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通过自催化的胆色素附着实现荧光别藻蓝蛋白α亚基的生物合成。

Biosynthesis of fluorescent allophycocyanin alpha-subunits by autocatalytic bilin attachment.

作者信息

Hu I-Chen, Lee Tian-Ren, Lin Hui-Fen, Chiueh Chuang-Chun, Lyu Ping-Chiang

机构信息

Department of Life Sciences and Institute of Bioinformatics and Structural Biology, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Biochemistry. 2006 Jun 13;45(23):7092-9. doi: 10.1021/bi052067a.

Abstract

Allophycocyanin (APC) is one of the phycobiliproteins expressed in cyanobacteria. Phycobiliproteins contain a covalently bound chromophore, and thus, they are valuable as fluorescent probes. Biosynthesis of a functional phycobiliprotein is achieved by a bilin attachment process between the chromophore and apoprotein. Chromophore lyases are necessary to catalyze the chromophorylation of cyanobacterial phycobiliproteins, such as C-phycocyanin, and phycoerythrocyanin. To identify the lyase that catalyzes the chromophorylation of the APC alpha-subunit (ApcA), we searched the entire genomes of two cyanobacteria, Synechocystis sp. PCC6803 and Anabaena sp. PCC 7120; however, these genomes do not appear to encode an APC-specific chromophore lyase. In this study, chromophorylated ApcA (chromo-ApcA) was obtained via a spontaneous bilin attachment reaction. The absorption and fluorescence characteristics of chromo-ApcA were similar to those of the native APC alpha-subunit. The extent of chromophore attachment to apo-ApcA was comparable to that of the lyase-catalyzed reactions for other phycobiliproteins. These results indicate that ApcA has autocatalytic bilin:biliprotein lyase activity.

摘要

别藻蓝蛋白(APC)是蓝细菌中表达的藻胆蛋白之一。藻胆蛋白含有共价结合的发色团,因此作为荧光探针很有价值。功能性藻胆蛋白的生物合成是通过发色团与脱辅基蛋白之间的胆素连接过程实现的。发色团裂合酶是催化蓝细菌藻胆蛋白(如C-藻蓝蛋白和藻红胆素蛋白)发色团磷酸化所必需的。为了鉴定催化APCα亚基(ApcA)发色团磷酸化的裂合酶,我们搜索了两种蓝细菌集胞藻属PCC6803和鱼腥藻属PCC 7120的全基因组;然而,这些基因组似乎没有编码APC特异性发色团裂合酶。在本研究中,通过自发的胆素连接反应获得了发色团磷酸化的ApcA(发色团-ApcA)。发色团-ApcA的吸收和荧光特性与天然APCα亚基相似。发色团与脱辅基ApcA的连接程度与其他藻胆蛋白的裂合酶催化反应相当。这些结果表明ApcA具有自催化胆素:胆蛋白裂合酶活性。

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