论文标题

催化有效和选择性簇,以通过单原子取代调节神经炎症

Catalytically Potent and Selective Clusterzymes for Modulation of Neuroinflammation Through Single-Atom Substitutions

论文作者

Liu, Haile, Li, Yonghui, Sun, Si, Xin, Qi, Liu, Shuhu, Mu, Xiaoyu, Yuan, Xun, Chen, Ke, Wang, Hao, Varga, Kalman, Mi, Wenbo, Yang, Jiang, Zhang, Xiao-Dong

论文摘要

长期以来,随着持续的努力,人们一直在追求具有重编程和增强催化活性和底物选择性的新兴人工酶。与天然分子相比,当前大多数候选者都依赖于高贵金属或过渡金属氧化物,其催化活性较差。为了应对这一限制,我们通过结构定义明确的AU25簇(即簇)设计了一种新型的人工酶,即簇,该酶具有内在的高催化活性和由单个原子替代驱动的具有调节键长的单原子替代的选择性。 3-甲基丙酸(MPA)稳定的AU24CU1和AU24CD1簇分别比天然Trolox的抗氧化能力分别显示出137和160倍的抗氧化能力。同时,簇每个都表现出具有令人信服的选择性的优先模拟酶的催化活性:AU25表现出上谷胱甘肽过氧化物酶样(GPX样)活性; AU24CU1通过其Cu单个活性位点在其类似过氧化氢酶的活性(类似CAT)活性方面具有明显的优势。 AU24CD1最好用CD单个活性位点充当超氧化物歧化酶(类似SOD)酶。这种独特的多元化催化景观表现出对大脑炎症的独特反应。 AU24CU1的表现是一种内源性多酶模拟物,通过催化反应直接降低受伤的大脑过氧化物,而AU24CD1,催化了超氧化物和硝基信号分子,通过偏好,显着降低了诸如IL-1 \ b {eta}的炎症因素,并指出了anda,eTa},and-6,以及TNN-6,IL-6,IL-6,IL-6,IL IL-6,IL-6,IL-6。缓解神经炎症。

Emerging artificial enzymes with reprogrammed and augmented catalytic activity and substrate selectivity have long been pursued with sustained efforts. The majority of current candidates rely on noble metals or transition metal oxides with rather poor catalytic activity compared with natural molecules. To tackle this limitation, we strategically designed a novel artificial enzyme based on a structurally well-defined Au25 cluster, namely clusterzyme, which is endowed with intrinsic high catalytic activity and selectivity driven by single-atom substitutions with modulated bond lengths. The 3-mercaptopropionic acid (MPA)-stabilized Au24Cu1 and Au24Cd1 clusterzymes exhibit 137 and 160 times higher antioxidant capacities than the natural trolox, respectively. Meanwhile, the clusterzymes each demonstrate preferential enzyme-mimicking catalytic activities with compelling selectivity: Au25 exhibits superior glutathione peroxidase-like (GPx-like) activity; Au24Cu1 shows a distinct advantage towards catalase-like (CAT-like) activity by its Cu single active site; Au24Cd1 preferably acts as a superoxide dismutase-like (SOD-like) enzyme via the Cd single active site. This unique diversified catalytic landscape manifests distinctive reactions against inflammation in brain. Au24Cu1 behaves as an endogenous multi-enzyme mimic that directly decreases peroxide in injured brain via catalytic reactions, while Au24Cd1, catalyzes superoxide and nitrogenous signal molecules by preference, and significantly decreases inflammation factors such as IL-1\b{eta}, IL-6, and TNFα, indicative of an important role in mitigating neuroinflammation.

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