Marres C A, Van Loon A P, Oudshoorn P, Van Steeg H, Grivell L A, Slater E C
Eur J Biochem. 1985 Feb 15;147(1):153-61. doi: 10.1111/j.1432-1033.1985.tb08731.x.
We have previously reported the isolation of the gene coding for a 25-kDa polypeptide present in a purified yeast QH2:cytochrome c oxidoreductase preparation, which was thus identified as the gene for the Rieske iron-sulphur protein [Van Loon et al. (1983) Gene 26, 261-272]. Subsequent DNA sequence analysis reported here reveals, however, that the encoded protein is in fact manganese superoxide dismutase, a mitochondrial matrix protein. Comparison with the known amino acid sequence of the mature protein indicates that it is synthesized with an N-terminal extension of 27 amino acids. In common with the N-terminal extensions of other imported mitochondrial proteins, the presequence has several basic residues but lacks negatively charged residues. The function of these positive charges and other possible topogenic sequences are discussed. Sequences 5' of the gene contain two elements that may be homologous to the suggested regulatory sites, UAS 1 and UAS 2 in the yeast CYC1 gene [Guarente et al. (1984) Cell 36, 503-511]. The predicted secondary structures in manganese superoxide dismutase appear to be very similar to those reported for iron superoxide dismutase, suggesting similar three-dimensional structures. Making use of the known three-dimensional structure of the Fe enzyme, the Mn ligands are predicted.
我们之前报道过,从纯化的酵母QH2:细胞色素c氧化还原酶制剂中分离出了编码一种25 kDa多肽的基因,因此该基因被鉴定为 Rieske 铁硫蛋白的基因[Van Loon等人(1983年),《基因》26卷,261 - 272页]。然而,本文报道的后续DNA序列分析表明,所编码的蛋白质实际上是锰超氧化物歧化酶,一种线粒体基质蛋白。与成熟蛋白已知的氨基酸序列比较表明,它是由一个27个氨基酸的N端延伸序列合成的。与其他导入线粒体蛋白的N端延伸序列一样,该前导序列有几个碱性残基,但没有带负电荷的残基。讨论了这些正电荷和其他可能的拓扑序列的功能。该基因5'端的序列包含两个可能与酵母CYC1基因中建议的调控位点UAS 1和UAS 2同源的元件[Guarente等人(1984年),《细胞》36卷,503 - 511页]。锰超氧化物歧化酶中预测的二级结构似乎与报道的铁超氧化物歧化酶的二级结构非常相似,表明三维结构相似。利用已知的铁酶三维结构,预测了锰配体。