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Modifications in the N-terminus of an insect cytochrome P450 enhance production of catalytically active protein in baculovirus-Sf9 cell expression systems

机译:昆虫细胞色素P450 N末端的修饰增强杆状病毒Sf9细胞表达系统中催化活性蛋白的产生

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摘要

Although baculovirus vectors are powerful tools for the heterologous expression of proteins in insect cell cultures, some insect and plant microsomal P450 proteins are not effectively expressed in this system. Hypothesizing that their expression failures might result from collisions between their N-terminal sequences and adjacent cytosolic sequences, we compared and mutated the N-terminus of Papilio multicaudatus CYP6B33, which is inappropriately folded in Sf9 cells, to sequences present in its Papilio polyxenes CYP6B1 counterpart, which is efficiently expressed and appropriately folded. Molecular modeling of the three differences in the linker separating the signal anchor domain (SAD) and the cytosolic domain identified Val32 in CYP6B33 as a residue potentially important for folding and/or positioning of the cytosolic domain. Mutation of Val32 to Ala32 in the CYP6B33 linker (CYP6B33 V32A mutant) or replacement of the CYP6B33 SAD with that of CYP6B1 (CYP6B11-20/CYP6B3321-500 mutant) allowed for significant P450 expression, indicating that complex interactions involving both the signal anchor and membrane linker affect folding and activity of P450s in this heterologous expression system.
机译:尽管杆状病毒载体是在昆虫细胞培养物中异源表达蛋白质的强大工具,但某些昆虫和植物微粒体P450蛋白质在该系统中无法有效表达。推测它们的表达失败可能是由于其N端序列与相邻胞质序列之间的碰撞引起的,我们比较并突变了在Sf9细胞中不适当折叠的Papilio multicaudatus CYP6B33的N端,并将其突变为Papilio polyxenes CYP6B1对应物中存在的序列,可以有效地表达并适当折叠。对分离信号锚结构域(SAD)和胞质结构域的接头中三个差异的分子建模将CYP6B33中的Val32鉴定为对胞质结构域折叠和/或定位潜在重要的残基。 CYP6B33接头中的Val32突变为Ala32(CYP6B33 V32A突变体)或用CYP6B1的CYP6B33 SAD替代(CYP6B11-20 / CYP6B3321-500突变体)均可实现显着的P450表达,这表明涉及信号锚和信号转导的复杂相互作用膜接头影响该异源表达系统中P450的折叠和活性。

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