Alkahest, Inc., San Carlos, CA 94070.
Grifols Diagnostic Solutions, Inc., Emeryville, CA 94608.
eNeuro. 2023 Jun 15;10(6). doi: 10.1523/ENEURO.0031-23.2023. Print 2023 Jun.
Peripheral administration of tissue inhibitor of metalloproteinases 2 (TIMP2), a protein inhibitor of matrix metalloproteinases (MMPs), has previously been shown to have beneficial effects on cognition and neurons in aged mice. Here, to better understand the potential of recombinant TIMP2 proteins, an IgG4Fc fusion protein (TIMP2-hIgG4) was developed to extend the plasma half-life of TIMP2. Following one month of administration of TIMP2 or TIMP2-hIgG4 via intraperitoneal injections, 23-month-old male C57BL/6J mice showed improved hippocampal-dependent memory in a Y-maze, increased hippocampal gene expression, and increased excitatory synapse density in the CA1 and dentate gyrus (DG) of the hippocampus. Thus, fusion to hIgG4 extended the half-life of TIMP2 while retaining the beneficial cognitive and neuronal effects. Moreover, it retained its ability to cross the blood-brain barrier. To deepen the mechanistic understanding of the beneficial function of TIMP2 on neuronal activity and cognition, a TIMP2 construct lacking MMP inhibitory activity, Ala-TIMP2, was generated, which provides steric hindrance that prevents inhibition of MMPs by the TIMP2 protein while still allowing MMP binding. A comprehensive assessment of the MMP inhibitory and binding capacity of these engineered proteins is outlined. Surprisingly, MMP inhibition by TIMP2 was not essential for its beneficial effects on cognition and neuronal function. These findings both confirm previously published research, expand on the potential mechanism for the beneficial effects of TIMP2, and provide important details for a therapeutic path forward for TIMP2 recombinant proteins in aging-related cognitive decline.
组织金属蛋白酶抑制剂 2(TIMP2)是一种基质金属蛋白酶(MMPs)的蛋白抑制剂,其外周给药先前已被证明对老年小鼠的认知和神经元具有有益作用。在这里,为了更好地了解重组 TIMP2 蛋白的潜力,开发了一种 IgG4Fc 融合蛋白(TIMP2-hIgG4),以延长 TIMP2 的血浆半衰期。经过一个月的腹腔注射 TIMP2 或 TIMP2-hIgG4 给药后,23 月龄的雄性 C57BL/6J 小鼠在 Y 迷宫中表现出改善的海马依赖性记忆,海马中基因表达增加,并且海马 CA1 和齿状回(DG)中的兴奋性突触密度增加。因此,与 hIgG4 的融合延长了 TIMP2 的半衰期,同时保留了有益的认知和神经元作用。此外,它保留了穿越血脑屏障的能力。为了更深入地了解 TIMP2 对神经元活性和认知的有益功能的机制,生成了一种缺乏 MMP 抑制活性的 TIMP2 构建体,Ala-TIMP2,它提供了空间位阻,阻止 TIMP2 蛋白抑制 MMP,同时仍允许 MMP 结合。概述了这些工程蛋白的 MMP 抑制和结合能力的全面评估。令人惊讶的是,TIMP2 的 MMP 抑制对于其对认知和神经元功能的有益作用不是必需的。这些发现既证实了先前发表的研究,又扩展了 TIMP2 有益作用的潜在机制,并为 TIMP2 重组蛋白在与衰老相关的认知衰退中的治疗途径提供了重要细节。