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由核纤层蛋白A/C缺乏和组蛋白脱乙酰酶抑制剂曲古抑菌素A诱导的染色质变化

Chromatin changes induced by lamin A/C deficiency and the histone deacetylase inhibitor trichostatin A.

作者信息

Galiová Gabriela, Bártová Eva, Raska Ivan, Krejcí Jana, Kozubek Stanislav

机构信息

Institute of Biophysics, Academy of Sciences of the Czech Republic, v.v.i., Královopolská 135, CZ-612 65 Brno, Czech Republic.

出版信息

Eur J Cell Biol. 2008 May;87(5):291-303. doi: 10.1016/j.ejcb.2008.01.013. Epub 2008 Apr 8.

Abstract

Recent studies have shown that histone code dictates the type and structure of chromatin. Bearing in mind the importance of A-type lamins for chromatin arrangement, we studied the effect of trichostatin A (TSA)-induced histone hyperacetylation in lamin A/C-deficient (LMNA-/-) fibroblasts. Lamin A/C deficiency caused condensation of chromosome territories and the nuclear reorganization of centromeric heterochromatin, which was accompanied by the appearance of a chain-like morphology of HP1beta foci. Conversely, histone deacetylase (HDAC) inhibition induced de-condensation of chromosome territories, which compensated the effect of lamin A/C deficiency on chromosome regions. The amount of heterochromatin in the area associated with the nuclear membrane was significantly reduced in LMNA-/- cells when compared with lamin A/C-positive (LMNA+/+) fibroblasts. TSA also decreased the amount of peripheral heterochromatin, similarly as lamin A/C deficiency. In both LMNA+/+ and LMNA-/- cells, physically larger chromosomes were positioned more peripherally as compared with the smaller ones, even after TSA treatment. Our observations indicate that lamin A/C deficiency causes not only reorganization of chromatin and some chromatin-associated domains, but also has an impact on the extent of chromosome condensation. As HDAC inhibition can compensate the lamin A/C-dependent chromatin changes, the interaction between lamins and specifically modified histones may play an important role in higher-order chromatin organization, which influences transcriptional activity.

摘要

最近的研究表明,组蛋白密码决定了染色质的类型和结构。鉴于A型核纤层蛋白对染色质排列的重要性,我们研究了曲古抑菌素A(TSA)诱导的组蛋白高乙酰化在核纤层蛋白A/C缺陷(LMNA-/-)成纤维细胞中的作用。核纤层蛋白A/C缺陷导致染色体区域的凝聚和着丝粒异染色质的核重组,同时伴有HP1β焦点呈链状形态的出现。相反,组蛋白脱乙酰酶(HDAC)抑制诱导染色体区域解聚,这补偿了核纤层蛋白A/C缺陷对染色体区域的影响。与核纤层蛋白A/C阳性(LMNA+/+)成纤维细胞相比,LMNA-/-细胞中与核膜相关区域的异染色质数量显著减少。TSA也减少了外周异染色质的数量,与核纤层蛋白A/C缺陷情况类似。在LMNA+/+和LMNA-/-细胞中,即使经过TSA处理,物理上较大的染色体也比小染色体更位于外周。我们的观察结果表明,核纤层蛋白A/C缺陷不仅导致染色质和一些与染色质相关结构域的重组,还对染色体凝聚程度产生影响。由于HDAC抑制可以补偿依赖核纤层蛋白A/C的染色质变化,核纤层蛋白与特定修饰组蛋白之间的相互作用可能在高阶染色质组织中起重要作用,进而影响转录活性。

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