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线性质粒对栗酒裂殖酵母长寿突变体寿命延长作用的证据。

Evidence for a life span-prolonging effect of a linear plasmid in a longevity mutant of Podospora anserina.

作者信息

Hermanns J, Asseburg A, Osiewacz H D

机构信息

German Cancer Research Center, Heidelberg.

出版信息

Mol Gen Genet. 1994 May 10;243(3):297-307. doi: 10.1007/BF00301065.

Abstract

The linear mitochondrial plasmid pAL2-1 of the long-lived mutant AL2 of Podospora anserina was demonstrated to be able to integrate into the high molecular weight mitochondrial DNA (mtDNA). Hybridization analysis and densitometric evaluation of the mitochondrial genome isolated from cultures of different ages revealed that the mtDNA is highly stable during the whole life span of the mutant. In addition, and in sharp contrast to the situation in certain senescence-prone Neurospora strains, the mutated P. anserina mtDNA molecules containing integrated plasmid copies are not suppressive to wild-type genomes. As demonstrated by hybridization and polymerase chain reaction (PCR) analysis, the proportion of mtDNA molecules affected by the integration of pAL2-1 fluctuates between 10% and 50%. Comparative sequence analysis of free and integrated plasmid copies revealed four differences within the terminal inverted repeats (TIRs). These point mutations are not caused by the integration event since they occur subsequent to integration and at various ages. Interestingly, both repeats contain identical sequences indicating that the mechanism involved in the maintenance of perfect TIRs is active on both free and integrated plasmid copies. Finally, in reciprocal crosses between AL2 and the wild-type strain A, some abnormal progeny were obtained. One group of strains did not contain detectable amounts of plasmid pAL2-1, although the mtDNA was clearly of the type found in the long-lived mutant AL2. These strains exhibited a short-lived phenotype. In contrast, one strain was selected that was found to contain wild-type A-specific mitochondrial genomes and traces of pAL2-1. This strain was characterized by an increased life span. Altogether these data suggest that the linear plasmid pAL2-1 is involved in the expression of longevity in mutant AL2.

摘要

已证明长寿突变体嗜热栖粪壳菌(Podospora anserina)AL2的线性线粒体质粒pAL2-1能够整合到高分子量线粒体DNA(mtDNA)中。对从不同年龄培养物中分离出的线粒体基因组进行杂交分析和光密度评估表明,在该突变体的整个寿命期间,mtDNA高度稳定。此外,与某些易衰老的粗糙脉孢菌菌株的情况形成鲜明对比的是,含有整合质粒拷贝的突变嗜热栖粪壳菌mtDNA分子对野生型基因组没有抑制作用。如杂交和聚合酶链反应(PCR)分析所示,受pAL2-1整合影响的mtDNA分子比例在10%至50%之间波动。对游离和整合质粒拷贝的比较序列分析揭示了末端反向重复序列(TIRs)内的四个差异。这些点突变不是由整合事件引起的,因为它们在整合后且在不同年龄出现。有趣的是,两个重复序列包含相同的序列,这表明维持完美TIRs所涉及的机制在游离和整合质粒拷贝上均有活性。最后,在AL2与野生型菌株A的正反交中,获得了一些异常后代。一组菌株虽然mtDNA明显是长寿突变体AL2中发现的类型,但未检测到质粒pAL2-1。这些菌株表现出短寿表型。相反,选择了一个菌株,发现其含有野生型A特异性线粒体基因组和痕量的pAL2-1。该菌株的特征是寿命延长。总之,这些数据表明线性质粒pAL2-1参与了突变体AL2中长寿的表达。

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