Gietl C, Faber K N, van der Klei I J, Veenhuis M
Institute of Botany, Technical University of Munich, Germany.
Proc Natl Acad Sci U S A. 1994 Apr 12;91(8):3151-5. doi: 10.1073/pnas.91.8.3151.
We have studied the significance of the N-terminal presequence of watermelon (Citrullus vulgaris) glyoxysomal malate dehydrogenase [gMDH; (S)-malate:NAD+ oxidoreductase; EC 1.1.1.37] in microbody targeting. The yeast Hansenula polymorpha was used as heterologous host for the in vivo expression of various genetically altered watermelon MDH genes, whose protein products were localized by immunocytochemical techniques. It is shown that the presequence of gMDH is essential and sufficient for peroxisomal targeting; it can target the mature part of the mitochondrial MDH to microbodies, whereas deletion of the presequence results in accumulation of the mature form of gMDH in the cytosol. Alignment of the N termini of several peroxisomal proteins that are assumed to contain a peroxisomal targeting signal at the N terminus (PTS2) suggested the consensus seqence RL-X5-HL. A similar motif is present in the presequence of watermelon gMDH--namely, 10RI-X5-17HL. Mutational analysis revealed that substitutions of 10RI into DD or 17HL into DE destroyed the topogenic information, whereas substitutions of 25M into I and 26EE into LV did not. By combining our data with recent analyses of others on the presequences of mammalian thiolases, it is concluded that the peroxisomal targeting information of PTS2 is contained in the consensus sequence RL/I-X5-HL. In contrast to the higher plant and mammals, the Hansenula yeast peroxisomes seem to lack an enzyme capable of removing microbody presequences of higher eukaryotes.
我们研究了西瓜(Citrullus vulgaris)乙醛酸循环体苹果酸脱氢酶[gMDH;(S)-苹果酸:NAD+氧化还原酶;EC 1.1.1.37]的N端前序列在微体靶向中的重要性。多形汉逊酵母被用作异源宿主,用于体内表达各种基因改造的西瓜MDH基因,其蛋白质产物通过免疫细胞化学技术进行定位。结果表明,gMDH的前序列对于过氧化物酶体靶向是必不可少且足够的;它可以将线粒体MDH的成熟部分靶向到微体,而前序列的缺失会导致gMDH成熟形式在细胞质中积累。几种假定在N端含有过氧化物酶体靶向信号(PTS2)的过氧化物酶体蛋白的N端比对表明共有序列为RL-X5-HL。类似的基序存在于西瓜gMDH的前序列中,即10RI-X5-17HL。突变分析表明,将10RI替换为DD或将17HL替换为DE会破坏拓扑信息,而将25M替换为I以及将26EE替换为LV则不会。通过将我们的数据与其他人最近对哺乳动物硫解酶前序列的分析相结合,可以得出结论,PTS2的过氧化物酶体靶向信息包含在共有序列RL/I-X5-HL中。与高等植物和哺乳动物不同,多形汉逊酵母过氧化物酶体似乎缺乏一种能够去除高等真核生物微体前序列的酶。