Huang C, Wang S, Chen L, Lemieux C, Otis C, Turmel M, Liu X Q
Department of Biochemistry, Dalhouise University, Halifax, Nova Scotia, Canada.
Mol Gen Genet. 1994 Jul 25;244(2):151-9. doi: 10.1007/BF00283516.
Sequence determination of the chloroplast clpP gene from two distantly related Chlamydomonas species (C. reinhardtii and C. eugametos) revealed the presence of translated large insertion sequences (IS1 and IS2) that divide the clpP gene into two or three sequence domains (SDs) and are not found in homologous genes in other organisms. These insertion sequences do not resemble RNA introns, and are not spliced out at the mRNA level. Instead, each insertion sequence forms a continuous open reading frame with its upstream and downstream sequence domains. IS1 specifies a potential polypeptide sequence of 286 and 318 amino acid residues in C. reinhardtii and C. eugametos, respectively. IS2 encodes a 456 amino acid polypeptide and is present only in C. eugametos. The two Chlamydomonas IS1 sequences show substantial similarity; however, there is no significant sequence similarity either between IS1 and IS2 or between these insertion sequences and any other known protein coding sequences. The C. reinhardtii clpP gene was further shown to be essential for cell growth, as demonstrated through targeted gene disruption by particle gun-mediated chloroplast transformation. Only heteroplasmic transformants could be obtained, even under mixotrophic growth conditions. The heteroplasmic transformants were stable only under selection pressure for the disrupted clpP, rapidly segregated into wild-type cells when the selection pressure was removed, and grew significantly more slowly than wild-type cells under phototrophic conditions.
对两种亲缘关系较远的衣藻属物种(莱茵衣藻和真配子衣藻)的叶绿体clpP基因进行序列测定,结果显示存在经翻译的大插入序列(IS1和IS2),这些序列将clpP基因分为两个或三个序列结构域(SDs),且在其他生物的同源基因中未发现。这些插入序列与RNA内含子不同,在mRNA水平上不会被剪接掉。相反,每个插入序列与其上游和下游序列结构域形成一个连续的开放阅读框。IS1在莱茵衣藻和真配子衣藻中分别指定了一个潜在的由286和318个氨基酸残基组成的多肽序列。IS2编码一个456个氨基酸的多肽,且仅存在于真配子衣藻中。两种衣藻的IS1序列显示出显著的相似性;然而,IS1与IS2之间或这些插入序列与任何其他已知蛋白质编码序列之间均无明显的序列相似性。通过粒子枪介导的叶绿体转化进行靶向基因破坏表明,莱茵衣藻的clpP基因对细胞生长至关重要。即使在混合营养生长条件下,也只能获得异质转化体。异质转化体仅在对破坏的clpP施加选择压力时才稳定,去除选择压力后会迅速分离为野生型细胞,并且在光养条件下生长速度明显慢于野生型细胞。