首页> 外文期刊>Photosynthesis Research: An International Journal >Polyclonal antibodies against the TLA1 protein also recognize with high specificity the D2 reaction center protein of PSII in the green alga Chlamydomonas reinhardtii
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Polyclonal antibodies against the TLA1 protein also recognize with high specificity the D2 reaction center protein of PSII in the green alga Chlamydomonas reinhardtii

机译:针对TLA1蛋白的多克隆抗体还可以高特异性识别绿藻莱茵衣藻中PSII的D2反应中心蛋白。

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The Chlamydomonas reinhardtii DNA-insertional transformant truncated light-harvesting antenna 1 (tla1) mutant, helped identify the novel TLA1 gene (GenBank Accession # AF534570-71) as an important genetic determinant in the chlorophyll antenna size of photosynthesis. Down-regulation in the amount of the TLA1 23 kDa protein in the cell resulted in smaller chlorophyll antenna size for both photosystems (in Tetali et al. Planta 225:813-829, 2007). Specific polyclonal antibodies, raised against the recombinant TLA1 protein, showed a cross-reaction with the predicted 23 kDa TLA1 protein in C. reinhardtii protein extracts, but also showed a strong cross-reaction with a protein band migrating to 28.5 kDa. Questions of polymorphism, or posttranslational modification of the TLA1 protein were raised as a result of the unexpected 28.5 kDa cross-reaction. Work in this paper aimed to elucidate the nature of the unexpected 28.5 kDa cross-reaction, as this was deemed to be important in terms of the functional role of the TLA1 protein in the regulation of the chlorophyll antenna size of photosynthesis. Immuno-precipitation of the 28.5 kDa protein, followed by LC-mass spectrometry, showed amino acid sequences ascribed to the psbD/D2 reaction center protein of PSII. The common antigenic determinant between TLA1 and D2 was shown to be a stretch of nine conserved amino acids V-F-L(V)LP-GNAL in the C-terminus of the two proteins, constituting a high antigenicity "GNAL" domain. Antibodies raised against the TLA1 protein containing this domain recognized both the TLA1 and the D2 protein. Conversely, antibodies raised against the TLA1 protein minus the GNAL domain specifically recognized the 23 kDa TLA1 protein and failed to recognize the 28.5 kDa D2 protein. D2 antibodies raised against an oligopeptide containing this domain also cross-reacted with the TLA1 protein. It is concluded that the 28.5 kDa cross-reaction of C. reinhardtii protein extracts with antiTLA1 antibodies is due to antibody affinity for the GNAL domain of the D2 protein and has no bearing on the identity or function of the TLA1 protein.
机译:衣藻衣原体DNA插入的转化体截短的光捕获天线1(tla1)突变体,帮助确定了新的TLA1基因(GenBank登录号AF534570-71)是光合作用的叶绿素天线大小的重要遗传决定因素。细胞中TLA1 23 kDa蛋白量的下调导致两个光系统的叶绿素触角尺寸变小(在Tetali等人Planta 225:813-829,2007)。针对重组TLA1蛋白的特异性多克隆抗体与莱茵衣藻蛋白提取物中的23 kDa TLA1蛋白具有交叉反应,但与迁移至28.5 kDa的蛋白带也具有较强的交叉反应。由于出乎意料的28.5 kDa交叉反应,提出了多态性或TLA1蛋白的翻译后修饰问题。本文的工作旨在阐明意料之外的28.5 kDa交叉反应的性质,因为就TLA1蛋白在调节光合作用的叶绿素触角大小方面的功能作用而言,这被认为很重要。 28.5 kDa蛋白的免疫沉淀,然后进行LC质谱分析,显示了归因于PSII psbD / D2反应中心蛋白的氨基酸序列。 TLA1和D2之间的常见抗原决定簇显示为两个蛋白C端的九个保守氨基酸V-F-L(V)LP-GNAL的一段,构成高抗原性“ GNAL”结构域。针对含有该结构域的TLA1蛋白产生的抗体可以识别TLA1和D2蛋白。相反,针对TLA1蛋白减去GNAL结构域的抗体特异性识别23 kDa TLA1蛋白,而不能识别28.5 kDa D2蛋白。针对含有该结构域的寡肽的D2抗体也与TLA1蛋白发生交叉反应。结论是莱茵衣藻蛋白提取物与抗TLA1抗体的28.5 kDa交叉反应归因于对D2蛋白GNAL域的抗体亲和力,与TLA1蛋白的身份或功能无关。

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