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首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >Phycobiliproteins in Prochlorococcus marinus: Biosynthesis of pigments and their assembly into proteins
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Phycobiliproteins in Prochlorococcus marinus: Biosynthesis of pigments and their assembly into proteins

机译:海藻原球藻中的藻胆蛋白:色素的生物合成及其组装成蛋白质

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摘要

Prochlorococcus sp. is a very unique and highly abundant class of organisms within the cyanobacteria. Found in the world's oceans Prochlorococcus is very small in size and possesses the smallest genome of a photosynthetic autotroph. Prochlorococcus is characterized by a special chlorophyll antenna for light harvesting and the absence of classical cyanobacterial phycobilisomes. Despite the lack of phycobilisomes Prochlorococcus possesses remnants thereof which is the phycobiliprotein phycoerythrin (PE) encoded in a PE operon as well as genes encoding enzymes of phycobilin biosynthesis. The size of this PE operon varies depending on the light-adapted ecotype. While high-light strains only possess a beta-subunit of PE, low-light adapted strains possess both, an alpha- and a beta-subunit. alpha-/beta-subunits are also present in functional phycobilisomes. Consistent with the number of subunits is also the varying number of putative lyase genes, involved in the transfer and attachment of phycobilins (open-chain tetrapyrroles) to the PE subunits. This minireview summarizes the only sparely available data on the biosynthesis and assembly of Prochlorococcus PE. On one hand the quite well understood biosynthesis of pigments will be reviewed but also new data on the phycobiliprotein lyase-mediated transfer of the phycobilins to the PE subunits will be discussed
机译:绿球菌蓝细菌是蓝细菌中非常独特且高度丰富的一类生物。发现于世界海洋中的Prochlorococcus很小,拥有光合自养生物的最小基因组。原绿球菌的特征在于特殊的叶绿素触角,用于光收集,并且不存在经典的蓝藻藻胆体。尽管缺乏藻胆体,但是原球菌仍具有其残余物,其是在PE操纵子中编码的藻胆蛋白藻红蛋白(PE)以及编码藻胆素生物合成酶的基因。该PE操纵子的大小根据适应光的生态型而变化。高强度菌株仅具有PE的β亚基,而低强度适应菌株具有α和β亚基。功能性藻胆体中也存在α-/β-亚基。与亚基的数目一致的是推定的裂解酶基因的数目也不同,这些基因涉及藻胆素(开链四吡咯)向PE亚基的转移和附着。该小型审查总结了关于原球菌PE的生物合成和组装的仅有的可用数据。一方面,将综述非常了解的色素的生物合成,但还将讨论有关藻胆蛋白裂解酶介导的藻胆素向PE亚基转移的新数据。

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