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首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >Few substitutions affect the bioluminescence spectra of Phrixotrix (Coleoptera : Phengodidae) luciferases: a site-directed mutagenesis survey
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Few substitutions affect the bioluminescence spectra of Phrixotrix (Coleoptera : Phengodidae) luciferases: a site-directed mutagenesis survey

机译:很少有取代会影响Phrixotrix(鞘翅目:伞形科)萤光素酶的生物发光光谱:定点诱变调查

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摘要

Phrixotrix (railroad worm) luciferases produce bioluminescence in the green and red regions of the spectrum, depending on the location of the lanterns, and are the only luciferases naturally producing red bioluminescence. Comparison of the luciferase sequences showed a set of substitutions that could be involved in bioluminescence colour determination: (a) unique substitutions in the red luciferase replacing otherwise invariant residues; (b) conserved basic residues in the green-yellow emitting luciferases; and (c) an additional R353 residue in red-emitting luciferase (Viviani et al., 1999). To investigate whether these sites have a functional role in bioluminescence colour determination, we performed a site-directed mutagenesis. Natural substitutions in the region 220-344 and residues in the putative luciferin-binding site were also investigated. With the exception of the previously identified substitution of R215 and 7226 (Viviani et al., 2002), which display dramatic red-shift effects on the spectrum of green-yellow-emitting luciferases, only a few substitutions had a moderate effect on the spectrum of the green-emitting luciferase. In contrast, no single substitution affected the spectrum of the red-emitting luciferase. The results suggest that the identity of the active site residues is not so critical for determining red bioluminescence in PxRE luciferase. Rather, the conformation assumed during the emitting step could be critical to set up proper interactions with excited oxyluciferin. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:Phrixotrix(铁路蠕虫)萤光素酶在光谱的绿色和红色区域产生生物发光,具体取决于灯笼的位置,并且是唯一自然产生红色生物发光的萤光素酶。萤光素酶序列的比较显示了一组可能与生物发光颜色测定有关的取代:(a)红色萤光素酶中的独特取代取代了原本不变的残基; (b)发射绿黄色荧光素酶的保守碱性残基; (c)在发红光的荧光素酶中的另一个R353残基(Viviani等,1999)。为了研究这些位点在生物发光颜色确定中是否具有功能性作用,我们进行了定点诱变。还研究了区域220-344中的自然取代和假定的荧光素结合位点中的残基。除了先前确定的R215和7226取代(Viviani等,2002)以外,它们对发射绿黄色荧光素的荧光素酶光谱显示出显着的红移影响,只有少数取代对光谱具有中等影响的绿色荧光素酶。相反,没有单个取代影响发红光的荧光素酶的光谱。结果表明,活性位点残基的身份对于确定PxRE荧光素酶中的红色生物发光不是那么关键。相反,在发射步骤中假定的构象对于建立与激发的氧化荧光素的适当相互作用可能至关重要。版权所有(C)2007 John Wiley&Sons,Ltd.

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