首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A single nuclear transcript encoding mitochondrial RPS14 and SDHB of rice is processed by alternative splicing: Common use of the same mitochondrial targeting signal for different proteins
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A single nuclear transcript encoding mitochondrial RPS14 and SDHB of rice is processed by alternative splicing: Common use of the same mitochondrial targeting signal for different proteins

机译:水稻的线粒体RPS14和SDHB编码的单个核转录本可以通过选择性剪接进行加工:相同线粒体靶向信号通常用于不同蛋白质

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摘要

The rice mitochondrial genome has a sequence homologous to the gene for ribosomal protein S14 (rps14), but the coding sequence is interrupted by internal stop codons. A functional rps14 gene was isolated from the rice nuclear genome, suggesting a gene-transfer event from the mitochondrion to the nucleus. The nuclear rps14 gene encodes a long N-terminal extension showing significant similarity to a part of mitochondrial succinate dehydrogenase subunit B (SDHB) protein from human and a malarial parasite (Plasmodium falciparum). Isolation of a functional rice sdhB cDNA and subsequent sequence comparison to the nuclear rps14 indicate that the 5′ portions of the two cDNAs are identical. The sdhB genomic sequence shows that the SDHB-coding region is divided into two exons. Surprisingly, the RPS14-coding region is located between the two exons. DNA gel blot analysis indicates that both sdhB and rps14 are present at a single locus in the rice nucleus. These findings strongly suggest that the two gene transcripts result from a single mRNA precursor by alternative splicing. Protein blot analysis shows that the size of the mature RPS14 is 16.5 kDa, suggesting removal of the N-terminal 22.6-kDa peptide region. Considering that the rice mitochondrial genome lacks the sdhB gene but contains the rps14-related sequence, transfer of the sdhB gene seems to have occurred before the transfer of the rps14 gene. The migration of the mitochondrial rps14 sequence into the already existing sdhB gene could bestow the capacity for nuclear expression and mitochondrial targeting.
机译:水稻线粒体基因组的序列与核糖体蛋白S14(rps14)的基因同源,但是编码序列被内部终止密码子打断。从水稻核基因组中分离出功能性的rps14基因,表明从线粒体到细胞核的基因转移事件。核rps14基因编码一个长的N端延伸,显示出与人类和疟疾寄生虫(恶性疟原虫)的线粒体琥珀酸脱氢酶亚基B(SDHB)蛋白的一部分非常相似。功能水稻sdhB cDNA的分离和与核rps14的后续序列比较表明,这两个cDNA的5'部分是相同的。 sdhB基因组序列显示SDHB编码区分为两个外显子。令人惊讶的是,RPS14编码区位于两个外显子之间。 DNA凝胶印迹分析表明sdhB和rps14都存在于水稻核的单个基因座中。这些发现强烈表明,这两个基因转录物是通过替代剪接从单个mRNA前体产生的。蛋白质印迹分析表明,成熟的RPS14的大小为16.5 kDa,表明已去除N末端的22.6-kDa肽区域。考虑到水稻线粒体基因组缺少sdhB基因,但包含rps14相关序列,因此似乎在rps14基因转移之前发生了sdhB基因转移。线粒体rps14序列向已有的sdhB基因的迁移可以赋予核表达和线粒体靶向能力。

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