Division of Hematology/Oncology Northwestern University, 303 East Superior Street, Lurie 5-113 Chicago, IL, USA.
Haematologica. 2012 Oct;97(10):1471-9. doi: 10.3324/haematol.2011.061093. Epub 2012 Apr 4.
Nucleus free red blood cells are unique to mammals. During their terminal stage of differentiation, mammalian erythroblasts exit the cell cycle and enucleate. We previously found that survivin, a member of the chromosomal passenger complex that is required for cytokinesis, is highly expressed in late non-dividing cells. The role of survivin in enucleating erythroblasts is not known.
In order to identify the role of survivin in these late erythroblasts, we performed proteomic analysis on survivin-bound protein complexes purified from murine erythroleukemia cells. Various molecular and cell biological techniques were used to confirm the presence and function of this novel complex. Furthermore, we used survivin(fl/fl) mice to study the effect of loss of survivin in enucleating erythroblasts.
We found that survivin failed to co-localize with its known partners' inner centromere protein or Aurora-B in enucleating erythroblasts but rather exists in a multi-protein complex with epidermal growth factor receptor substrate15 and clathrin, two proteins that mediate endocytic vesicle trafficking. As evidence for a direct role of this latter complex in enucleation, we found that knockdown of the genes reduced the efficiency of enucleation of primary human erythroblasts. We also observed that loss of survivin in murine erythroblasts inhibited enucleation and that survivin-deficient cells harbored smaller cytoplasmic vacuoles. Interestingly, vacuolin-1, a small molecule that induces vacuole fusion, rescued the defective enucleation caused by survivin deficiency.
This study identified a novel role for survivin in erythroblast enucleation through previously unknown protein partners.
无核红细胞是哺乳动物所特有的。在其分化的终末阶段,哺乳动物红细胞退出细胞周期并去核。我们之前发现,生存素(survivin)是细胞分裂所必需的染色体乘客复合物的成员,在晚期非分裂细胞中高度表达。生存素在去核红细胞中的作用尚不清楚。
为了确定生存素在这些晚期红细胞中的作用,我们对从鼠红白血病细胞中纯化的生存素结合蛋白复合物进行了蛋白质组分析。使用各种分子和细胞生物学技术来证实该新型复合物的存在和功能。此外,我们使用生存素(fl/fl)小鼠来研究生存素缺失对去核红细胞的影响。
我们发现,在去核红细胞中,生存素未能与它的已知伴侣中心粒内层蛋白或 Aurora-B 共定位,而是与表皮生长因子受体底物 15 和网格蛋白存在于一个多蛋白复合物中,这两种蛋白介导内吞小泡的运输。作为该后一复合物在去核中起直接作用的证据,我们发现敲低这些基因会降低原代人红细胞去核的效率。我们还观察到,在鼠红细胞中缺失生存素会抑制去核,并且生存素缺陷细胞含有较小的细胞质空泡。有趣的是,小泡融合诱导剂 vacuolin-1 可以挽救因生存素缺乏引起的去核缺陷。
本研究通过以前未知的蛋白伴侣,确定了生存素在红细胞去核中的新作用。