首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Auracyanin A from the thermophilic green gliding photosynthetic bacterium Chloroflexus aurantiacus represents an unusual class of small blue copper proteins.
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Auracyanin A from the thermophilic green gliding photosynthetic bacterium Chloroflexus aurantiacus represents an unusual class of small blue copper proteins.

机译:来自嗜热的绿色滑行光合细菌Chloroflexus aurantiacus的花青素A代表一类不寻常的小蓝铜蛋白。

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摘要

The amino acid sequence of the small copper protein auracyanin A isolated from the thermophilic photosynthetic green bacterium Chloroflexus aurantiacus has been determined to be a polypeptide of 139 residues. His58, Cys123, His128, and Met132 are spaced in a way to be expected if they are the evolutionary conserved metal ligands as in the known small copper proteins plastocyanin and azurin. Secondary structure prediction also indicates that auracyanin has a general beta-barrel structure similar to that of azurin from Pseudomonas aeruginosa and plastocyanin from poplar leaves. However, auracyanin appears to have sequence characteristics of both small copper protein sequence classes. The overall similarity with a consensus sequence of azurin is roughly the same as that with a consensus sequence of plastocyanin, namely 30.5%. We suggest that auracyanin A, together with the B forms, is the first example of a new class of small copper proteins that may be descendants of an ancestral sequence to both the azurin proteins occurring in prokaryotic nonphotosynthetic bacteria and the plastocyanin proteins occurring in both prokaryotic cyanobacteria and eukaryotic algae and plants. The N-terminal sequence region 1-18 of auracyanin is remarkably rich in glycine and hydroxy amino acids, and required mass spectrometric analysis to be determined. The nature of the blocking group X is not yet known, although its mass has been determined to be 220 Da. The auracyanins are the first small blue copper proteins found and studied in anoxygenic photosynthetic bacteria and are likely to mediate electron transfer between the cytochrome bc1 complex and the photosynthetic reaction center.
机译:从嗜热的光合作用绿色细菌金绿藻中分离出的铜蛋白小花青素A的氨基酸序列已被确定为139个残基的多肽。如果His58,Cys123,His128和Met132是进化上的保守金属配体(如已知的小铜蛋白质体蓝素和天青素中),则以预期的方式隔开。二级结构预测还表明,金绿花青素具有与来自铜绿假单胞菌(Pseudomonas aeruginosa)的天青蛋白和来自杨树叶片的质体蓝素相似的大体β-桶状结构。但是,花青素似乎具有两个小的铜蛋白序列类别的序列特征。与天青素的共有序列的总体相似性与与质体蓝素的共有序列的相似性大致相同,即30.5%。我们建议,Auracyanin A和B形式一起是一类新的小铜蛋白的第一个例子,它们可能是原核非光合细菌中存在的天青蛋白和两个原核中的质体蓝素蛋白的祖先序列的后代蓝细菌和真核藻类和植物。花青素的N-末端序列区域1-18富含甘氨酸和羟基氨基酸,需要进行质谱分析才​​能确定。尽管封端基团X的质量已经确定为220Da,但尚不知道其性质。花青素是在无氧光合细菌中发现并研究的第一个小蓝铜蛋白,可能介导细胞色素bc1复合物与光合反应中心之间的电子转移。

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