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A Family of Negative Regulators Targets the Committed Step of de Novo Fatty Acid Biosynthesis

机译:一家家庭的负调节因子针对德诺脂肪酸生物合成的承诺步骤

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摘要

Acetyl-CoA carboxylase (ACCase) catalyzes the committed step of de novo fatty acid biosynthesis. In prokaryotes, green algae, and most plants, this enzyme is a heteromeric complex requiring four different subunits for activity. The plant complex is recalcitrant to conventional purification schemes and hence the structure and composition of the full assembly have been unclear. In vivo coimmunoprecipitation using subunit-specific antibodies identified a novel family of proteins in Arabidopsis thaliana annotated as biotin/ lipoyl attachment domain containing (BADC) proteins. Results from yeast two-hybrid and coexpression in Escherichia coli confirmed that all three BADC isoforms interact with the two biotin carboxyl carrier protein (BCCP) isoforms of Arabidopsis ACCase. These proteins resemble BCCP subunits but are not biotinylated due to a mutated biotinylation motif. We demonstrate that BADC proteins significantly inhibit ACCase activity in both E. coli and Arabidopsis. Targeted gene silencing of BADC isoform 1 in Arabidopsis significantly increased seed oil content when normalized to either mass or individual seed. We conclude the BADC proteins are ancestral BCCPs that gained a new function as negative regulators of ACCase after initial loss of the biotinylation motif. A functional model is proposed.
机译:乙酰-CoA羧化酶(Accase)催化De Novo脂肪酸生物合成的承诺步骤。在原核生物,绿藻和大多数植物中,该酶是需要四种不同亚基的异统复合物。植物络合物对常规纯化方案顽固,因此全组装的结构和组成尚不清楚。使用亚基特异性抗体的体内CoimmunopropipIpipitipitipitipipipipipipipipipipipitipied鉴定了拟南芥的新型蛋白质,作为含有(BADC)蛋白的生物素/脂肪酰基附着结构域的拟南芥。酵母双杂化和大肠杆菌的共表达的结果证实,所有三种BADC同种型都与拟南芥Accase的两种生物素羧基载体蛋白(BCCP)同种型相互作用。这些蛋白质类似于BCCP亚基,但由于突变的生物素化基序而不是生物素化。我们证明BADC蛋白在大肠杆菌和拟南芥中显着抑制Accase活性。拟南芥中BADC同种型1的靶向基因沉默显着增加了种子油含量,当标准化为群众或个体种子时。我们得出结论BADC蛋白质是祖先BCCP,其在生物素化学术中初始损失后获得了作为Accase的负调节剂的新功能。提出了功能模型。

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    《The Plant Cell》 |2016年第9期|共14页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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