Department of Chemical Engineering, Indian Institute of Technology Delhi, New Delhi, India.
Center for Sepsis Control and Care, Jena University Hospital, Jena, Germany.
Front Immunol. 2020 Jan 24;11:5. doi: 10.3389/fimmu.2020.00005. eCollection 2020.
Acute systemic Gram-negative bacterial infections are accompanied by release of lipopolysaccharide (LPS) endotoxins into the bloodstream and an innate immune host response via the well-known toll like receptor 4 (TLR4) pathway. In this, LPS associates non-covalently with TLR4 to form an activated heterodimer (LPS/MD2/TLR4) complex , assisted by a coreceptor CD14. This complexation process has been illustrated using indirect methods such as cytokine, interleukin, TNF-α measurements and by direct demonstration of sequential binding events on a surface using advanced optics. We are the first ones to carry out homogeneous self-assembly of LPS-rTLR4-MD2 conjugates in a single step, and further demonstrate the role of CD14 as a catalyst during this process. The assay comprises of LPS, MD2, CD14, and recombinant TLR4-conjugated magnetic particles co-incubated in a buffer at room temperature. The complexes are removed by magnetic separation and the extent of binding is estimated by quantifying the unbound biomolecules in the supernatant using standard biophysical techniques. Our results show that rTLR4-MD2-LPS complexes form in an hour and follow a 1:1:1 stoichiometry, in agreement with the studies. The assay is also highly specific; addition of known LPS-binding ligands decreased the LPS-rTLR4 complexation, allowing its use as a rapid tool for molecular inhibitor screening.
急性全身性革兰氏阴性细菌感染伴随着内毒素(LPS)脂多糖的释放到血液中,并通过众所周知的 toll 样受体 4(TLR4)途径产生先天免疫宿主反应。在此过程中,LPS 与 TLR4 非共价结合形成激活的异二聚体(LPS/MD2/TLR4)复合物,由核心受体 CD14 辅助。该复合物形成过程已通过间接方法如细胞因子、白细胞介素、TNF-α 测量以及通过使用先进光学在表面上直接展示顺序结合事件来阐明。我们是第一个在单个步骤中进行 LPS-rTLR4-MD2 缀合物的均相自组装的人,并且进一步证明了 CD14 在该过程中作为催化剂的作用。该测定法包括 LPS、MD2、CD14 和重组 TLR4 缀合的磁性颗粒在室温下的缓冲液中共同孵育。通过磁性分离去除复合物,并通过使用标准生物物理技术定量上清液中未结合的生物分子来估计结合的程度。我们的结果表明 rTLR4-MD2-LPS 复合物在一小时内形成,并遵循 1:1:1 的化学计量比,与研究结果一致。该测定法也具有高度特异性;添加已知的 LPS 结合配体可降低 LPS-rTLR4 复合物的形成,使其可用作快速分子抑制剂筛选工具。