Boršić Elvira, Ramuta Taja Železnik, Orehek Sara, Kreft Mateja Erdani, Geyer Matthias, Jerala Roman, Hafner-Bratkovič Iva
Department of Synthetic Biology and Immunology, National Institute of Chemistry, Ljubljana, Slovenia.
Interdisciplinary Doctoral Study of Biomedicine, Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.
Nat Commun. 2025 May 27;16(1):4887. doi: 10.1038/s41467-025-60277-4.
NLRP3 is a pattern recognition receptor forming an inflammasome in response to diverse pathogen and self-derived triggers, but molecular insights on NLRP3 activation are still lacking. Here, we drive ectopic NLRP3 to different subcellular locations in NLRP3-deficient macrophages to map the spatial activation profile of NLRP3, and find that NLRP3 variants enriched at the organellar membranes respond to canonical triggers similarly to wild-type NLRP3; however, unlike wild-type, these NLRP3 variants can be activated even in the absence of the polybasic phospholipid-binding segment. Mechanistically, membrane or protein scaffolds mediate NLRP3 clustering, which leads to the unfastening of the inactive NACHT domain conformation preceding the activated NLRP3 oligomer formation. Our data thus suggest that scaffold-promoted clustering is an important step in NLRP3 activation, enabling NLRP3 to sense distinct activator-induced cellular anomalies exhibited via lipid or protein assemblies, thereby establishing NLRP3 as the master sensor of perturbations in cell homeostasis.
NLRP3是一种模式识别受体,可响应多种病原体和自身来源的触发因素形成炎性小体,但目前仍缺乏对NLRP3激活的分子层面的深入了解。在这里,我们将异位NLRP3驱动到NLRP3缺陷巨噬细胞的不同亚细胞位置,以绘制NLRP3的空间激活图谱,并发现富集于细胞器膜上的NLRP3变体对经典触发因素的反应与野生型NLRP3相似;然而,与野生型不同的是,即使在没有多碱性磷脂结合片段的情况下,这些NLRP3变体也能被激活。从机制上讲,膜或蛋白质支架介导NLRP3聚集,这导致在激活的NLRP3寡聚体形成之前,无活性的NACHT结构域构象解开。因此,我们的数据表明,支架促进的聚集是NLRP3激活的重要步骤,使NLRP3能够感知通过脂质或蛋白质组装体表现出的不同激活剂诱导的细胞异常,从而确立NLRP3作为细胞稳态扰动的主要传感器。