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Developmental role for ACF1-containing nucleosome remodellers in chromatin organisation.

机译:含ACF1的核小体重塑剂在染色质组织中的发展作用。

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摘要

The nucleosome remodelling complexes CHRAC and ACF of Drosophila are thought to play global roles in chromatin assembly and nucleosome dynamics. Disruption of the gene encoding the common ACF1 subunit compromises fly viability. Survivors show defects in chromatin assembly and chromatin-mediated gene repression at all developmental stages. We now show that ACF1 expression is under strict developmental control. The expression is strongly diminished during embryonic development and persists at high levels only in undifferentiated cells, including the germ cell precursors and larval neuroblasts. Constitutive expression of ACF1 is lethal. Cell-specific ectopic expression perturbs chromatin organisation and nuclear programmes. By monitoring heterochromatin formation during development, we have found that ACF1-containing factors are involved in the initial establishment of diversified chromatin structures, such as heterochromatin. Altering the levels of ACF1 leads to global and variegated deviations from normal chromatin organisation with pleiotropic defects.
机译:果蝇的核小体重塑复合物CHRAC和ACF被认为在染色质装配和核小体动力学中起着整体作用。编码常见ACF1亚基的基因的破坏会损害果蝇的生存能力。幸存者在所有发育阶段均表现出染色质组装和染色质介导的基因抑制方面的缺陷。现在,我们显示ACF1表达受到严格的发育控制。该表达在胚胎发育过程中强烈减少,并且仅在未分化的细胞(包括生殖细胞前体和幼虫成神经细胞)中高水平持续表达。 ACF1的组成型表达是致命的。细胞特异性异位表达干扰染色质的组织和核程序。通过监测发育过程中异染色质的形成,我们发现含有ACF1的因子参与了多种染色质结构的初步建立,例如异染色质。改变ACF1的水平导致与具有多效性缺陷的正常染色质组织的整体和多样化偏差。

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