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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Strategy of mutual compensation of green and red mutants of firefly luciferase identifies a mutation of the highly conservative residue E457 with a strong red shift of bioluminescence
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Strategy of mutual compensation of green and red mutants of firefly luciferase identifies a mutation of the highly conservative residue E457 with a strong red shift of bioluminescence

机译:萤火虫荧光素酶绿色和红色突变体的相互补偿策略可鉴定高度保守的残基E457的突变,并具有强烈​​的生物发光红移

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Bioluminescence spectra of firefly luciferases demonstrate highly pH-sensitive spectra changing the color from green to red light when pH is lowered from alkaline to acidic. This reflects a change of ratio of the green and red emitters in the bimodal spectra of bioluminescence. We show that the mutations strongly stabilizing green (Y35N) or red (H433Y) emission compensate each other leading to the WT color of firefly luciferase. We further used this compensating ability of Y35N to search for strong red-shifting mutations in the C-domain of firefly luciferase by random mutagenesis. The discovered mutation E457K substantially increased the contribution of the red emitter and caused a 12 nm red shift of the green emitter as well. E457 is highly conservative not only in beetle luciferases but also in a whole ANL super-family of adenylating enzymes and forms a conservative structural hydrogen bond with V471. Our results suggest that the removal of this hydrogen bond only mildly affects luciferase properties and that most of the effect of E457K is caused by the introduction of positive charge. E457 forms a salt bridge with R534 in most ANL enzymes including pH-insensitive luciferases which is absent in pH-sensitive firefly luciferases. The mutant A534R shows that this salt bridge is not important for pH-sensitivity but considerably improves in vivo thermostability. Although E457 is located far from the oxyluciferin-binding site, the properties of the mutant E457K suggest that it affects color by influencing the AMP binding.
机译:萤火虫荧光素酶的生物发光光谱显示出高度的pH敏感光谱,当pH从碱性降低为酸性时,其颜色从绿色变为红色。这反映了生物发光双峰光谱中绿色和红色发射体比率的变化。我们表明,强烈稳定的绿色(Y35N)或红色(H433Y)发射的突变相互补偿,导致萤火虫荧光素酶的野生型。我们进一步利用Y35N的这种补偿能力,通过随机诱变在萤火虫荧光素酶的C域中寻找强红移突变。发现的突变E457K大大增加了红色发射器的贡献,并导致绿色发射器发生了12 nm的红移。 E457不仅在甲虫萤光素酶中而且在腺苷酸化酶的整个ANL超家族中都是高度保守的,并且与V471形成保守的结构氢键。我们的结果表明,该氢键的去除仅对荧光素酶的性质产生轻微影响,而E457K的大部分作用是由引入正电荷引起的。 E457与大多数ANL酶(包括对pH敏感的萤火虫荧光素酶中不存在的对pH敏感的萤光素酶)中的R534形成盐桥。突变体A534R表明,该盐桥对pH敏感度并不重要,但可显着提高体内热稳定性。尽管E457的位置远离氧化荧光素结合位点,但突变体E457K的特性表明它通过影响AMP结合而影响颜色。

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