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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The SKP2 E3 ligase regulates basal homeostasis and stress-induced regeneration of HSCs.
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The SKP2 E3 ligase regulates basal homeostasis and stress-induced regeneration of HSCs.

机译:SKP2 E3连接酶调节基础稳态和应激诱导的HSC再生。

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摘要

Exit from quiescence and reentry into cell cycle is essential for HSC self-renewal and regeneration. Skp2 is the F-box unit of the SCF E3-ligase that targets the CDK inhibitors (CKIs) p21(Cip1), p27(Kip1), p57(Kip2), and p130 for degradation. These CKIs inhibit the G(1) to S-phase transition of the cell cycle, and their deletion results in increased cell proliferation and decreased stem cell self-renewal. Skp2 deletion leads to CKIs stabilization inducing cell-cycle delay or arrest, and conversely, increased Skp2 expression is often found in cancers. Here, we show that SKP2 expression is increased in HSC and progenitors in response to hematopoietic stress from myelosuppression or after transplantation. At steady state, SKP2 deletion decreased the mitotic activity of HSC and progenitors resulting in enhanced HSC quiescence, increased HSC pool size, and maintenance. However, the inability to rapidly enter cell cycle greatly impaired the short-term repopulating potential of SKP2 null HSC and their ability to regenerate after myeloablative stress. Mechanistically, deletion of SKP2 in HSC and progenitors stabilized CKIs in vivo, particularly p27(Kip1), p57(Kip2), and p130. Our results demonstrate a previously unrecognized role for SKP2 in regulating HSC and progenitor expansion and hematopoietic regeneration after stress.
机译:从静止状态退出并重新进入细胞周期对于HSC自我更新和再生至关重要。 Skp2是SCF E3连接酶的F-box单位,其靶向CDK抑制剂(CKI)p21(Cip1),p27(Kip1),p57(Kip2)和p130降解。这些CKI抑制细胞周期的G(1)到S期过渡,其删除导致细胞增殖增加和干细胞自我更新降低。 Skp2缺失导致CKI稳定,诱导细胞周期延迟或停滞,反之,在癌症中常常发现Skp2表达增加。在这里,我们显示,HSP和祖细胞中的SKP2表达增加,以响应来自骨髓抑制或移植后的造血应激。在稳定状态下,SKP2缺失降低了HSC和祖细胞的有丝分裂活性,导致HSC静止性增强,HSC库大小增加和维护。然而,无法快速进入细胞周期极大地损害了SKP2 null HSC的短期再增殖潜力以及它们在清髓性应激后的再生能力。从机制上讲,HSC和祖细胞中SKP2的缺失可稳定体内的CKI,特别是p27(Kip1),p57(Kip2)和p130。我们的结果表明,SKP2在调节应激后的HSC和祖细胞扩增以及造血细胞再生中起着前所未有的作用。

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