<p>Embryonic development is a complex process involving the rapid and precise proliferation of cells. Maintaining genome integrity is critical for normal development. Research on the mechanisms by which the tissue microenvironment preserves genomic stability during development, however, is scarce. Now, a study by Dengli Hong et al., published in <i>Nature</i> journal provides a novel perspective for understanding the mechanisms of genomic protection in embryonic liver development. Here, we discuss the data that explains how embryonic liver cells can regulate the genomic stability of hematopoietic stem cells through fetuin-A.</p>

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Fetuin-A: A novel protector of hematopoietic stem cell genomic stability

  • Longjiang Di,
  • Wei-Guo Zhu

摘要

Embryonic development is a complex process involving the rapid and precise proliferation of cells. Maintaining genome integrity is critical for normal development. Research on the mechanisms by which the tissue microenvironment preserves genomic stability during development, however, is scarce. Now, a study by Dengli Hong et al., published in Nature journal provides a novel perspective for understanding the mechanisms of genomic protection in embryonic liver development. Here, we discuss the data that explains how embryonic liver cells can regulate the genomic stability of hematopoietic stem cells through fetuin-A.