Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Department of Pediatrics, Division of Infectious Disease, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
J Mol Biol. 2018 Sep 14;430(18 Pt B):3266-3282. doi: 10.1016/j.jmb.2018.06.001. Epub 2018 Jun 15.
The chemokine CCL28 is constitutively expressed in mucosal tissues and is abundant in low-salt mucosal secretions. Beyond its traditional role as a chemoattractant, CCL28 has been shown to act as a potent and broad-spectrum antimicrobial agent with particular efficacy against the commensal fungus and opportunistic pathogen Candida albicans. However, the structural features that allow CCL28 to perform its chemotactic and antimicrobial functions remain unknown. Here, we report the structure of CCL28, solved using nuclear magnetic resonance spectroscopy. CCL28 adopts the canonical chemokine tertiary fold, but also has a disordered C-terminal domain that is partially tethered to the core by a non-conserved disulfide bond. Structure-function analysis reveals that removal of the C-terminal tail reduces the antifungal activity of CCL28 without disrupting its structural integrity. Conversely, removal of the non-conserved disulfide bond destabilizes the tertiary fold of CCL28 without altering its antifungal effects. Moreover, we report that CCL28 unfolds in response to low pH but is stabilized by the presence of salt. To explore the physiologic relevance of the observed structural lability of CCL28, we investigated the effects of pH and salt on the antifungal activity of CCL28 in vitro. We found that low pH enhances the antifungal potency of CCL28, but also that this pH effect is independent of CCL28's tertiary fold. Given its dual role as a chemoattractant and antimicrobial agent, our results suggest that changes in the salt concentration or pH at mucosal sites may fine-tune CCL28's functional repertoire by adjusting the thermostability of its structure.
趋化因子 CCL28 在黏膜组织中组成性表达,在低盐黏膜分泌物中含量丰富。除了作为趋化因子的传统作用外,CCL28 已被证明具有强大而广谱的抗菌作用,特别是对共生真菌和机会性病原体白色念珠菌具有特别的疗效。然而,允许 CCL28 发挥其趋化和抗菌功能的结构特征仍然未知。在这里,我们报告了 CCL28 的结构,该结构是使用核磁共振波谱法解决的。CCL28 采用典型的趋化因子三级折叠结构,但也具有无序的 C 端结构域,该结构域通过非保守的二硫键部分与核心连接。结构-功能分析表明,去除 C 端尾部会降低 CCL28 的抗真菌活性,但不会破坏其结构完整性。相反,去除非保守的二硫键会使 CCL28 的三级折叠结构不稳定,而不会改变其抗真菌作用。此外,我们报告 CCL28 会响应低 pH 而展开,但盐的存在会使其稳定。为了探讨 CCL28 观察到的结构不稳定性的生理相关性,我们研究了 pH 和盐对 CCL28 体外抗真菌活性的影响。我们发现低 pH 增强了 CCL28 的抗真菌效力,但这种 pH 效应独立于 CCL28 的三级折叠。鉴于其作为趋化因子和抗菌剂的双重作用,我们的结果表明,黏膜部位盐浓度或 pH 的变化可能通过调整其结构的热稳定性来精细调节 CCL28 的功能谱。