Gruenbaum Yosef, Lee Kenneth K, Liu Jun, Cohen Merav, Wilson Katherine L
Department of Genetics, The Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
J Cell Sci. 2002 Mar 1;115(Pt 5):923-9. doi: 10.1242/jcs.115.5.923.
Emerin belongs to the LEM-domain family of nuclear membrane proteins, which are conserved in metazoans from C. elegans to humans. Loss of emerin in humans causes the X-linked form of Emery-Dreifuss muscular dystrophy (EDMD), but the disease mechanism is not understood. We have begun to address the function of emerin in C. elegans, a genetically tractable nematode. The emerin gene (emr-1) is conserved in C. elegans. We detect Ce-emerin protein in the nuclear envelopes of all cell types except sperm, and find that Ce-emerin co-immunoprecipitates with Ce-lamin from embryo lysates. We show for the first time in any organism that nuclear lamins are essential for the nuclear envelope localization of emerin during early development. We further show that four other types of nuclear envelope proteins, including fellow LEM-domain protein Ce-MAN1, as well as Ce-lamin, UNC-84 and nucleoporins do not depend on Ce-emerin for their localization. This result suggests that emerin is not essential to organize or localize the only lamin (B-type) expressed in C. elegans. We also analyzed the RNAi phenotype resulting from the loss of emerin function in C. elegans under laboratory growth conditions, and found no detectable phenotype throughout development. We propose that C. elegans is an appropriate system in which to study the molecular mechanisms of emerin function in vivo.
Emerin属于核膜蛋白的LEM结构域家族,该家族在从秀丽隐杆线虫到人类的后生动物中保守。人类中Emerin的缺失会导致X连锁型Emery-Dreifuss肌营养不良症(EDMD),但其发病机制尚不清楚。我们已开始研究秀丽隐杆线虫中Emerin的功能,秀丽隐杆线虫是一种易于进行基因操作的线虫。Emerin基因(emr-1)在秀丽隐杆线虫中保守。我们在除精子外的所有细胞类型的核膜中检测到Ce-Emerin蛋白,并发现Ce-Emerin与胚胎裂解物中的Ce-核纤层蛋白共免疫沉淀。我们首次在任何生物体中表明,核纤层蛋白对于早期发育过程中Emerin在核膜上的定位至关重要。我们进一步表明,其他四种类型的核膜蛋白,包括同为LEM结构域蛋白的Ce-MAN1,以及Ce-核纤层蛋白、UNC-84和核孔蛋白,其定位不依赖于Ce-Emerin。这一结果表明,Emerin对于组织或定位秀丽隐杆线虫中表达的唯一一种核纤层蛋白(B型)并非必不可少。我们还分析了在实验室生长条件下秀丽隐杆线虫中Emerin功能缺失导致的RNAi表型,发现在整个发育过程中未检测到表型。我们认为秀丽隐杆线虫是研究Emerin在体内功能分子机制的合适系统。