González-Aguilera Cristina, Ikegami Kohta, Ayuso Cristina, de Luis Alberto, Íñiguez María, Cabello Juan, Lieb Jason D, Askjaer Peter
Genome Biol. 2014 Feb 3;15(2):R21. doi: 10.1186/gb-2014-15-2-r21.
Laminopathies are diseases characterized by defects in nuclear envelope structure. A well-known example is Emery-Dreifuss muscular dystrophy, which is caused by mutations in the human lamin A/C and emerin genes. While most nuclear envelope proteins are ubiquitously expressed, laminopathies often affect only a subset of tissues. The molecular mechanisms underlying these tissue-specific manifestations remain elusive. We hypothesize that different functional subclasses of genes might be differentially affected by defects in specific nuclear envelope components.
Here we determine genome-wide DNA association profiles of two nuclear envelope components, lamin/LMN-1 and emerin/EMR-1 in adult Caenorhabditis elegans. Although both proteins bind to transcriptionally inactive regions of the genome, EMR-1 is enriched at genes involved in muscle and neuronal function. Deletion of either EMR-1 or LEM-2, another integral envelope protein, causes local changes in nuclear architecture as evidenced by altered association between DNA and LMN-1. Transcriptome analyses reveal that EMR-1 and LEM-2 are associated with gene repression, particularly of genes implicated in muscle and nervous system function. We demonstrate that emr-1, but not lem-2, mutants are sensitive to the cholinesterase inhibitor aldicarb, indicating altered activity at neuromuscular junctions.
We identify a class of elements that bind EMR-1 but do not associate with LMN-1, and these are enriched for muscle and neuronal genes. Our data support a redundant function of EMR-1 and LEM-2 in chromatin anchoring to the nuclear envelope and gene repression. We demonstrate a specific role of EMR-1 in neuromuscular junction activity that may contribute to Emery-Dreifuss muscular dystrophy in humans.
核纤层病是一类以核膜结构缺陷为特征的疾病。一个著名的例子是埃默里 - 德赖富斯肌营养不良症,它由人类核纤层蛋白A/C和emerin基因的突变引起。虽然大多数核膜蛋白在全身广泛表达,但核纤层病通常只影响部分组织。这些组织特异性表现背后的分子机制仍然难以捉摸。我们推测不同功能亚类的基因可能受到特定核膜成分缺陷的不同影响。
在这里,我们确定了成年秀丽隐杆线虫中两种核膜成分——核纤层蛋白/LMN - 1和emerin/EMR - 1的全基因组DNA关联图谱。尽管这两种蛋白质都与基因组的转录非活性区域结合,但EMR - 1在参与肌肉和神经功能的基因处富集。删除EMR - 1或另一种核膜整合蛋白LEM - 2会导致核结构的局部变化,DNA与LMN - 1之间关联的改变证明了这一点。转录组分析表明,EMR - 1和LEM - 2与基因抑制有关,特别是与肌肉和神经系统功能相关的基因。我们证明emr - 1突变体(而非lem - 2突变体)对胆碱酯酶抑制剂涕灭威敏感,这表明神经肌肉接头处的活性发生了改变。
我们鉴定出一类与EMR - 1结合但不与LMN - 1关联的元件,这些元件在肌肉和神经元基因中富集。我们的数据支持EMR - 1和LEM - 2在染色质锚定到核膜和基因抑制方面的冗余功能。我们证明了EMR - 1在神经肌肉接头活性中的特定作用,这可能与人类的埃默里 - 德赖富斯肌营养不良症有关。