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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Bioinformatic analyses of integral membrane transport proteins encoded within the genome of the planctomycetes species, Rhodopirellula baltica
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Bioinformatic analyses of integral membrane transport proteins encoded within the genome of the planctomycetes species, Rhodopirellula baltica

机译:浮游菌物种波罗的海藻物种基因组内编码的完整膜转运蛋白的生物信息学分析

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Rhodopirellula baltica (R. baltica) is a Planctomycete, known to have intracellular membranes. Because of its unusual cell structure and ecological significance, we have conducted comprehensive analyses of its transmembrane transport proteins. The complete proteome of R baltica was screened against the Transporter Classification Database (TCDB) to identify recognizable integral membrane transport proteins. 342 proteins were identified with a high degree of confidence, and these fell into several different classes. R. baltica encodes in its genome channels (12%), secondary carriers (33%), and primary active transport proteins (41%) in addition to classes represented in smaller numbers. Relative to most non-marine bacteria, R. baltica possesses a larger number of sodium-dependent symporters but fewer proton-dependent symporters, and it has dimethylsulfoxide (DMSO) and trimethyl-amine-oxide (TMAO) reductases, consistent with its Na+-rich marine environment. R. baltica also possesses a Na+-translocating NADH:quinone dehydrogenase (Na+-NDH), a Na+ efflux decarboxylase, two Na+-exporting ABC pumps, two Na+-translocating F-type ATPases, two Na+:H+ antiporters and two K+:H+ antiporters. Flagellar motility probably depends on the sodium electrochemical gradient. Surprisingly, R, baltica also has a complete set of H+-translocating electron transport complexes similar to those present in a-proteobacteria and eukaryotic mitochondria. The transport proteins identified proved to be typical of the bacterial domain with little or no indication of the presence of eukaryotic-type transporters. However, novel functionally uncharacterized multispanning membrane proteins were identified, some of which are found only in Rhodopirellula species, but others of which are widely distributed in bacteria. The analyses lead to predictions regarding the physiology, ecology and evolution of R. baltica.
机译:波罗的海假单胞菌(R. baltica)是一种浮游菌,已知具有细胞内膜。由于其异常的细胞结构和生态意义,我们对其跨膜转运蛋白进行了综合分析。相对于转运蛋白分类数据库(TCDB)筛选了波罗的海藻的完整蛋白质组,以识别可识别的整合膜转运蛋白。高度自信地鉴定出342种蛋白质,这些蛋白质分为几个不同的类别。除了以较小数量表示的类别外,波罗的海罗非鱼还编码其基因组通道(12%),次要载体(33%)和主要活性转运蛋白(41%)。相对于大多数非海洋细菌,波罗的海罗非鱼具有大量的钠依赖性同向转运蛋白,但质子依赖性的同向转运蛋白较少,并且具有二甲基亚砜(DMSO)和三甲基胺氧化物(TMAO)还原酶,与其Na +-一致丰富的海洋环境。波罗的海藻还具有Na +易位的NADH:醌脱氢酶(Na + -NDH),Na +外排脱羧酶,两个Na +出口的ABC泵,两个Na +易位的F型ATPase,两个Na +:H +反向转运蛋白和两个K +:H +反转运蛋白。鞭毛运动可能取决于钠的电化学梯度。令人惊讶的是,波罗的海R还具有一套完整的H +易位电子传输复合物,类似于a-变形杆菌和真核线粒体中存在的那些。鉴定出的转运蛋白被证明是典型的细菌结构域,很少或没有迹象表明存在真核型转运蛋白。然而,鉴定了新颖的功能未表征的跨膜蛋白,其中一些仅在红假单胞菌属中发现,而另一些则广泛分布于细菌中。通过分析得出有关波罗的海藻的生理,生态和进化的预测。

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