Riemer D, Dodemont H, Weber K
Department of Biochemistry, Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
Eur J Cell Biol. 1993 Dec;62(2):214-23.
This report describes the characterization of the nuclear lamin CeLam-1 of the nematode Caenorhabditis elegans by molecular analysis of the corresponding complete cDNA and gene sequences. The primary structure of CeLam-1, representing only the third non-vertebrate lamin sequence currently known, follows essentially the features displayed by the B-type lamins of vertebrates and Drosophila. The nematode lamin shows, however, some exceptional properties. First, it lacks the SPTR sequence in front of the coil 1a domain which constitutes the major mitotic cdc2 kinase phosphorylation site. Second, two prominent deletions occur in the CeLam-1 sequence. One eliminates 14 amino acid residues from the coil 2 domain. A larger deletion of approximately 25 residues results in the shortest lamin tail domain documented so far. The latter corresponds to a region which varies considerably in sequence from highly acidic in vertebrate B-type lamins to rather basic in Drosophila lamin Dmo. CeLam-1 is encoded by a single 2.3 kb mRNA which is abundantly expressed in mixed-stage worm populations. The 5'-end of the mRNA is generated by trans-splicing to the SL1 leader sequence. The CeLam-1 gene extending over 2.7 kb is located on chromosome I. The gene is composed of 6 exons and 5 short introns, which all interrupt the coding sequence. Surprisingly, none of the intron positions has a counterpart in either the Drosophila lamin Dmo or the vertebrate lamin genes.
本报告通过对相应完整cDNA和基因序列的分子分析,描述了线虫秀丽隐杆线虫核纤层蛋白CeLam-1的特征。CeLam-1的一级结构是目前已知的第三个非脊椎动物核纤层蛋白序列,基本上遵循脊椎动物和果蝇B型核纤层蛋白所显示的特征。然而,线虫核纤层蛋白表现出一些特殊性质。首先,它在构成主要有丝分裂cdc2激酶磷酸化位点的1a螺旋结构域之前缺少SPTR序列。其次,CeLam-1序列中出现了两个明显的缺失。一个缺失从2螺旋结构域中去除了14个氨基酸残基。另一个约25个残基的较大缺失导致了迄今为止记录的最短的核纤层蛋白尾部结构域。后者对应于一个序列变化很大的区域,从脊椎动物B型核纤层蛋白的高度酸性到果蝇核纤层蛋白Dmo的相当碱性。CeLam-1由一个2.3 kb的单一mRNA编码,该mRNA在混合发育阶段的蠕虫群体中大量表达。mRNA的5'端是通过与SL1前导序列的反式剪接产生的。CeLam-1基因全长2.7 kb,位于I号染色体上。该基因由6个外显子和5个短内含子组成,所有内含子均打断编码序列。令人惊讶的是,果蝇核纤层蛋白Dmo或脊椎动物核纤层蛋白基因中没有一个内含子位置与之对应。