...
首页> 外文期刊>Journal of Molecular Evolution >Loss of Introns Along the Evolutionary Diversification Pathway of Snake Venom Disintegrins Evidenced by Sequence Analysis of Genomic DNA from Macrovipera lebetina transmediterranea and Echis ocellatus
【24h】

Loss of Introns Along the Evolutionary Diversification Pathway of Snake Venom Disintegrins Evidenced by Sequence Analysis of Genomic DNA from Macrovipera lebetina transmediterranea and Echis ocellatus

机译:蛇毒整联蛋白进化多样化途径中内含子的损失,通过大叶紫薇和棘皮E基因组DNA的序列分析证明

获取原文
获取原文并翻译 | 示例

摘要

Analysis of cDNAs from Macrovipera lebetina transmediterranea (Mlt) and Echis ocellatus (Eo) venom gland libraries encoding disintegrins argued strongly for a common ancestry of the messengers of short disintegrins and those for precursors of dimeric disintegrin chains. We now report the sequence analysis of disintegrin-coding genes from these two vipers. Genomic DNAs for dimeric disintegrin subunits Ml_G1 and Ml_G2 (Mlt) and Eo_D3 (Eo) contain single 1-kb introns exhibiting the 5′-GTAAG (donor)/3′-AG (acceptor) consensus intron splicing signature. On the other hand, the short RTS-disintegrins Ml_G3 (Mlt) and Eo_RTS (Eo) and the short RGD-disintegrin ocellatusin (Eo) are transcribed from intronless genomic DNA sequences, indicating that the evolutionary pathway leading to the emergence of short disintegrins involved the removal of all intronic sequences. The insertion position of the intron within Ml_G1, Ml_G2, and Eo_D3 is conserved in the genes for vertebrate ADAM (A disintegrin and metalloproteinase) protein disintegrin-like domains and within the gene for the medium-size snake disintegrins halystatins 2 and 3. However, a comparative analysis of currently available disintegrin(-like) genes outlines the view that a minimization of both the gene organization and the protein structure underlies the evolution of the snake venom disintegrin family.
机译:分析来自大叶紫花苜蓿(Mlt)和蛇形棘皮虫(Eo)蛇毒腺文库中编码整联蛋白的cDNA,强烈主张短整联蛋白的信使和二聚化整联蛋白链的前体的共同祖先。现在,我们报告这两个毒蛇的整合素编码基因的序列分析。二聚解整合蛋白亚基M1_G1和M1_G2(Mlt)和Eo_D3(Eo)的基因组DNA包含单个1-kb内含子,表现出5'-GTAAG(供体)/ 3'-AG(受体)共有内含子剪接特征。另一方面,短的RTS-双整合蛋白Ml_G3(Mlt)和Eo_RTS(Eo)和短的RGD-双整合蛋白ocellatusin(Eo)从无内含子基因组DNA序列转录,表明导致短双整合蛋白出现的进化途径删除所有内含子序列。内含子在Ml_G1,Ml_G2和Eo_D3中的插入位置在脊椎动物ADAM(一种整合素和金属蛋白酶)蛋白质整合素样结构域的基因中以及在中等大小的蛇整合素halystatins 2和3的基因中是保守的。对目前可用的整合素样基因的比较分析概述了这样一种观点,即基因组织和蛋白质结构的最小化是蛇毒整合素家族进化的基础。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号