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首页> 外文期刊>Journal of Biotechnology >The search for new chlorophyll-binding proteins in the cyanobacterium Synechocystis sp PCC 6803
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The search for new chlorophyll-binding proteins in the cyanobacterium Synechocystis sp PCC 6803

机译:在蓝藻蓝藻PCC 6803中寻找新的叶绿素结合蛋白

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摘要

Light harvesting provides a major challenge in the production of biofuels from microorganisms; while sunlight provides the energy necessary for biomass/biofuel production, at the same time it damages the cells. The genome of Synechocystis sp. PCC 6803 was searched for open reading frames that might code for yet unidentified chlorophyll-binding proteins with low molecular mass that could be involved in stress-adaptation. Amongst 9167 hypothetical ORFs corresponding to potential polypeptides of 100 amino acids or less, two were identified that had the potential to be pigment-binding, because they (i) encoded a potential transmembrane region, (ii) showed sequence similarity with known chlorophyll-binding domains, (iii) were conserved in other cyanobacterial species, and (iv) their codon adaptation index indicated significant translation probability. The two ORFs were located complementary (antisense) and internal to the ferrochelatase (hemH) and the pyruvate dehydrogenase (pdh) genes and therefore were named a-fch and a-pdh, respectively. Transcription of both genes was confirmed; however, no translated proteins could be detected immunologically. Whereas mutations within a-pdh or a-fch did not lead to any obvious phenotype, it is clear that transcripts and proteins over and above the currently known set may play a role in defining the physiology of cyanobacteria and other organisms.
机译:光收集在从微生物生产生物燃料方面提出了重大挑战。阳光提供了生物质/生物燃料生产所需的能量,同时又损害了细胞。集胞藻的基因组。搜索PCC 6803的开放阅读框,该框可能编码尚未鉴定的低分子量叶绿素结合蛋白,可能参与胁迫适应。在9167个假设的ORF中,它们对应于100个氨基酸或更少的潜在多肽,其中两个被确定具有与色素结合的潜力,因为它们(i)编码了一个潜在的跨膜区域,(ii)与已知的叶绿素结合表现出序列相似性域,(iii)在其他蓝细菌物种中是保守的,并且(iv)它们的密码子适应指数表明翻译的可能性很高。这两个ORF位于铁螯合酶(hemH)和丙酮酸脱氢酶(pdh)基因的互补(反义)和内部,因此分别命名为a-fch和a-pdh。证实了两个基因的转录。但是,无法通过免疫学方法检测到翻译的蛋白质。尽管a-pdh或a-fch内的突变不会导致任何明显的表型,但很明显,目前已知的转录本和蛋白质之外的转录本和蛋白质可能在定义蓝细菌和其他生物的生理学中起作用。

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