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对不同强度突变等位基因的分析揭示了拓扑异构酶2在果蝇染色体结构调控中的多种功能。

The analysis of mutant alleles of different strength reveals multiple functions of topoisomerase 2 in regulation of Drosophila chromosome structure.

作者信息

Mengoli Valentina, Bucciarelli Elisabetta, Lattao Ramona, Piergentili Roberto, Gatti Maurizio, Bonaccorsi Silvia

机构信息

Istituto Pasteur-Fondazione Cenci Bolognetti and Istituto di Biologia e Patologia Molecolari (IBPM) del CNR, Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza, Università di Roma, Roma, Italy.

Istituto Pasteur-Fondazione Cenci Bolognetti and Istituto di Biologia e Patologia Molecolari (IBPM) del CNR, Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza, Università di Roma, Roma, Italy; Institute of Molecular and Cellular Biology SB RAS, Novosibirsk, Russia.

出版信息

PLoS Genet. 2014 Oct 23;10(10):e1004739. doi: 10.1371/journal.pgen.1004739. eCollection 2014 Oct.

Abstract

Topoisomerase II is a major component of mitotic chromosomes but its role in the assembly and structural maintenance of chromosomes is rather controversial, as different chromosomal phenotypes have been observed in various organisms and in different studies on the same organism. In contrast to vertebrates that harbor two partially redundant Topo II isoforms, Drosophila and yeasts have a single Topo II enzyme. In addition, fly chromosomes, unlike those of yeast, are morphologically comparable to vertebrate chromosomes. Thus, Drosophila is a highly suitable system to address the role of Topo II in the assembly and structural maintenance of chromosomes. Here we show that modulation of Top2 function in living flies by means of mutant alleles of different strength and in vivo RNAi results in multiple cytological phenotypes. In weak Top2 mutants, meiotic chromosomes of males exhibit strong morphological abnormalities and dramatic segregation defects, while mitotic chromosomes of larval brain cells are not affected. In mutants of moderate strength, mitotic chromosome organization is normal, but anaphases display frequent chromatin bridges that result in chromosome breaks and rearrangements involving specific regions of the Y chromosome and 3L heterochromatin. Severe Top2 depletion resulted in many aneuploid and polyploid mitotic metaphases with poorly condensed heterochromatin and broken chromosomes. Finally, in the almost complete absence of Top2, mitosis in larval brains was virtually suppressed and in the rare mitotic figures observed chromosome morphology was disrupted. These results indicate that different residual levels of Top2 in mutant cells can result in different chromosomal phenotypes, and that the effect of a strong Top2 depletion can mask the effects of milder Top2 reductions. Thus, our results suggest that the previously observed discrepancies in the chromosomal phenotypes elicited by Topo II downregulation in vertebrates might depend on slight differences in Topo II concentration and/or activity.

摘要

拓扑异构酶II是有丝分裂染色体的主要组成部分,但其在染色体组装和结构维持中的作用颇具争议,因为在不同生物体以及对同一生物体的不同研究中观察到了不同的染色体表型。与具有两种部分冗余拓扑异构酶II亚型的脊椎动物不同,果蝇和酵母只有一种拓扑异构酶II。此外,果蝇染色体与酵母染色体不同,在形态上与脊椎动物染色体相似。因此,果蝇是研究拓扑异构酶II在染色体组装和结构维持中作用的高度合适的系统。在此我们表明,通过不同强度的突变等位基因和体内RNA干扰在活体果蝇中调节Top2功能会导致多种细胞学表型。在弱Top2突变体中,雄性减数分裂染色体表现出强烈的形态异常和严重的分离缺陷,而幼虫脑细胞的有丝分裂染色体不受影响。在中等强度的突变体中,有丝分裂染色体组织正常,但后期频繁出现染色质桥,导致染色体断裂和重排,涉及Y染色体和3L异染色质的特定区域。严重的Top2缺失导致许多非整倍体和多倍体有丝分裂中期,异染色质浓缩不良且染色体断裂。最后,在几乎完全没有Top2的情况下,幼虫脑内的有丝分裂实际上受到抑制,在观察到的罕见有丝分裂图像中染色体形态被破坏。这些结果表明,突变细胞中不同的Top2残留水平可导致不同的染色体表型,并且强烈的Top2缺失效应可能掩盖较轻的Top2减少的效应。因此,我们的结果表明,先前在脊椎动物中观察到的拓扑异构酶II下调引发的染色体表型差异可能取决于拓扑异构酶II浓度和/或活性的细微差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f8b/4207652/f8fc324b2d15/pgen.1004739.g001.jpg

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