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首页> 外文期刊>Applied Microbiology >Lactococcus lactis fabH, Encoding β-Ketoacyl-Acyl Carrier Protein Synthase, Can Be Functionally Replaced by the Plasmodium falciparum Congener
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Lactococcus lactis fabH, Encoding β-Ketoacyl-Acyl Carrier Protein Synthase, Can Be Functionally Replaced by the Plasmodium falciparum Congener

机译:乳酸乳球菌fabH,编码β-酮酰基-酰基载体蛋白合酶,可以在功能上被恶性疟原虫同源物替代

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Plasmodium falciparum , in addition to scavenging essential fatty acids from its intra- and intercellular environments, possesses a functional complement of type II fatty acid synthase (FAS) enzymes targeted to the apicoplast organelle. Recent evidence suggests that products of the plasmodial FAS II system may be critical for the parasite's liver-to-blood cycle transition, and it has been speculated that endogenously generated fatty acids may be precursors for essential cofactors, such as lipoate, in the apicoplast. β-Ketoacyl-acyl carrier protein (ACP) synthase III (pfKASIII or FabH) is one of the key enzymes in the initiating steps of the FAS II pathway, possessing two functions in P. falciparum : the decarboxylative thio-Claisen condensation of malonyl-ACP and various acyl coenzymes A (acyl-CoAs; KAS activity) and the acetyl-CoA:ACP transacylase reaction (ACAT). Here, we report the generation and characterization of a hybrid Lactococcus lactis strain that translates pfKASIII instead of L. lactis f abH to initiate fatty acid biosynthesis. The L. lactis expression vector pMG36e was modified for the efficient overexpression of the plasmodial gene in L. lactis . Transcriptional analysis indicated high-efficiency overexpression, and biochemical KAS and ACAT assays confirm these activities in cell extracts. Phenotypically, the L. lactis strain expressing pfKASIII has a growth rate and fatty acid profiles that are comparable to those of the strain complemented with its endogenous gene, suggesting that pfKASIII can use L. lactis ACP as substrate and perform near-normal function in L. lactis cells. This strain may have potential application as a bacterial model for pfKASIII inhibitor prescreening.
机译:恶性疟原虫除了从其细胞内和细胞间环境中清除必需脂肪酸外,还具有针对蜂胶质细胞器的II型脂肪酸合酶(FAS)酶的功能性互补。最近的证据表明,疟原虫FAS II系统的产物可能对寄生虫的肝血循环过渡至关重要,并且据推测,内生产生的脂肪酸可能是黏液质体中必需辅因子(例如脂酸酯)的前体。 β-酮酰基-酰基载体蛋白(ACP)合酶III(pfKASIII或FabH)是FAS II途径起始步骤中的关键酶之一,在恶性疟原虫中具有两个功能:丙二酰-丙二酸的脱羧硫代-克莱森缩合。 ACP和各种酰基辅酶A(酰基辅酶A; KAS活性)和乙酰辅酶A:ACP转酰酶反应(ACAT)。在这里,我们报告生成和表征的混合乳酸乳球菌菌株,它翻译pfKASIII而不是乳酸乳球菌f abH来启动脂肪酸的生物合成。对乳酸乳杆菌表达载体pMG36e进行了修饰,以有效地在乳酸乳杆菌中过量表达质粒的基因。转录分析表明高效过表达,生化KAS和ACAT分析证实了细胞提取物中的这些活性。从表型上看,表达pfKASIII的乳酸乳杆菌菌株的生长速率和脂肪酸谱与与其内源基因互补的菌株相当,这表明pfKASIII可以使用乳酸乳杆菌ACP作为底物并在L中发挥接近正常的功能。乳酸细胞该菌株可能作为pfKASIII抑制剂预筛选的细菌模型有潜在的应用。

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