Schuh Melina, Lehner Christian F, Heidmann Stefan
Bayreuth Center for Molecular Biosciences (BZMB), Department of Genetics, University of Bayreuth, 95440 Bayreuth, Germany.
Curr Biol. 2007 Feb 6;17(3):237-43. doi: 10.1016/j.cub.2006.11.051. Epub 2007 Jan 11.
The centromere/kinetochore complex is indispensable for accurate segregation of chromosomes during cell divisions when it serves as the attachment site for spindle microtubules. Centromere identity in metazoans is believed to be governed by epigenetic mechanisms, because the highly repetitive centromeric DNA is neither sufficient nor required for specifying the assembly site of the kinetochore. A candidate for an epigenetic mark is the centromere-specific histone H3 variant CENP-A that replaces H3 in alternating blocks of chromatin exclusively in active centromeres. CENP-A acts as an initiator of kinetochore assembly, but the detailed dynamics of the deposition of metazoan CENP-A and of other constitutive kinetochore components are largely unknown. Here we show by quantitative fluorescence measurements in living early embryos that functional fluorescent fusion proteins of the Drosophila CENP-A and CENP-C homologs are rapidly incorporated into centromeres during anaphase. This incorporation is independent of ongoing DNA synthesis and pulling forces generated by the mitotic spindle, but strictly coupled to mitotic progression. Thus, our findings uncover a strikingly dynamic behavior of centromere components in anaphase.
着丝粒/动粒复合体在细胞分裂过程中对染色体的精确分离至关重要,它作为纺锤体微管的附着位点。后生动物中的着丝粒身份被认为受表观遗传机制调控,因为高度重复的着丝粒DNA对于指定动粒的组装位点既不充分也非必需。一种表观遗传标记的候选物是着丝粒特异性组蛋白H3变体CENP - A,它仅在活跃的着丝粒中以交替的染色质块取代H3。CENP - A作为动粒组装的起始物,但后生动物CENP - A和其他组成型动粒成分沉积的详细动态在很大程度上尚不清楚。在这里,我们通过对早期活体胚胎进行定量荧光测量表明,果蝇CENP - A和CENP - C同源物的功能性荧光融合蛋白在后期迅速整合到着丝粒中。这种整合独立于正在进行的DNA合成和有丝分裂纺锤体产生的拉力,但与有丝分裂进程严格相关。因此,我们的发现揭示了后期着丝粒成分惊人的动态行为。