National Centre for Cell Science, NCCS Complex, Ganeshkhind, SPPU Campus, Pune 411007, India.
Molecules. 2021 Dec 26;27(1):124. doi: 10.3390/molecules27010124.
Macrophage phenotype plays a crucial role in the pathogenesis of Leishmanial infection. Pro-inflammatory cytokines signals through the Janus kinase/signal transducer and activator of transcription (JAK/STAT) pathway that functions in parasite killing. Suppression of cytokine signaling (SOCS) is a well-known negative feedback regulator of the JAK/STAT pathway. However, change in the expression levels of SOCSs in correlation with the establishment of infection is not well understood. IL6 is a pleotropic cytokine that induces SOCS1 and SOCS3 expression through JAK-STAT signaling. Mathematical modeling of the TLR2 and IL6 signaling pathway has established the immune axis of SOCS1 and SOCS3 functioning in macrophage polarization during the early stage of Leishmania major infection. The ratio has been quantified both in silico and in vitro as 3:2 which is required to establish infection during the early stage. Furthermore, phosphorylated STAT1 and STAT3 have been established as an immunological cross talk between TLR2 and IL6 signaling pathways. Using synthetic biology approaches, peptide based immuno-regulatory circuits have been designed to target the activity of SOCS1 which can restore pro-inflammatory cytokine expression during infection. In a nutshell, we explored the potential of synthetic biology to address and rewire the immune response from Th2 to Th1 type during the early stage of leishmanial infection governed by SOCS1/SOCS3 immune axis.
巨噬细胞表型在利什曼原虫感染的发病机制中起着至关重要的作用。促炎细胞因子通过 Janus 激酶/信号转导和转录激活因子(JAK/STAT)途径发出信号,该途径在寄生虫杀伤中发挥作用。细胞因子信号抑制(SOCS)是 JAK/STAT 途径的一种众所周知的负反馈调节剂。然而,与感染建立相关的 SOCS 表达水平的变化尚不清楚。IL6 是一种多效细胞因子,通过 JAK-STAT 信号诱导 SOCS1 和 SOCS3 的表达。TLR2 和 IL6 信号通路的数学模型已经建立了 SOCS1 和 SOCS3 在巨噬细胞极化中的免疫轴,在大孢利什曼原虫感染的早期阶段发挥作用。已经在体内和体外对该比值进行了量化,即 3:2,这是在早期阶段建立感染所必需的。此外,磷酸化 STAT1 和 STAT3 已被确立为 TLR2 和 IL6 信号通路之间的免疫交叉对话。使用合成生物学方法,已经设计了基于肽的免疫调节回路来靶向 SOCS1 的活性,这可以在感染期间恢复促炎细胞因子的表达。简而言之,我们探索了合成生物学的潜力,以解决和重布线 SOCS1/SOCS3 免疫轴控制的利什曼原虫感染早期的 Th2 向 Th1 型免疫反应。