Naganuma Takao, Shiogama Kaori, Uchiumi Toshio
Department of Biology, Niigata University, Niigata 950-2181, Japan.
Genes Cells. 2007 Apr;12(4):501-10. doi: 10.1111/j.1365-2443.2007.01067.x.
Acidic phosphoproteins P1 and P2 form a heterodimer and play a crucial role in assembly of the GTPase-associated center in eukaryotic ribosomes and in ribosomal interaction with translation factors. We investigated the structural elements within P1 and P2 essential for their dimerization and for ribosomal function. Truncation of the N-terminal 10 amino acids in either P1 or P2 and swapping of the N-terminal 10 amino acid sequences between these two proteins disrupted their dimerization, binding to P0 and P0 binding to rRNA. In contrast, truncation of the C-terminal halves of P1 and P2 as well as swapping of these parts between them gave no significant effects. The protein dimers containing the C-terminal truncation mutants or swapped variants were assembled with P0 onto Escherichia coli 50 S subunits deficient in the homologous protein L10 and L7/L12 and gave reduced ribosomal activity in terms of eukaryotic elongation factor dependent GTPase activity and polyphenylalanine synthesis. The results indicate that the N-terminal 10 amino acid sequences of both P1 and P2 are crucial for P1-P2 heterodimerization and for their functional assembly with P0 into the GTPase-associated center, whereas the C-terminal halves of P1 and P2 are not essential for the assembly.
酸性磷蛋白P1和P2形成异源二聚体,在真核生物核糖体中GTP酶相关中心的组装以及核糖体与翻译因子的相互作用中发挥关键作用。我们研究了P1和P2中对其二聚化和核糖体功能至关重要的结构元件。P1或P2中N端10个氨基酸的截短以及这两种蛋白质之间N端10个氨基酸序列的交换破坏了它们的二聚化、与P0的结合以及P0与rRNA的结合。相比之下,P1和P2 C端一半的截短以及它们之间这些部分的交换没有产生显著影响。含有C端截短突变体或交换变体的蛋白质二聚体与P0组装到缺乏同源蛋白L10和L7/L12的大肠杆菌50 S亚基上,就真核延伸因子依赖性GTP酶活性和聚苯丙氨酸合成而言,核糖体活性降低。结果表明,P1和P2的N端10个氨基酸序列对于P1 - P2异源二聚化以及它们与P0功能性组装到GTP酶相关中心至关重要,而P1和P2的C端一半对于组装并非必不可少。