to abnormal cardiolipin (CL) metabolism on the inner mitochondrial membrane. Although TAFAZZIN is ubiquitously expressed, BTHS involves a complex combination of tissue specific phenotypes including cardiomyopathy, neutropenia, skeletal myopathy, and growth delays, with a relatively minimal neurological burden. To understand both the developmental and functional effects of TAZ-deficiency in different tissues, we generated isogenic TAZ knockout (TAZ-KO) and WT cardiomyocytes (CMs) and neural progenitor cells (NPCs) from CRISPR-edited induced pluripotent stem cells (iPSCs). In TAZ-KO CMs we discovered evidence of dysregulated mitophagy including dysmorphic mitochondria and mitochondrial cristae, differential expression of key autophagy-associated genes, and an inability of TAZ-deficient CMs to properly initiate stress-induced mitophagy. In TAZ-deficient NPCs we identified novel phenotypes including a reduction in CIV abundance and CIV activity in the CIII2&CIV2 intermediate complex. Interestingly, while CL acyl chain manipulation was unable to alter mitophagy defects in TAZ-KO CMs, we found that linoleic acid or oleic acid supplementation was able to partially restore CIV abundance in TAZ-deficient NPCs. Taken together, our results have implications for understanding the tissue-specific pathology of BTHS and potential for tissue-specific therapeutic targeting. Moreover, our results highlight an emerging role for mitophagy in the cardiac pathophysiology of BTHS and reveal a potential neuron-specific bioenergetic phenotype.
Stem cell models of TAFAZZIN deficiency reveal novel tissue-specific pathologies in Barth syndrome.
TAFAZZIN 缺乏的干细胞模型揭示了巴特综合征中新的组织特异性病理
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作者:Sniezek Carney Olivia, Harris Kodi W, Wohlfarter Yvonne, Lee Kyuna, Butschek Grant, Anzmann Arianna F, Hamacher-Brady Anne, Keller Markus A, Vernon Hilary J
| 期刊: | Human Molecular Genetics | 影响因子: | 3.200 |
| 时间: | 2025 | 起止号: | 2025 Jan 23; 34(1):101-115 |
| doi: | 10.1093/hmg/ddae152 | 研究方向: | 发育与干细胞、细胞生物学 |
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