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首页> 外文期刊>Experimental Hematology: Official Publication of the International Society for Experimental Hematology >Mad2 haploinsufficiency protects hematopoietic progenitor cells subjected to cell-cycle stress in vivo and to inhibition of redox function of Ape1/Ref-1 in vitro.
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Mad2 haploinsufficiency protects hematopoietic progenitor cells subjected to cell-cycle stress in vivo and to inhibition of redox function of Ape1/Ref-1 in vitro.

机译:Mad2单倍剂量不足可保护造血祖细胞在体内经受细胞周期应激,并在体外抑制Ape1 / Ref-1的氧化还原功能。

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摘要

OBJECTIVE: Cell-cycle checkpoints guarantee movement through the cell cycle. Mitotic arrest deficiency 2 (Mad2), a mitotic checkpoint protein, appears crucial for generating the wait anaphase signal to prevent onset of anaphase. We evaluated effects of Mad2 haploinsufficiency on hematopoietic stem (HSC) and progenitor (HPC) function in response to stress. MATERIALS AND METHODS: We studied effects of Mad2(+/-) on in vivo recovery of bone marrow HPC from cytotoxic effects and also effects of cytostatic agents on HPC growth in vitro using Mad2(+/-) mice. RESULTS: Mad2(+/-) HPCs were protected from cytotoxic effects in vivo of a cell-cycle-specific agent, Ara-C, events consistent with Mad2(+/-) HPCs being in a slow or noncycling state, but not from recovery of functional HPC after treatment with non-cycle-specific cyclophosphamide or sublethal irradiation. There were no differences in phenotyped HSCs in Mad2(+/-) &Mad2(+/+) mice, information confirmed by no changes in short- or long-term repopulating HSC assay. To better understand Mad2(+/-) HPC function, E3330, a cytostatic agent, was used to assess redox function of Ape1/Ref-1; colony growth was examined under 5% and 20% O(2) tension. Mad2(+/-) HPCs were less responsive to E3330 than Mad2(+/+) HPCs, and E3330 was more effective under lowered O(2) tension. Mad2(+/-) HPCs were not enhanced at lowered oxygen, as were Mad2(+/+) HPCs. CONCLUSIONS: Our studies have unexpectedly found that Mad2 haploinsufficiency is protective in the presence of a cycle-specific DNA synthesis agent in vivo, and Ape1/Ref-1 inhibitor in vitro.
机译:目的:细胞周期检查点可确保在整个细胞周期内运动。有丝分裂抑制点蛋白2(Mad2),一种有丝分裂检查点蛋白,对于产生后期后期信号以防止后期阶段的出现显得至关重要。我们评估了Mad2单倍剂量不足对应激反应对造血干细胞(HSC)和祖细胞(HPC)功能的影响。材料和方法:我们研究了Mad2(+/-)对从细胞毒性作用体内恢复HPC的体内作用以及细胞抑制剂对使用Mad2(+/-)小鼠体外HPC生长的影响。结果:Mad2(+/-)HPC受到细胞周期特异性试剂Ara-C的体内细胞毒作用的保护,与Mad2(+/-)HPC处于慢速或非循环状态一致的事件,但不受非周期特异性环磷酰胺或亚致死剂量照射后,功能性HPC恢复。在Mad2(+/-)和Mad2(+ / +)小鼠中,表型HSC没有差异,通过短期或长期重新填充HSC分析没有变化来确认信息。为了更好地了解Mad2(+/-)HPC功能,使用了细胞生长抑制剂E3330来评估Ape1 / Ref-1的氧化还原功能。在5%和20%O(2)张力下检查菌落生长。 Mad2(+/-)HPC对E3330的响应比Mad2(+ / +)HPC少,而E3330在降低的O(2)张力下更有效。 Mad2(+/-)HPCs在降低的氧气中并未增强,Mad2(+ / +)HPCs也没有。结论:我们的研究出乎意料地发现,在体内存在循环特异性DNA合成剂和在体外存在Ape1 / Ref-1抑制剂的情况下,Mad2单倍剂量不足具有保护性。

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