Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Královopolská 135, CZ-612 65 Brno, Czech Republic.
J Cell Biochem. 2012 Nov;113(11):3313-29. doi: 10.1002/jcb.24208.
Although it is well known that chromosomes are non-randomly organized during interphase, it is not completely clear whether higher-order chromatin structure is transmitted from mother to daughter cells. Therefore, we addressed the question of how chromatin is rearranged during interphase and whether heterochromatin pattern is transmitted after mitosis. We additionally tested the similarity of chromatin arrangement in sister interphase nuclei. We noticed a very active cell rotation during interphase, especially when histone hyperacetylation was induced or transcription was inhibited. This natural phenomenon can influence the analysis of nuclear arrangement. Using photoconversion of Dendra2-tagged core histone H4 we showed that the distribution of chromatin in daughter interphase nuclei differed from that in mother cells. Similarly, the nuclear distribution of heterochromatin protein 1β (HP1β) was not completely identical in mother and daughter cells. However, identity between mother and daughter cells was in many cases evidenced by nucleolar composition. Moreover, morphology of nucleoli, HP1β protein, Cajal bodies, chromosome territories, and gene transcripts were identical in sister cell nuclei. We conclude that the arrangement of interphase chromatin is not transmitted through mitosis, but the nuclear pattern is identical in naturally synchronized sister cells. It is also necessary to take into account the possibility that cell rotation and the degree of chromatin condensation during functionally specific cell cycle phases might influence our view of nuclear architecture.
尽管人们早已知道染色体在间期是非随机组织的,但尚不完全清楚高级染色质结构是否从母细胞传递到子细胞。因此,我们研究了间期染色质如何重排,以及异染色质模式是否在有丝分裂后传递。我们还测试了姐妹间期核中染色质排列的相似性。我们注意到间期细胞非常活跃地旋转,尤其是当组蛋白高度乙酰化或转录受到抑制时。这种自然现象可能会影响对核排列的分析。通过对 Dendra2 标记的核心组蛋白 H4 的光转化,我们发现子细胞间期核中的染色质分布与母细胞中的不同。同样,异染色质蛋白 1β(HP1β)在母细胞和子细胞中的核分布也不完全相同。然而,母细胞和子细胞之间的同一性在许多情况下可以通过核仁组成来证明。此外,姐妹细胞核中的核仁形态、HP1β 蛋白、Cajal 体、染色体区室和基因转录本都是相同的。我们得出结论,间期染色质的排列不会通过有丝分裂传递,但在自然同步的姐妹细胞中核模式是相同的。还需要考虑到细胞旋转和功能特异性细胞周期阶段中染色质浓缩的程度可能会影响我们对核结构的看法。