半乳糖凝集素-3 通过与脂多糖聚糖的细胞内结合促进非经典炎性体激活。
Galectin-3 promotes noncanonical inflammasome activation through intracellular binding to lipopolysaccharide glycans.
机构信息
Taiwan International Graduate Program in Molecular Medicine, National Yang-Ming University, Taipei 11221, Taiwan.
Taiwan International Graduate Program in Molecular Medicine, Academia Sinica, Taipei 11529, Taiwan.
出版信息
Proc Natl Acad Sci U S A. 2021 Jul 27;118(30). doi: 10.1073/pnas.2026246118.
Cytosolic lipopolysaccharides (LPSs) bind directly to caspase-4/5/11 through their lipid A moiety, inducing inflammatory caspase oligomerization and activation, which is identified as the noncanonical inflammasome pathway. Galectins, β-galactoside-binding proteins, bind to various gram-negative bacterial LPS, which display β-galactoside-containing polysaccharide chains. Galectins are mainly present intracellularly, but their interactions with cytosolic microbial glycans have not been investigated. We report that in cell-free systems, galectin-3 augments the LPS-induced assembly of caspase-4/11 oligomers, leading to increased caspase-4/11 activation. Its carboxyl-terminal carbohydrate-recognition domain is essential for this effect, and its N-terminal domain, which contributes to the self-association property of the protein, is also critical, suggesting that this promoting effect is dependent on the functional multivalency of galectin-3. Moreover, galectin-3 enhances intracellular LPS-induced caspase-4/11 oligomerization and activation, as well as gasdermin D cleavage in human embryonic kidney (HEK) 293T cells, and it additionally promotes interleukin-1β production and pyroptotic death in macrophages. Galectin-3 also promotes caspase-11 activation and gasdermin D cleavage in macrophages treated with outer membrane vesicles, which are known to be taken up by cells and release LPSs into the cytosol. Coimmunoprecipitation confirmed that galectin-3 associates with caspase-11 after intracellular delivery of LPSs. Immunofluorescence staining revealed colocalization of LPSs, galectin-3, and caspase-11 independent of host -glycans. Thus, we conclude that galectin-3 amplifies caspase-4/11 oligomerization and activation through LPS glycan binding, resulting in more intense pyroptosis-a critical mechanism of host resistance against bacterial infection that may provide opportunities for new therapeutic interventions.
细胞质脂多糖 (LPSs) 通过其脂质 A 部分直接与 caspase-4/5/11 结合,诱导炎症性半胱天冬酶寡聚化和激活,这被确定为非经典炎性小体途径。半乳糖凝集素是β-半乳糖苷结合蛋白,与各种革兰氏阴性细菌 LPS 结合,这些 LPS 显示含有β-半乳糖苷的多糖链。半乳糖凝集素主要存在于细胞内,但它们与细胞质微生物糖的相互作用尚未被研究。我们报告说,在无细胞系统中,半乳糖凝集素-3 增强 LPS 诱导的 caspase-4/11 寡聚体的组装,导致 caspase-4/11 的激活增加。其羧基末端碳水化合物识别域是该效应所必需的,其 N 末端域有助于蛋白质的自缔合特性,也是至关重要的,这表明这种促进作用依赖于半乳糖凝集素-3 的功能多价性。此外,半乳糖凝集素-3 增强了人胚肾 (HEK) 293T 细胞内 LPS 诱导的 caspase-4/11 寡聚化和激活,以及天冬氨酸特异性半胱氨酸蛋白酶-4/11 切割,并且还促进了巨噬细胞中白细胞介素-1β 的产生和细胞焦亡。半乳糖凝集素-3 还促进了用外膜囊泡处理的巨噬细胞中 caspase-11 的激活和天冬氨酸特异性半胱氨酸蛋白酶-11 的切割,已知外膜囊泡被细胞摄取,并将 LPS 释放到细胞质中。共免疫沉淀证实,半乳糖凝集素-3 在 LPS 内源性传递后与 caspase-11 结合。免疫荧光染色显示 LPS、半乳糖凝集素-3 和 caspase-11 的共定位独立于宿主糖。因此,我们得出结论,半乳糖凝集素-3 通过 LPS 糖结合放大 caspase-4/11 寡聚化和激活,导致更强烈的细胞焦亡——这是宿主抵抗细菌感染的关键机制,可能为新的治疗干预提供机会。