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衰老诱导 MCPH1 易位激活坏死性凋亡并损害造血干细胞功能。

Aging-induced MCPH1 translocation activates necroptosis and impairs hematopoietic stem cell function.

机构信息

State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Haihe Laboratory of Cell Ecosystem, Institute of Hematology & Blood Diseases Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin, China.

School of Pharmaceutical Sciences, Tsinghua University, Beijing, China.

出版信息

Nat Aging. 2024 Apr;4(4):510-526. doi: 10.1038/s43587-024-00609-z. Epub 2024 Apr 17.

Abstract

DNA damage contributes to the aging of hematopoietic stem cells (HSCs), yet the underlying molecular mechanisms are not fully understood. In this study, we identified a heterogeneous functional role of microcephalin (MCPH1) in the nucleus and cytoplasm of mouse HSCs. In the nucleus, MCPH1 maintains genomic stability, whereas in the cytoplasm, it prevents necroptosis by binding with p-RIPK3. Aging triggers MCPH1 translocation from cytosol to nucleus, reducing its cytoplasmic retention and leading to the activation of necroptosis and deterioration of HSC function. Mechanistically, we found that KAT7-mediated lysine acetylation within the NLS motif of MCPH1 in response to DNA damage facilitates its nuclear translocation. Targeted mutation of these lysines inhibits MCPH1 translocation and, consequently, compromises necroptosis. The dysfunction of necroptosis signaling, in turn, improves the function of aged HSCs. In summary, our findings demonstrate that DNA damage-induced redistribution of MCPH1 promotes HSC aging and could have broader implications for aging and aging-related diseases.

摘要

DNA 损伤导致造血干细胞(HSCs)衰老,但其中的分子机制尚不完全清楚。在这项研究中,我们鉴定了微脑畸形相关蛋白 1(MCPH1)在小鼠 HSCs 细胞核和细胞质中具有异质的功能作用。在细胞核中,MCPH1 维持基因组稳定性,而在细胞质中,它通过与 p-RIPK3 结合来防止细胞坏死。衰老会触发 MCPH1 从细胞质向细胞核转移,减少其在细胞质中的保留,导致细胞坏死的激活和 HSC 功能的恶化。在机制上,我们发现 DNA 损伤会导致 MCPH1 内核定位信号(NLS)结构域中的赖氨酸乙酰化,从而促进其核易位。靶向突变这些赖氨酸会抑制 MCPH1 的易位,从而破坏细胞坏死。反过来,细胞坏死信号的功能障碍又会改善衰老 HSCs 的功能。总之,我们的研究结果表明,DNA 损伤诱导的 MCPH1 再分布促进了 HSC 的衰老,这可能对衰老和与衰老相关的疾病具有更广泛的意义。

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