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Chlamydia trachomatis regulates growth and development in response to host cell fatty acid availability in the absence of lipid droplets

机译:在没有脂滴的情况下沙眼衣原体可响应宿主细胞脂肪酸的利用来调节生长和发育

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摘要

Chlamydia trachomatis (Ct) is a Gram-negative obligate intracellular pathogen of humans that causes significant morbidity from sexually transmitted and ocular diseases globally. Ct acquires host fatty acids (FA) to meet the metabolic and growth requirements of the organism. Lipid droplets (LDs) are storehouses of FAs in host cells and have been proposed to be a source of FAs for the parasitophorous vacuole, termed inclusion, in which Ct replicates. Previously, cells devoid of LDs were shown to produce reduced infectious progeny at 24 hours post-infection (hpi). Here, while we also found reduced progeny at 24 hpi, there were significantly more progeny at 48 hpi in the absence of LDs compared to the control wild-type (WT) cells. These findings were confirmed using transmission electron microscopy where cells without LDs were shown to have significantly more metabolically active reticulate bodies at 24 hpi and significantly more infectious but metabolically inert elementary bodies at 48 hpi than WT cells. Furthermore, by measuring basal oxygen consumption rates (OCR) using extracellular flux analysis, Ct infected cells without LDs had higher OCRs at 24 hpi than cells with LDs, confirming ongoing metabolic activity in the absence of LDs. While the FA oleic acid (OA) is a major source of phospholipids for Ct and stimulates LD synthesis, treatment with OA, but not other FAs, enhanced growth and led to an increase in basal OCR in both LD depleted and WT cells, indicating that FA transport to the inclusion is not affected by the loss of LDs. Our results show that Ct regulates inclusion metabolic activity and growth in response to host FA availability in the absence of LDs.
机译:沙眼衣原体(Ct)是人类革兰氏阴性专性细胞内病原体,可引起全球性传播疾病和眼部疾病的大量发病。 Ct获取宿主脂肪酸(FA)以满足生物体的代谢和生长需求。脂质小滴(LDs)是宿主细胞中FA的仓库,并已提出是寄生虫液泡(称为包涵体)的FAs来源,其中Ct在其中复制。以前,没有LD的细胞在感染后24小时(hpi)表现出降低的感染性子代。在这里,虽然我们还发现在24 hpi时后代减少,但与对照野生型(WT)细胞相比,在没有LD的情况下在48 hpi时后代明显更多。使用透射电子显微镜证实了这些发现,其中无LD的细胞在24 hpi时具有比WT细胞明显更多的代谢活性网状体,在48 hpi时具有更多的感染性但代谢惰性的基本体。此外,通过使用细胞外通量分析测量基础耗氧率(OCR),没有LD的Ct感染细胞在24 hpi时的OCR高于具有LD的细胞,从而证实了在没有LD的情况下持续的代谢活性。尽管FA油酸(OA)是Ct磷脂的主要来源并刺激LD的合成,但是用OA处理而不是其他FA可以增强LD的生长,并导致LD耗尽和WT细胞的基础OCR升高,这表明FA转移至内含物不受LD损失的影响。我们的结果表明,在缺乏LD的情况下,Ct响应宿主FA的可用性而调节包涵体代谢活性和生长。

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