[Expression of Pichia pastoris tRNAProCCG and its function]

Sheng Wu Gong Cheng Xue Bao. 2019 Jan 25;35(1):70-80. doi: 10.13345/j.cjb.180126.
[Article in Chinese]

Abstract

Translocation ribonucleic acid (tRNA) is one of the important components in protein synthesis. In order to explore the effect of the changes of tRNAs corresponding to rare codons (rarity tRNAs) on the expression of exogenous genes, the co-expression system of rare tRNA gene and exogenous gene in Pichia pastoris was constructed. The expression of GFP in P. pastoris can be greatly reduced when a repressor region composed of four continuous proline rare codon CCG was added into the GFP gene. The expression amount of the repressed GFP could be increased about 4.9% when tRNAProCCG gene was cointegrated to the 3' of the repressed GFP gene through pPIC9K to the genome of P. pastoris GS115. Meanwhile, the expression amount of the repressed GFP increased about 12.5% by integrating the repressed GFP gene and tRNAProCCG gene to the genome of P. pastoris GS115 through pPIC9K and pFLDα, respectively. Using the same method, NFATc3T-GFP fusion gene and tRNAProCCG gene were co-expressed in P. pastoris GS115 resulting in 21.3% increased of the expression amount of NFATc3T-GFP fusion protein. In conclusion, tRNAProCCG gene has been confirmed to be a kind of rare tRNAs in P. pastoris GS115. Through co-expression of tRNAProCCG gene and heterologous genes which containing the continuous rare codon CCG, the expression of the repressed heterologous genes could be increased significantly. Furthermore, this co-expression system would contribute to screening and determining the other rare tRNAs.

转运核糖核酸 (tRNA) 是蛋白质合成过程中重要参与成分之一,为了探索稀有密码子对应的tRNA (稀少tRNA) 丰度改变对外源基因表达量的影响,文中构建了毕赤酵母稀少tRNA 基因与外源基因共表达体系。首先在GFP 基因中添加由4 个连续脯氨酸稀有密码子CCG 组成的阻遏区,结果显示该GFP 基因的表达量明显降低。然后将带有阻遏区的GFP 基因和tRNAProCCG基因顺次连接于pPIC9K 载体上,在毕赤酵母GS115 中共表达,结果使GFP表达量提高了4.9%;另将带有阻遏区的GFP 基因和tRNAProCCG基因分别连接于pPIC9K 和pFLDα 载体,在毕赤酵母GS115 中共表达,GFP 表达量最高提高了12.5%;应用同样方式将tRNAProCCG基因与NFATc3T-GFP 融合基因共表达,其表达量提高了21.3%。可见,tRNAProCCG在毕赤酵母GS115 中确为稀少tRNA,通过共表达tRNAProCCG基因可显著提高带有连续该密码子的外源基因表达量,并且,文中构建的共表达体系将同样适用于其他稀少tRNA 基因的筛选和验证。.

Keywords: Pichia pastoris; co-expression; rare tRNA abundance; tRNAProCCG gene.

MeSH terms

  • Codon
  • Pichia*
  • Recombinant Proteins

Substances

  • Codon
  • Recombinant Proteins