首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Molecular characterization of the 1,3-propanediol (1,3-PD) operon of Clostridium butyricum.
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Molecular characterization of the 1,3-propanediol (1,3-PD) operon of Clostridium butyricum.

机译:丁酸梭菌的1,3-丙二醇(1,3-PD)操纵子的分子表征。

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The genes encoding the 1,3-propanediol (1,3-PD) operon of Clostridium butyricum VPI1718 were characterized from a molecular and a biochemical point of view. This operon is composed of three genes, dhaB1, dhaB2, and dhaT. When grown in a vitamin B12-free mineral medium with glycerol as carbon source, Escherichia coli expressing dhaB1, dhaB2, and dhaT produces 1,3-PD and high glycerol dehydratase and 1,3-PD dehydrogenase activities. dhaB1 and dhaB2 encode, respectively, a new type of glycerol dehydratase and its activator protein. The deduced proteins DhaB1 and DhaB2, with calculated molecular masses of 88,074 and 34,149 Da, respectively, showed no homology with the known glycerol dehydratases that are all B12 dependent but significant similarity with the pyruvate formate lyases and pyruvate formate lyases activating enzymes and their homologues. The 1,158-bp dhaT gene codes for a 1,3-PD dehydrogenase with a calculated molecular mass of 41,558 Da, revealing a high level of identity with other DhaT proteins from natural 1,3-PD producers. The expression of the 1,3-PD operon in C. butyricum is regulated at the transcriptional level, and this regulation seems to involve a two-component signal transduction system DhaASDhaA, which may have a similar function to DhaR, a transcriptional regulator found in other natural 1,3-PD producers. The discovery of a glycerol dehydratase, coenzyme B12 independent, should significantly influence the development of an economical vitamin B12-free biological process for the production of 1,3-PD from renewable resources.
机译:从分子和生物化学的角度表征了丁酸梭状芽胞杆菌VPI1718的1,3-丙二醇(1,3-PD)操纵子的编码基因。该操纵子由三个基因dhaB1,dhaB2和dhaT组成。当在不含维生素B12的矿物培养基中以甘油作为碳源生长时,表达dhaB1,dhaB2和dhaT的大肠杆菌会产生1,3-PD和高甘油脱水酶和1,3-PD脱氢酶活性。 dhaB1和dhaB2分别编码一种新型的甘油脱水酶及其激活蛋白。推导的蛋白质DhaB1和DhaB2的分子量分别为88,074和34,149 Da,与已知的甘油脱水酶没有同源性,而甘油脱水酶都是B12依赖性的,但与丙酮酸甲酸酯裂解酶和丙酮酸甲酸酯裂解酶激活酶及其同源物具有显着相似性。 1,158-bp dhaT基因编码的1,3-PD脱氢酶的分子量为41,558 Da,与天然1,3-PD生产商的其他DhaT蛋白具有高度的同一性。丁酸梭菌中1,3-PD操纵子的表达在转录水平上受到调节,并且该调节似乎涉及两组分信号转导系统DhaASDhaA,其功能可能与DhaR(一种转录调控因子)相似。其他天然的1,3-PD生产者。独立于辅酶B12的甘油脱水酶的发现,将显着影响从可再生资源生产1,3-PD的经济的不含维生素B12的生物工艺的发展。

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