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首页> 外文期刊>Molecular biology of the cell >Essential roles for Caenorhabditis elegans lamin gene in nuclear organization, cell cycle progression, and spatial organization of nuclear pore complexes
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Essential roles for Caenorhabditis elegans lamin gene in nuclear organization, cell cycle progression, and spatial organization of nuclear pore complexes

机译:秀丽隐杆线虫Lamin基因在核孔复合体的细胞核进展,细胞周期进程和空间组织中的重要作用

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摘要

Caenorhabditis elegans has a single lamin gene, designated lmn-1 (previously termed CeLam-1). Antibodies raised against the lmn-1 product (Ce-lamin) detected a 64-kDa nuclear envelope protein. Ce-lamin was detected in the nuclear periphery of all cells except sperm and was found in the nuclear interior in embryonic cells and in a fraction of adult cells. Reductions in the amount of Ce-lamin protein produce embryonic lethality. Although the majority of affected embryos survive to produce several hundred nuclei, defects can be detected as early as the first nuclear divisions. Abnormalities include rapid changes in nuclear morphology during interphase, loss of chromosomes, unequal separation of chromosomes into daughter nuclei, abnormal condensation of chromatin, an increase in DNA content, and abnormal distribution of nuclear pore complexes (NPCs). Under conditions of incomplete RNA interference, a fraction of embryos escaped embryonic arrest and continue to develop through larval life. These animals exhibit additional phenotypes including sterility and defective segregation of chromosomes in germ cells. Our observations show that: lmn-1 is an essential gene in C, elegans, and that the nuclear lamins are involved in chromatin organization, cell cycle progression, chromosome segregation, and correct spacing of NPCs. [References: 53]
机译:秀丽隐杆线虫具有单个lamin基因,命名为lmn-1(以前称为CeLam-1)。针对lmn-1产物(Ce-lamin)产生的抗体检测到64 kDa的核被膜蛋白。在精子以外的所有细胞的核周边都检测到了Ce-lamin,并且在胚胎细胞和一部分成年细胞的核内发现了Ce-lamin。 Ce-lamin蛋白量的减少会产生胚胎致死性。尽管大多数受影响的胚胎存活下来可产生数百个核,但早在第一个核分裂之前就可以发现缺陷。异常包括相间核形态的快速变化,染色体丢失,染色体不均匀地分离成子核,染色质异常凝集,DNA含量增加以及核孔复合物(NPC)异常分布。在不完全RNA干扰的条件下,一小部分胚胎逃脱了胚胎停滞,并在幼虫生命中继续发育。这些动物表现出其他表型,包括不育和生殖细胞中染色体的缺陷分离。我们的观察结果表明:lmn-1是C,线虫中的必不可少的基因,核纤层蛋白参与染色质的组织,细胞周期进程,染色体分离和NPC的正确间隔。 [参考:53]

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