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改变微管稳定性会影响红细胞生成过程中的微管清除和核挤出。

Altering microtubule stability affects microtubule clearance and nuclear extrusion during erythropoiesis.

机构信息

Shandong Provincial Key Laboratory of Animal Resistance Biology, Collaborative Innovation Center of Cell Biology in Universities of Shandong, Institute of Biomedical Sciences, College of Life Sciences, Shandong Normal University, Jinan, Shandong, China.

State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Bioactive Materials of the Ministry of Education, Tianjin Key Laboratory of Protein Science, College of Life Sciences, Nankai University, Tianjin, China.

出版信息

J Cell Physiol. 2019 Nov;234(11):19833-19841. doi: 10.1002/jcp.28582. Epub 2019 Apr 4.

Abstract

Mammalian erythrocytes are highly specialized cells that have adapted to lose their nuclei and cellular components during maturation to ensure oxygen delivery. Nuclear extrusion, the most critical event during erythropoiesis, represents an extreme case of asymmetric partitioning that requires a dramatic reorganization of the cytoskeleton. However, the precise role of the microtubule cytoskeleton in the enucleation process remains controversial. In this study, we show that microtubule reorganization is critical for microtubule clearance and nuclear extrusion during erythropoiesis. Using a rodent anemia model, we found that microtubules were present in erythroblasts and reticulocytes but were undetectable in erythrocytes. Further analysis demonstrated that microtubules became disordered in reticulocytes and revealed that microtubule stabilization was critical for tubulin degradation. Disruption of microtubule dynamics using the microtubule-stabilizing agent paclitaxel or the microtubule-destabilizing agent nocodazole did not affect the efficiency of erythroblast enucleation. However, paclitaxel treatment resulted in the retention of tubulin in mature erythrocytes, and nocodazole treatment led to a defect in pyrenocyte morphology. Taken together, our data reveals a critical role for microtubules in erythrocyte development. Our findings also implicate the disruption of microtubule dynamics in the pathogenesis of anemia-associated diseases, providing new insight into the pathogenesis of the microtubule-targeted agent-associated anemia frequently observed during cancer chemotherapy.

摘要

哺乳动物的红细胞是高度特化的细胞,在成熟过程中会失去细胞核和细胞成分,以确保氧气的输送。核挤出是红细胞生成过程中最关键的事件,代表了一种极端的不对称分配情况,需要细胞骨架的剧烈重组。然而,微管细胞骨架在去核过程中的精确作用仍存在争议。在这项研究中,我们表明微管重排对于红细胞生成过程中的微管清除和核挤出至关重要。使用啮齿动物贫血模型,我们发现微管存在于红细胞和网织红细胞中,但在红细胞中无法检测到。进一步的分析表明,微管在网织红细胞中变得紊乱,并揭示了微管稳定对于微管蛋白降解至关重要。使用微管稳定剂紫杉醇或微管破坏剂诺考达唑破坏微管动力学不会影响红细胞去核的效率。然而,紫杉醇处理导致成熟红细胞中微管蛋白的保留,而诺考达唑处理导致 Pyrénocyte 形态缺陷。总之,我们的数据揭示了微管在红细胞发育中的关键作用。我们的发现还表明,微管动力学的破坏与贫血相关疾病的发病机制有关,为癌症化疗期间经常观察到的微管靶向药物相关贫血的发病机制提供了新的见解。

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