研究概要
细胞决策依赖于将多种细胞外线索整合为协调的功能反应。
中文摘要
细胞决策依赖于将多种细胞外线索整合为协调的功能反应。合成生物学提供了通过工程化受体将特定输入转换为可编程输出的工具,从而重连这一过程。在此,我们描述了一种基于合成受体的架构,使单核细胞样细胞能够感知免疫调节配体并有条件地激活吞噬程序。我们工程化了一种基于合成Notch的受体(SNIPR),可检测程序性死亡配体1(PD-L1),这是一种广泛表达的免疫调节配体。PD-L1结合后,该回路触发可编程输出,包括表达荧光报告基因或CV1-Fc,后者作为模型效应分子干扰CD47介导的吞噬抑制作用。我们表明,回路激活随PD-L1水平呈比例变化,部分减弱PD-1/PD-L1信号传导,并且条件性CV1-Fc表达增强了体外THP-1衍生巨噬细胞对SKOV-3卵巢癌细胞的吞噬。总之,这项工作将PD-L1从终点治疗靶点重新定义为合成回路激活的可编程输入信号,并建立了一个模块化框架,用于对工程化巨噬细胞行为进行配体响应性控制。[图:见正文]
展开英文摘要原文
Cellular decision-making relies on the integration of multiple extracellular cues into coordinated functional responses. Synthetic biology provides tools to rewire this process by engineering receptors that convert defined inputs into programmable outputs. Here, we describe a synthetic receptor-based architecture that enables monocytic-like cells to sense an immune-regulatory ligand and conditionally activate a phagocytic program. We engineered a synthetic Notch-based receptor (SNIPR) that detects programmed death-ligand 1 (PD-L1), a broadly expressed immune-regulatory ligand. Upon PD-L1 engagement, the circuit triggers programmable outputs, including expression of a fluorescent reporter or CV1-Fc, as model effector that interferes with CD47-mediated inhibition of phagocytosis. We show that circuit activation scales with PD-L1 levels, partially attenuates PD-1/PD-L1 signaling, and that conditional CV1-Fc expression enhances engulfment of SKOV-3 ovarian cancer cells by THP-1-derived macrophages in vitro. Collectively, this work reframes PD-L1 from an end-point therapeutic target to a programmable input signal for synthetic circuit activation and establishes a modular framework for ligand-responsive control of engineered macrophage behaviour.
[Figure: see text]
论文信息
- 作者
- De Martino I、Russo L、Marchetti M、Siciliano V
- 第一作者单位
- Istituto Italiano di Tecnologia-IIT, Largo Barsanti e Matteucci, 80125, Naples, Italy.Italy
- 通讯作者单位
- Istituto Italiano di Tecnologia-IIT, Largo Barsanti e Matteucci, 80125, Naples, Italy. velia.siciliano@iit.it.Italy
- 期刊
- Journal of biological engineering2026 Jun 6