Cirella Roberta, Andretta Emanuela, De Simone Carone Luca, Olmeo Francesca, Sun Mei-Ling, Zhang Yu-Zhong, Mercogliano Marcello, Molinaro Antonio, Silipo Alba, Di Lorenzo Flaviana
Department of Chemical Sciences, University of Naples Federico II, Via Cinthia 4, 80126, Naples, Italy.
MOE Key Laboratory of Evolution and Marine Biodiversity, Frontiers Science Center for Deep Ocean Multispheres and Earth System & College of Marine Life Sciences, Ocean University of China, 5 Yushan Rd, Shinan District, Shandong, Qingdao, 266005, China.
Chembiochem. 2025 Jun 16;26(12):e202500100. doi: 10.1002/cbic.202500100. Epub 2025 Apr 21.
Polaribacter sp. SM1127, a cold-adapted marine Gram-negative bacterium isolated from Laminaria in Arctic waters, plays a crucial role in nutrient cycling and biopolymer degradation in cold environments. Additionally, its exopolysaccharide (EPS) exhibits promising biotechnological potential, including antioxidant and wound-healing properties. This study focuses on the isolation and characterization of lipid A, the glycolipid component of Polaribacter sp. SM1127 lipopolysaccharide (LPS), by bypassing full LPS extraction and working directly with the ethanol precipitation product containing both EPS and bacterial cells. Mass spectrometry analysis reveals significant structural heterogeneity in the lipid A, with variations in fatty acid chain length, branching, saturation, and hydroxylation. These features likely enable the bacterium to fine-tune its response to fluctuating temperatures or other cold-related environmental stresses, contributing to resilience in the Arctic Ocean ecosystem. Furthermore, immunological assays demonstrate that both LPS and EPS produced by Polaribacter sp. SM1127 induce weak Toll-like receptor 4 activation and, in general, poorly stimulate the nuclear factor kappa-light-chain-enhancer of activated B cells pathway, compared to Escherichia coli LPS. These findings suggest their potential as immunomodulatory agents, like vaccine adjuvants.
极地杆菌属SM1127是一种从北极水域的海带中分离出来的适应寒冷环境的海洋革兰氏阴性菌,在寒冷环境中的营养循环和生物聚合物降解中起着关键作用。此外,其胞外多糖(EPS)具有良好的生物技术潜力,包括抗氧化和伤口愈合特性。本研究通过绕过完整脂多糖(LPS)的提取,直接处理含有EPS和细菌细胞的乙醇沉淀产物,重点对极地杆菌属SM1127脂多糖(LPS)的糖脂成分脂质A进行分离和表征。质谱分析揭示了脂质A中存在显著的结构异质性,脂肪酸链长度、分支、饱和度和羟基化存在差异。这些特征可能使该细菌能够微调其对温度波动或其他与寒冷相关的环境压力的反应,有助于北冰洋生态系统的恢复力。此外,免疫分析表明,与大肠杆菌LPS相比,极地杆菌属SM1127产生的LPS和EPS均诱导较弱的Toll样受体4激活,总体上对活化B细胞核因子κ轻链增强子途径的刺激较弱。这些发现表明它们作为免疫调节剂(如疫苗佐剂)具有潜力。