Pluripotent stem cells with low differentiation potential contain incompletely reprogrammed DNA replication

分化潜能较低的多能干细胞含有不完全重编程的 DNA 复制

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作者:Theodore Paniza, Madhura Deshpande, Ning Wang, Ryan O'Neil, Michael V Zuccaro, Morgan Elizabeth Smith, Advaitha Madireddy, Daylon James, Joseph Ecker, Zev Rosenwaks, Dieter Egli, Jeannine Gerhardt

Abstract

Reprogrammed pluripotent stem cells (PSCs) are valuable for research and potentially for cell replacement therapy. However, only a fraction of reprogrammed PSCs are developmentally competent. Genomic stability and accurate DNA synthesis are fundamental for cell development and critical for safety. We analyzed whether defects in DNA replication contribute to genomic instability and the diverse differentiation potentials of reprogrammed PSCs. Using a unique single-molecule approach, we visualized DNA replication in isogenic PSCs generated by different reprogramming approaches, either somatic cell nuclear transfer (NT-hESCs) or with defined factors (iPSCs). In PSCs with lower differentiation potential, DNA replication was incompletely reprogrammed, and genomic instability increased during replicative stress. Reprogramming of DNA replication did not correlate with DNA methylation. Instead, fewer replication origins and a higher frequency of DNA breaks in PSCs with incompletely reprogrammed DNA replication were found. Given the impact of error-free DNA synthesis on the genomic integrity and differentiation proficiency of PSCs, analyzing DNA replication may be a useful quality control tool.

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