Pont-Kingdon G, Okada N A, Macfarlane J L, Beagley C T, Watkins-Sims C D, Cavalier-Smith T, Clark-Walker G D, Wolstenholme D R
Department of Biology, University Utah, Salt Lake City 84112, USA.
J Mol Evol. 1998 Apr;46(4):419-31. doi: 10.1007/pl00006321.
The nucleotide sequences of two segments of 6,737 ntp and 258 nto of the 18.4-kb circular mitochondrial (mt) DNA molecule of the soft coral Sarcophyton glaucum (phylum Cnidaria, class Anthozoa, subclass Octocorallia, order Alcyonacea) have been determined. The larger segment contains the 3' 191 ntp of the gene for subunit 1 of the respiratory chain NADH dehydrogenase (ND1), complete genes for cytochrome b (Cyt b), ND6, ND3, ND4L, and a bacterial MutS homologue (MSH), and the 5' terminal 1,124 ntp of the gene for the large subunit rRNA (1-rRNA). These genes are arranged in the order given and all are transcribed from the same strand of the molecule. The smaller segment contains the 3' terminal 134 ntp of the ND4 gene and a complete tRNA(f-Met) gene, and these genes are transcribed in opposite directions. As in the hexacorallian anthozoan, Metridium senile, the mt-genetic code of S. glaucum is near standard: that is, in contrast to the situation in mt-genetic codes of other invertebrate phyla, AGA and AGG specify arginine, and ATA specifies isoleucine. However, as appears to be universal for metazoan mt-genetic codes, TGA specifies tryptophan rather than termination. Also, as in M. senile the mt-tRNA(f-Met) gene has primary and secondary structural features resembling those of Escherichia coli initiator tRNA, including standard dihydrouridine and T psi C loop sequences, and a mismatched nucleotide pair at the top of the amino-acyl stem. The presence of a mutS gene homologue, which has not been reported to occur in any other known mtDNA, suggests that there is mismatch repair activity in S. glaucum mitochondria. In support of this, phylogenetic analysis of MutS family protein sequences indicates that the S. glaucum mtMSH protein is more closely related to the nuclear DNA-encoded mitochondrial mismatch repair protein (MSH1) of the yeast Saccharomyces cerevisiae than to eukaryotic homologues involved in nuclear function, or to bacterial homologues. Regarding the possible origin of the S. glaucum mtMSH gene, the phylogenetic analysis results, together with comparative base composition considerations, and the absence of an MSH gene in any other known mtDNA best support the hypothesis that S. glaucum mtDNA acquired the mtMSH gene from nuclear DNA early in the evolution of octocorals. The presence of mismatch repair activity in S. glaucum mitochondria might be expected to influence the rate of evolution of this organism's mtDNA.
已测定了软珊瑚(门:刺胞动物门,纲:珊瑚纲,亚纲:八放珊瑚亚纲,目:海鸡冠目)18.4 kb 环状线粒体(mt)DNA 分子中两段分别为 6737 个核苷酸(ntp)和 258 个核苷酸的核苷酸序列。较大的片段包含呼吸链 NADH 脱氢酶亚基 1(ND1)基因的 3'端 191 个核苷酸、细胞色素 b(Cyt b)、ND6、ND3、ND4L 的完整基因以及一个细菌 MutS 同源物(MSH),还有大亚基 rRNA(1-rRNA)基因的 5'端 1124 个核苷酸。这些基因按给定顺序排列,且均从分子的同一条链转录。较小的片段包含 ND4 基因的 3'端 134 个核苷酸和一个完整的 tRNA(f-Met)基因,这些基因转录方向相反。与六放珊瑚亚纲的海葵一样,软珊瑚的线粒体遗传密码接近标准密码:即与其他无脊椎动物门的线粒体遗传密码情况不同,AGA 和 AGG 编码精氨酸,ATA 编码异亮氨酸。然而,正如后生动物线粒体遗传密码似乎具有的普遍性那样,TGA 编码色氨酸而非终止密码子。此外,与海葵一样,软珊瑚的线粒体 tRNA(f-Met)基因具有与大肠杆菌起始 tRNA 相似的一级和二级结构特征,包括标准的二氢尿嘧啶和 TψC 环序列,以及氨基酰茎顶部的一个错配核苷酸对。MutS 基因同源物的存在(在任何其他已知的线粒体 DNA 中均未报道过)表明软珊瑚线粒体中存在错配修复活性。支持这一点的是,对 MutS 家族蛋白质序列的系统发育分析表明,软珊瑚的线粒体 MSH 蛋白与酿酒酵母核 DNA 编码的线粒体错配修复蛋白(MSH1)的关系比与参与核功能的真核同源物或细菌同源物更为密切。关于软珊瑚线粒体 MSH 基因可能的起源,系统发育分析结果、比较碱基组成的考虑因素以及在任何其他已知线粒体 DNA 中均不存在 MSH 基因,这些最有力地支持了这样一种假说:在八放珊瑚进化早期,软珊瑚的线粒体 DNA 从核 DNA 获得了线粒体 MSH 基因。软珊瑚线粒体中存在错配修复活性可能会影响该生物线粒体 DNA 的进化速率。