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Differential role of segments of α-mating factor secretion signal in Pichia pastoris towards granulocyte colony-stimulating factor emerging from a wild type or codon optimized copy of the gene

机译:α-交配因子分泌信号在麦基菌牧草中朝向野生型或密码子优化拷贝出现的粒细胞菌落刺激因子的差异作用

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The methylotrophic yeast, Pichia pastoris has been widely used for the production of human therapeutics, but production of granulocyte colony-stimulating factor (G-CSF) in this yeast is low.The work reported here aimed to improve the extracellular production of G-CSF by introducing mutations in the leader sequence and using a codon optimized copy of G-CSF. Bioinformatic analysis was carried out to propose an explanation for observed effect of mutations on extracellular G-CSF production. Mutations in the pro-region of the α-mating type (MAT) secretory signal, when placed next to a codon optimized (CO)-GCSF copy, specifically, the Δ57–70 type, led to highest G-CSF titre of 39.4?±?1.4?mg/L. The enhanced effect of this deletion was also observed when it preceded the WT copy of the gene. Deletion of the 30–43 amino acids in the pro-peptide, fused with the wild type (WT)-GCSF copy, completely diminished G-CSF secretion, while no effect was observed when this deletion was in front of the CO-GCSF construct. Also, Matα:Δ47–49 deletion preceding the WT-GCSF dampened the secretion of this protein, while no effect was seen when this deletion preceded the CO-GCSF copy of the gene. This indicated that faster rates of translation (as achieved through codon optimization) could overcome the control exercised by these segments. The loss of secretion occurring due to Δ30–43 in the WT-GCSF was partially restored (by 60%) when the Δ57–70 was added. The effect of Δ47–49 segment in the WT-GCSF could also be partially restored (by 60%) by addition of Δ57–70 indicating the importance of the 47–49 region. A stimulatory effect of Δ57–70 was confirmed in the double deletion (Matα:Δ57–70;47–49) construct preceding the CO-GCSF. Secondary and tertiary structures, when predicted using I-TASSER, allowed to understand the relationship between structural changes and their impact on G-CSF secretion. The Δ57–70 amino acids form a major part of 3rd alpha-helix in the pre-pro peptide and its distortion increased the flexibility of the loop, thereby promoting its interaction with the cargo protein. A minimum loop length was found to be necessary for secretion. The strict control in the process of secretion appeared to be overcome by changing the secondary structures in the signal peptides. Such fine tuning can allow enhanced secretion of other therapeutics in this expression system. Among the different truncations (Matα:Δ57–70, Matα:Δ47–49, Matα:Δ30–43, Matα:Δ57–70;30–43, Matα:Δ57–70;47–49) in pro-peptide of α-MAT secretion signal, Matα:Δ57–70 fused to CO-GCSF, led to highest G-CSF titre as compared to other Matα truncations. On the other hand, Matα:Δ30–43 and Matα:Δ47–49 fused to the WT-GCSF dampened the secretion of this protein indicating important role of these segments in the secretion of the cargo protein.
机译:Pichia Pastoris的甲基脱蛋白酵母已被广泛用于生产人类治疗,但在此酵母中的粒细胞菌落刺激因子(G-CSF)的产生很低。这里的工作旨在改善G-CSF的细胞外产生通过引入领导序列中的突变并使用G-CSF的密码子优化副本。进行生物信息分析,提出了观察到突变对细胞外G-CSF生产作用的解释。 α配合型(垫)分泌信号的突变中的突变,当放置在密码子优化(CO)-GCSF拷贝拷贝旁边,特别是Δ57-70型,导致了39.4的最高G-CSF滴度? ±1.4?mg / l。当它在基因的WT拷贝之前,还观察到这种缺失的增强效果。在亲肽的30-43个氨基酸,与野生型(WT)-GCSF拷贝,完全减少GCSF分泌稠合的,而没有观察到效果,当该删除是在CO-GCSF构建体的前面的缺失。此外,Matα:Δ47-49在WT-GCSF之前的缺失抑制了该蛋白质的分泌,而当该缺失之前在基因的Co-GCSF拷贝之前没有看到效果。这表明翻译的速度更快(通过密码子优化实现)可以克服这些段行使的控制。当加入δ57-70时,部分恢复(WT-GCSF中的Δ30-43,由于Δ30-43而发生的分泌丢失。通过添加Δ57-70,Δ47-49段在WT-GCSF中的Δ47-49段的影响也可以通过添加Δ57-70来部分恢复(乘60%),表明47-49区域的重要性。在CO-GCSF之前的双缺失(Matα:Δ57-70; 47-49)构建体中证实了Δ57-70的刺激作用。次级和三级结构,当使用I-Tasser预测时,允许了解结构变化与其对G-CSF分泌的影响之间的关系。 δ57-70氨基酸在预肽中形成第3α-螺旋的主要部分,其变形增加了环的柔韧性,从而促进其与货物蛋白质的相互作用。发现了最小环长度是分泌所必需的。通过改变信号肽中的二次结构来克服分泌过程中的严格控制。这种微调可以允许在该表达系统中提高其他治疗剂的分泌。在不同的截短(Matα:Δ57-70中,Matα:Δ47-49,Matα:Δ30-43,Matα:Δ57-70; 30-43,Matα:Δ57-70; 47-49)在α-的α-垫分泌信号,Matα:Δ57-70融合到CO-GCSF,与其他MATα截断相比,导致G-CSF滴度最高。另一方面,Matα:Δ30-43和Matα:Δ47-49融合到WT-GCSF的分泌,表明这些段在货物蛋白质分泌中的重要作用。

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