Wang Yalan, Mao Yuanhui, Xu Xiaodong, Tao Shiheng, Chen Hongying
College of Life Sciences, Northwest A&F University, Yangling, Shaanxi 712100, P. R. China.
State key laboratory of crop stress biology for arid areas, Northwest A&F University, Yangling, Shaanxi 712100, P. R. China.
PLoS One. 2015 Dec 23;10(12):e0145887. doi: 10.1371/journal.pone.0145887. eCollection 2015.
By introducing synonymous mutations into the coding sequences of GP64sp and FibHsp signal peptides, the influences of mRNA secondary structure and codon usage of signal sequences on protein expression and secretion were investigated using baculovirus/insect cell expression system. The results showed that mRNA structural stability of the signal sequences was not correlated with the protein production and secretion levels, and FibHsp was more tolerable to codon changes than GP64sp. Codon bias analyses revealed that codons for GP64sp were well de-optimized and contained more non-optimal codons than FibHsp. Synonymous mutations in GP64sp sufficiently increased its average codon usage frequency and resulted in dramatic reduction of the activity and secretion of luciferase. Protein degradation inhibition assay with MG-132 showed that higher codon usage frequency in the signal sequence increased the production as well as the degradation of luciferase protein, indicating that the synonymous codon substitutions in the signal sequence caused misfolding of luciferase instead of slowing down the protein production. Meanwhile, we found that introduction of more non-optimal codons into FibHsp could increase the production and secretion levels of luciferase, which suggested a new strategy to improve the production of secretory proteins in insect cells.
通过将同义突变引入GP64sp和FibHsp信号肽的编码序列中,利用杆状病毒/昆虫细胞表达系统研究了信号序列的mRNA二级结构和密码子使用对蛋白质表达和分泌的影响。结果表明,信号序列的mRNA结构稳定性与蛋白质产生和分泌水平无关,并且FibHsp比GP64sp对密码子变化更具耐受性。密码子偏好性分析显示,GP64sp的密码子优化程度较差,比FibHsp含有更多的非最优密码子。GP64sp中的同义突变充分提高了其平均密码子使用频率,并导致荧光素酶活性和分泌显著降低。用MG-132进行的蛋白质降解抑制试验表明,信号序列中较高的密码子使用频率增加了荧光素酶蛋白的产生以及降解,这表明信号序列中的同义密码子替换导致荧光素酶错误折叠,而不是减缓蛋白质产生。同时,我们发现向FibHsp中引入更多的非最优密码子可以提高荧光素酶的产生和分泌水平,这为提高昆虫细胞中分泌蛋白的产量提出了一种新策略。