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A Ribosomal Misincorporation of Lys for Arg in Human Triosephosphate Isomerase Expressed in Escherichia coli Gives Rise to Two Protein Populations

机译:在大肠杆菌中表达的人糖磷酸异构酶中,Arg的Lys的核糖体错误掺入使两个蛋白质种群增加。

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摘要

We previously observed that human homodimeric triosephosphate isomerase (HsTIM) expressed in Escherichia coli and purified to apparent homogeneity exhibits two significantly different thermal transitions. A detailed exploration of the phenomenon showed that the preparations contain two proteins; one has the expected theoretical mass, while the mass of the other is 28 Da lower. The two proteins were separated by size exclusion chromatography in 3 M urea. Both proteins correspond to HsTIM as shown by Tandem Mass Spectrometry (LC/ESI-MS/MS). The two proteins were present in nearly equimolar amounts under certain growth conditions. They were catalytically active, but differed in molecular mass, thermostability, susceptibility to urea and proteinase K. An analysis of the nucleotides in the human TIM gene revealed the presence of six codons that are not commonly used in E. coli. We examined if they were related to the formation of the two proteins. We found that expression of the enzyme in a strain that contains extra copies of genes that encode for tRNAs that frequently limit translation of heterologous proteins (Arg, Ile, Leu), as well as silent mutations of two consecutive rare Arg codons (positions 98 and 99), led to the exclusive production of the more stable protein. Further analysis by LC/ESI-MS/MS showed that the 28 Da mass difference is due to the substitution of a Lys for an Arg residue at position 99. Overall, our work shows that two proteins with different biochemical and biophysical properties that coexist in the same cell environment are translated from the same nucleotide sequence frame.
机译:我们以前观察到在大肠杆菌中表达并纯化至表观同质性的人同二聚磷酸三糖磷酸异构酶(HsTIM)表现出两个明显不同的热转变。对该现象进行的详细研究表明,该制剂含有两种蛋白质。一个具有预期的理论质量,而另一个的质量低28 Da。通过尺寸排阻色谱法在3 M尿素中分离这两种蛋白质。如串联质谱法(LC / ESI-MS / MS)所示,两种蛋白质均对应于HsTIM。在某些生长条件下,这两种蛋白质以几乎等摩尔的量存在。它们具有催化活性,但在分子质量,热稳定性,对尿素和蛋白酶K的敏感性方面有所不同。对人TIM基因中核苷酸的分析表明,存在六个在大肠杆菌中不常用的密码子。我们检查了它们是否与两种蛋白质的形成有关。我们发现该酶在菌株中的表达,该菌株包含编码tRNA的基因的额外拷贝,该基因经常限制异源蛋白(Arg,Ile,Leu)的翻译,以及两个连续的罕见Arg密码子的无性突变(第98位和第98位) 99),导致更稳定蛋白质的独家生产。通过LC / ESI-MS / MS的进一步分析表明,28 Da的质量差异是由于Lys取代了99位的Arg残基。总的来说,我们的工作表明,两种具有不同生化和生物物理特性的蛋白质共存于从相同的核苷酸序列框架翻译出相同的细胞环境。

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