Zalucki Yaramah M, Jones Christopher E, Ng Preston S K, Schulz Benjamin L, Jennings Michael P
School of Chemistry & Molecular Biosciences, The University of Queensland, Brisbane, Australia.
Biochim Biophys Acta. 2010 Jun;1798(6):1244-9. doi: 10.1016/j.bbamem.2010.03.010. Epub 2010 Mar 15.
Non-optimal codons are generally characterised by a low concentration of isoaccepting tRNA and a slower translation rate compared to optimal codons. In a previous study, we reported a 20-fold reduction in maltose binding protein (MBP) level when the non-optimal codons in the signal sequence were optimised. In this study, we report that the 20-fold reduction is rescued when MBP is expressed at 28 degrees C instead of 37 degrees C, suggesting that the signal sequence optimised MBP protein (MBP-opt) may be misfolded, and is being degraded at 37 degrees C. Consistent with this idea, transient induction of the heat shock proteases prior to MBP expression at 28 degrees C restores the 20-fold difference, demonstrating that the difference in production levels is due to post-translational degradation of MBP-opt by the heat-shock proteases. Analysis of the structure of purified MBP-wt and MBP-opt grown at 28 degrees C showed that although they have similar secondary structure content, MBP-opt is more resistant to thermal unfolding than is MBP-wt. The two proteins also exhibit different tryptic fragment profiles, further confirming that they are folded into conformationally different states. This is the first study to demonstrate that signal sequence non-optimal codons can influence the folding of the mature exported protein.
与最优密码子相比,非最优密码子通常具有同功tRNA浓度低和翻译速率慢的特点。在之前的一项研究中,我们报道当信号序列中的非最优密码子被优化后,麦芽糖结合蛋白(MBP)水平降低了20倍。在本研究中,我们报道当MBP在28℃而非37℃表达时,这20倍的降低得以挽救,这表明信号序列优化后的MBP蛋白(MBP-opt)可能发生了错误折叠,并在37℃时被降解。与此观点一致的是,在28℃表达MBP之前短暂诱导热休克蛋白酶,可恢复20倍的差异,这表明产量水平的差异是由于热休克蛋白酶对MBP-opt的翻译后降解所致。对在28℃生长的纯化MBP-wt和MBP-opt的结构分析表明,尽管它们具有相似的二级结构含量,但MBP-opt比MBP-wt更耐热解折叠。这两种蛋白还表现出不同的胰蛋白酶片段谱,进一步证实它们折叠成了构象不同的状态。这是第一项证明信号序列非最优密码子可影响成熟输出蛋白折叠的研究。