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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Mitogen-activated protein kinase pathways defend against bacterial pore-forming toxins.
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Mitogen-activated protein kinase pathways defend against bacterial pore-forming toxins.

机译:丝裂原激活的蛋白激酶途径可以抵抗细菌的孔形成毒素。

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摘要

Cytolytic pore-forming toxins are important for the virulence of many disease-causing bacteria. How target cells molecularly respond to these toxins and whether or not they can mount a defense are poorly understood. By using microarrays, we demonstrate that the nematode Caenorhabditis elegans responds robustly to Cry5B, a member of the pore-forming Crystal toxin family made by Bacillus thuringiensis. This genomic response is distinct from that seen with a different stressor, the heavy metal cadmium. A p38 mitogen-activated protein kinase (MAPK) kinase and a c-Jun N-terminal-like MAPK are both transcriptionally up-regulated by Cry5B. Moreover, both MAPK pathways are functionally important because elimination of either leads to animals that are (i) hypersensitive to a low, chronic dose of toxin and (ii) hypersensitive to a high, brief dose of toxin such that the animal might naturally encounter in the wild. These results extend to mammalian cells because inhibition of p38 results in the hypersensitivity of baby hamster kidney cells to aerolysin, a pore-forming toxin that targets humans. Furthermore, we identify two downstream transcriptional targets of the p38 MAPK pathway, ttm-1 and ttm-2, that are required for defense against Cry5B. Our data demonstrate that cells defend against pore-forming toxins by means of conserved MAPK pathways.
机译:细胞溶解性成孔毒素对于许多致病细菌的毒性至关重要。人们对靶细胞如何对这些毒素进行分子反应以及它们是否能够防御产生的了解很少。通过使用微阵列,我们证明线虫秀丽隐杆线虫强烈响应由苏云金芽孢杆菌制造的成孔晶体毒素家族成员Cry5B。这种基因组响应与使用不同应激源(重金属镉)时看到的响应不同。 p38丝裂原激活的蛋白激酶(MAPK)激酶和c-Jun N端样MAPK都被Cry5B转录上调。此外,这两种MAPK途径在功能上都很重要,因为消除其中的任何一种都会导致动物(i)对低剂量的慢性毒素过敏,以及(ii)对高剂量的短期毒素过敏,因此动物可能自然遇到野外。这些结果扩展到哺乳动物细胞,因为对p38的抑制导致婴儿仓鼠肾细胞对aerolysin(一种针对人的成孔毒素)的超敏性。此外,我们确定了抗Cry5B所需的p38 MAPK途径的两个下游转录靶点ttm-1和ttm-2。我们的数据表明细胞通过保守的MAPK途径防御孔形成毒素。

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