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Expression and characterization of the calcium-activated photoprotein from the ctenophore Bathocyroe fosteri: Insights into light-sensitive photoproteins

机译:食蟹Bath虫钙激活的光蛋白的表达和表征:对光敏光蛋白的见解

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摘要

Calcium-binding photoproteins have been discovered in a variety of luminous marine organisms [1]. Recent interest in photoproteins from the phylum Ctenophora has stemmed from cloning and expression of several photoproteins from this group [2-5]. Additional characterization has revealed unique biochemical properties found only in ctenophore photoproteins, such as inactivation by light. Here we report the cloning, expression, and characterization of the photoprotein responsible for luminescence in the deep-sea ctenophore Bathocyroe fosteri. This animal was of particular interest due to the unique broad color spectrum observed in live specimens [6]. Full-length sequences were identified by BLAST searches of known photoprotein sequences against Bathocyroe transcripts obtained from 454 sequencing. Recombinantly expressed Bathocyroe photoprotein (BfosPP) displayed an optimal coelenterazine-loading pH of 8.5, and produced calcium-triggered luminescence with peak wavelengths closely matching the 493. nm peak observed in the spectrum of live B. fosteri specimens. Luminescence from recombinant BfosPP was inactivated most efficiently by UV and blue light. Primary structure alignment of BfosPP with other characterized photoproteins showed very strong sequence similarity to other ctenophore photoproteins and conservation of EF-hand motifs. Both alignment and structural prediction data provide more insight into the formation of the coelenterazine-binding domain and the probable mechanism of photoinactivation. ? 2012 Elsevier Inc.
机译:钙结合的光蛋白已在各种发光的海洋生物中发现[1]。 Ctenophora门的光蛋白最近的兴趣来自该组中几种光蛋白的克隆和表达[2-5]。进一步的表征揭示了仅在c光蛋白中发现的独特生化特性,例如光灭活。在这里,我们报告了负责深海c虫Bathocyroe培育的发光的光蛋白的克隆,表达和表征。由于在活体标本中观察到独特的宽光谱,该动物特别受关注[6]。通过BLAST搜索已知光蛋白序列对从454测序中获得的Bathocyroe转录本进行鉴定,确定了全长序列。重组表达的Bathrocyroe光蛋白(BfosPP)显示最佳的腔肠素装载pH值为8.5,并产生了钙触发的发光,其峰值波长与在活的B.rusti标本光谱中观察到的493.nm峰值非常接近。重组BfosPP的发光被紫外线和蓝光最有效地灭活。 BfosPP与其他特征性光蛋白的一级结构比对显示出与其他尾鳍光蛋白非常强的序列相似性,并保留了EF手基序。对准和结构预测数据均提供了腔肠素结合域的形成和光灭活的可能机理的更多见解。 ? 2012爱思唯尔公司

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