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秀丽隐杆线虫中 EDMD 突变的核纤层蛋白阻碍肌肉特异性基因重定位并损害肌肉完整性。

An EDMD mutation in C. elegans lamin blocks muscle-specific gene relocation and compromises muscle integrity.

机构信息

Department of Genetics, Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Curr Biol. 2011 Oct 11;21(19):1603-14. doi: 10.1016/j.cub.2011.08.030. Epub 2011 Sep 29.

Abstract

BACKGROUND

In worms, as in other organisms, many tissue-specific promoters are sequestered at the nuclear periphery when repressed and shift inward when activated. It has remained unresolved, however, whether the association of facultative heterochromatin with the nuclear periphery, or its release, has functional relevance for cell or tissue integrity.

RESULTS

Using ablation of the unique lamin gene in C. elegans, we show that lamin is necessary for the perinuclear positioning of heterochromatin. We then express at low levels in otherwise wild-type worms a lamin carrying a point mutation, Y59C, which in humans is linked to an autosomal-dominant form of Emery-Dreifuss muscular dystrophy. Using embryos and differentiated tissues, we track the subnuclear position of integrated heterochromatic arrays and their expression. In LMN-1 Y59C-expressing worms, we see abnormal retention at the nuclear envelope of a gene array bearing a muscle-specific promoter. This correlates with impaired activation of the array-borne myo-3 promoter and altered expression of a number of muscle-specific genes. However, an equivalent array carrying the intestine-specific pha-4 promoter is expressed normally and shifts inward when activated in gut cells of LMN-1 Y59C worms. Remarkably, adult LMN-1 Y59C animals have selectively perturbed body muscle ultrastructure and reduced muscle function.

CONCLUSION

Lamin helps sequester heterochromatin at the nuclear envelope, and wild-type lamin permits promoter release following tissue-specific activation. A disease-linked point mutation in lamin impairs muscle-specific reorganization of a heterochromatic array during tissue-specific promoter activation in a dominant manner. This dominance and the correlated muscle dysfunction in LMN-1 Y59C worms phenocopies Emery-Dreifuss muscular dystrophy.

摘要

背景

在蠕虫中,与其他生物一样,许多组织特异性启动子在被抑制时被隔离在核周缘,而在被激活时则向内移动。然而,尚未解决的问题是,组成型异染色质与核周缘的关联或其释放是否对细胞或组织完整性具有功能相关性。

结果

我们通过在秀丽隐杆线虫中消融独特的 lamin 基因,表明 lamin 对于异染色质的核周定位是必要的。然后,我们在其他野生型蠕虫中低水平表达一种携带点突变 Y59C 的 lamin,该突变在人类中与常染色体显性形式的 Emery-Dreifuss 肌营养不良症有关。通过使用胚胎和分化组织,我们追踪整合的异染色质阵列的亚核位置及其表达。在 LMN-1 Y59C 表达的蠕虫中,我们看到一个带有肌肉特异性启动子的基因阵列异常保留在核膜上。这与该阵列携带的 myo-3 启动子的激活受损以及许多肌肉特异性基因的表达改变相关。然而,携带肠特异性 pha-4 启动子的等效阵列在 LMN-1 Y59C 蠕虫的肠道细胞中正常表达并在被激活时向内移动。值得注意的是,成年 LMN-1 Y59C 动物的身体肌肉超微结构选择性受损,肌肉功能降低。

结论

lamin 有助于将异染色质隔离在核膜上,并且野生型 lamin 允许在组织特异性激活后释放启动子。 lamin 中的疾病相关点突变以显性方式损害了肌肉特异性启动子激活过程中异染色质阵列的特异性重组。这种显性以及 LMN-1 Y59C 蠕虫中的相关肌肉功能障碍与 Emery-Dreifuss 肌营养不良症表型相似。

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