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Chlamydia pneumoniae effector chlamydial outer protein N sequesters fructose bisphosphate aldolase A, providing a benefit to bacterial growth

机译:肺炎衣原体效应者衣原体外部蛋白N螯合果糖二磷酸醛缩酶A,有利于细菌生长

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摘要

Background: Pathogenic chlamydiae are obligate intracellular pathogens and have adapted successfully to human cells, causing sexually transmitted diseases or pneumonia. Chlamydial outer protein N (CopN) is likely a critical effector protein secreted by the type III secretion system in chlamydiae, which manipulates host cells. However, the mechanisms of its action remain to be clarified. In this work, we aimed to identify previously unidentified CopN effector target in host cells. Results: We first performed a pull-down assay with recombinant glutathione S-transferase (GST) fusion CopN proteins (GST-CpCopN: Chlamydia pneumoniae TW183, GST-CtCopN: Chlamydia trachomatis D/UW-3/CX) as "bait" and soluble lysates obtained from human immortal epithelial HEp-2 cells as "prey", followed by SDS-PAGE with mass spectroscopy (MS). We found that a host cell protein specifically bound to GST-CpCopN, but not GST-CtCopN. MS revealed the host protein to be fructose bisphosphate aldolase A (aldolase A), which plays a key role in glycolytic metabolism. We also confirmed the role of aldolase A in chlamydia-infected HEp-2 cells by using two distinct experiments for gene knockdown with an siRNA specific to aldolase A transcripts, and for assessment of glycolytic enzyme gene expression levels. As a result, both the numbers of chlamydial inclusion-forming units and RpoD transcripts were increased in the chlamydia-infected aldolase A knockdown cells, as compared with the wild-type HEp-2 cells. Meanwhile, chlamydial infection tended to enhance expression of aldolase A. Conclusions: We discovered that one of the C. pneumoniae CopN targets is the glycolytic enzyme aldolase A. Sequestering aldolase A may be beneficial to bacterial growth in infected host cells.
机译:背景:致病性衣原体是专性细胞内病原体,已成功适应人类细胞,引起性传播疾病或肺炎。衣原体外部蛋白N(CopN)可能是衣原体中III型分泌系统分泌的关键效应蛋白,该蛋白可操纵宿主细胞。但是,其行动机制仍有待澄清。在这项工作中,我们旨在鉴定宿主细胞中以前未鉴定的CopN效应子靶标。结果:我们首先进行了以重组谷胱甘肽S-转移酶(GST)融合CopN蛋白(GST-CpCopN:肺炎衣原体TW183,GST-CtCopN:沙眼衣原体D / UW-3 / CX)作为诱饵的下拉测定,以及从人类永生上皮细胞HEp-2细胞中获得的可溶裂解物作为“猎物”,然后进行质谱(MS)的SDS-PAGE。我们发现宿主细胞蛋白特异性结合GST-CpCopN,但不结合GST-CtCopN。 MS显示宿主蛋白为果糖二磷酸醛缩酶A(醛缩酶A),其在糖酵解代谢中起关键作用。我们还通过使用两个针对醛缩酶A转录物特异的siRNA的基因敲低和评估糖酵解酶基因表达水平的实验,证实了醛缩酶A在衣原体感染的HEp-2细胞中的作用。结果,与野生型HEp-2细胞相比,衣原体感染的醛缩酶A敲低细胞中衣原体包涵体形成单位的数目和RpoD转录物均增加。同时,衣原体感染倾向于增强醛缩酶A的表达。结论:我们发现肺炎衣原体CopN的靶标之一是糖酵解酶醛缩酶A。螯合醛缩酶A可能有益于感染宿主细胞中的细菌生长。

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