Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, CA 94720-3200, USA.
Cell. 2010 Oct 15;143(2):288-98. doi: 10.1016/j.cell.2010.09.012.
The size of the nucleus varies among different cell types, species, and disease states, but mechanisms of nuclear size regulation are poorly understood. We investigated nuclear scaling in the pseudotetraploid frog Xenopus laevis and its smaller diploid relative Xenopus tropicalis, which contains smaller cells and nuclei. Nuclear scaling was recapitulated in vitro using egg extracts, demonstrating that titratable cytoplasmic factors determine nuclear size to a greater extent than DNA content. Nuclear import rates correlated with nuclear size, and varying the concentrations of two transport factors, importin α and Ntf2, was sufficient to account for nuclear scaling between the two species. Both factors modulated lamin B3 import, with importin α increasing overall import rates and Ntf2 reducing import based on cargo size. Importin α also contributes to nuclear size changes during early X. laevis development. Thus, nuclear transport mechanisms are physiological regulators of both interspecies and developmental nuclear scaling.
核的大小在不同的细胞类型、物种和疾病状态中有所不同,但核大小调节的机制尚不清楚。我们研究了伪四倍体青蛙非洲爪蟾及其较小的二倍体近亲非洲爪蟾的核缩放,后者的细胞和核都较小。使用卵提取物在体外再现了核缩放,表明可滴定的细胞质因子比 DNA 含量在更大程度上决定了核的大小。核输入率与核大小相关,两种运输因子 importin α 和 Ntf2 的浓度变化足以解释两种物种之间的核缩放。这两种因子都调节核纤层蛋白 B3 的输入,importin α 增加了整体输入率,而 Ntf2 则根据货物大小减少了输入。importin α 还参与了非洲爪蟾早期发育过程中的核大小变化。因此,核运输机制是物种间和发育核缩放的生理调节剂。