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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >3-Hydroxyisobutyryl-CoA hydrolase involved in isoleucine catabolism regulates triacylglycerol accumulation in Phaeodactylum tricornutum
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3-Hydroxyisobutyryl-CoA hydrolase involved in isoleucine catabolism regulates triacylglycerol accumulation in Phaeodactylum tricornutum

机译:参与异亮氨酸分解代谢的3-羟基异丁酰基-CoA水解酶调节phaeodactylum tricornutum中的三酰基甘油积累

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Since methylmalonyl-CoA epimerase appears to be absent in the majority of photosynthetic organisms, including diatoms, (S)-methylmalonyl-CoA, the intermediate of isoleucine (Ile) catabolism, cannot be metabolized to (R)methylmalonyl-CoA then to succinyl-CoA. In this study, propionyl-CoA carboxylase (PCC) RNAi silenced strains and 3-hydroxyisobutyryl-CoA hydrolase (HIBCH) overexpression strains were constructed to elucidate the Ile degradation pathway and its influence on lipid accumulation in Phaeodactylum tricornutum based on growth, neutral lipid content and metabolite profile analysis. Knockdown of PCC disturbed the metabolism of Ile through propionyl-CoA to methylmalonyl-CoA, as illustrated by much higher Ile content at day 6. However, Ile decreased to comparable levels to the wild-type at day 10. PCC silencing redirected propionyl-CoA to acetyl-CoA via a modified beta-oxidation pathway, and transcript levels for some branched-chain amino acid (BCAA) degradation-related genes, especially HIBCH, significantly upregulated in the PCC mutant, which enhanced the BCAA degradations and thus resulted in higher triacylglycerol (TAG) content. Overexpression of HIBCH accelerates Ile degradation and results in a lowered Ile content in the overexpression strains, thus enhancing carbon skeletons to the tricarboxylic acid cycle and giving rise to increasing TAG accumulation. Our study provides a good strategy to obtain high-lipid-yield transgenic diatoms by modifying the propionyl-CoA metabolism.
机译:由于在大多数光合生物中似乎不存在甲基甘油基-CoA映像酶,因此包括硅藻,(S) - 甲基甘油基-COA,异氨氨酸(ILE)分解代谢的中间体不能代谢至(R)甲基甘油酯-COA然后甲酰基 - COA。在该研究中,构建了丙酰基-COA羧化酶(PCC)RNAi沉默菌株和3-羟基异丁腈菌和3-羟基异丁腈菌株,以阐明基于生长,中性脂质含量的Phaeodactylum Tricornutum脂质积累的影响及其对脂质积累的影响和代谢物剖面分析。 PCC敲低通过丙酰基-CoA至甲基甘油酯对甲基甘油酯-CoA的代谢扰乱了ILe的代谢,如第6天所示。然而,ILE在第10天的野生型中降低到野生型的可比水平.PCC沉默重定向的丙齐 - COA通过改性的β-氧化途径至乙酰辅酶,以及一些支链氨基酸(BCAA)降解相关基因的转录水平,特别是Hibch,在PCC突变体中显着上调,其增强了BCAA降解,从而导致更高三酰基甘油(标签)含量。 Hibch的过表达加速Ile降解并导致过表达菌株中的降低的Ile含量,从而增强碳骨架到三羧酸循环并产生增加标签积累。我们的研究提供了通过改变丙酰基-CoA代谢来获得高脂质产量转基因硅藻的良好策略。

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