G5 Chromatin and Infection, Institut Pasteur, Paris, France.
Université Paris Diderot, Sorbonne Paris Cité, Paris, France.
Nat Microbiol. 2021 Feb;6(2):257-269. doi: 10.1038/s41564-020-00805-8. Epub 2020 Dec 21.
Streptococcus pneumoniae is a natural colonizer of the human respiratory tract and an opportunistic pathogen. Although epithelial cells are among the first to encounter pneumococci, the cellular processes and contribution of epithelial cells to the host response are poorly understood. Here, we show that a S. pneumoniae serotype 6B ST90 strain, which does not cause disease in a murine infection model, induces a unique NF-κB signature response distinct from an invasive-disease-causing isolate of serotype 4 (TIGR4). This signature is characterized by activation of p65 and requires a histone demethylase KDM6B. We show, molecularly, that the interaction of the 6B strain with epithelial cells leads to chromatin remodelling within the IL-11 promoter in a KDM6B-dependent manner, where KDM6B specifically demethylates histone H3 lysine 27 dimethyl. Remodelling of the IL-11 locus facilitates p65 access to three NF-κB sites that are otherwise inaccessible when stimulated by IL-1β or TIGR4. Finally, we demonstrate through chemical inhibition of KDM6B with GSK-J4 inhibitor and through exogenous addition of IL-11 that the host responses to the 6B ST90 and TIGR4 strains can be interchanged both in vitro and in a murine model of infection in vivo. Our studies therefore reveal how a chromatin modifier governs cellular responses during infection.
肺炎链球菌是人类呼吸道的天然定植菌,也是一种机会致病菌。尽管上皮细胞是最早接触肺炎链球菌的细胞之一,但上皮细胞的细胞过程及其对宿主反应的贡献仍知之甚少。在这里,我们展示了一种血清型 6B ST90 肺炎链球菌菌株,该菌株不会在小鼠感染模型中引起疾病,但会诱导一种独特的 NF-κB 特征反应,与血清型 4 的侵袭性疾病分离株(TIGR4)不同。该特征表现为 p65 的激活,并且需要一种组蛋白去甲基化酶 KDM6B。我们从分子水平上证明,6B 菌株与上皮细胞的相互作用导致 IL-11 启动子内的染色质重塑,这种重塑方式依赖于 KDM6B,KDM6B 特异性地去除组蛋白 H3 赖氨酸 27 二甲基。IL-11 基因座的重塑促进了 p65 对三个 NF-κB 位点的访问,而在受到 IL-1β 或 TIGR4 刺激时,这些位点是无法访问的。最后,我们通过用 GSK-J4 抑制剂化学抑制 KDM6B 以及通过体外和体内感染小鼠模型中外源添加 IL-11 证明,宿主对 6B ST90 和 TIGR4 菌株的反应可以相互交换。因此,我们的研究揭示了染色质修饰物如何在感染过程中调节细胞反应。