State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing, China.
Institute of Microbiology, Xinjiang Academy of Agricultural Sciences, Xingjian Laboratory of Special Environmental Microbiology, Urumqi, China.
Front Immunol. 2024 Nov 11;15:1472839. doi: 10.3389/fimmu.2024.1472839. eCollection 2024.
Thymopentin (TP5) plays an important role in host immunomodulation, yet its bioavailability is significantly limited by its short half-life. YW12D is a peptide with strong stability but relatively weak immunoactivity. Tuning the physicochemical properties of such molecules may yield synthetic molecules displaying optimal stability, safety and enhanced immunological activity. Here, natural peptides were modified to improve their activity by hybridization strategies. A hybrid peptide YW12D-TP5 (YTP) that combines TP5 and YW12D is designed. The half-life of YTP in plasma is significantly longer than that of YW12D and TP5. YTP also displays an improved ability to protect the host from CTX-induced weight loss and thymus and spleen indices decrease than YW12D and TP5. In addition, YTP promotes dendritic cell maturation and increases the expression of cytokines IL-1β, IL-6, TNF-α and immunoglobulins IgA, IgG, and IgM. A combination of antibody-specific blocking assay, SPR, molecular dynamics simulations and western blotting suggest that the immunomodulatory effect of YTP is associated with its activation of the TLR2-NF-кB signaling axis. In sum, we demonstrate that peptide hybridization is an effective strategy for redirecting biological activity to generate novel bioactive molecules with desired properties.
胸腺五肽(TP5)在宿主免疫调节中发挥重要作用,但由于其半衰期短,其生物利用度受到显著限制。YW12D 是一种稳定性强但免疫活性相对较弱的肽。调整此类分子的理化性质可能会产生显示出最佳稳定性、安全性和增强免疫活性的合成分子。在这里,通过杂交策略对天然肽进行修饰以提高其活性。设计了一种将 TP5 和 YW12D 结合在一起的混合肽 YW12D-TP5(YTP)。YTP 在血浆中的半衰期明显长于 YW12D 和 TP5。与 YW12D 和 TP5 相比,YTP 还显示出更好的保护宿主免受 CTX 诱导的体重减轻和胸腺和脾脏指数下降的能力。此外,YTP 促进树突状细胞成熟,并增加细胞因子 IL-1β、IL-6、TNF-α 和免疫球蛋白 IgA、IgG 和 IgM 的表达。抗体特异性阻断测定、SPR、分子动力学模拟和 Western blot 表明,YTP 的免疫调节作用与其激活 TLR2-NF-кB 信号通路有关。总之,我们证明肽杂交是一种有效的策略,可以重新定向生物活性,产生具有所需特性的新型生物活性分子。