Department of Materials, Imperial College London, London SW7 2AZ, U.K.
Department of Bioengineering, Imperial College London, London SW7 2AZ, U.K.
J Phys Chem B. 2022 Apr 21;126(15):2789-2797. doi: 10.1021/acs.jpcb.2c00239. Epub 2022 Apr 8.
The generation and sensing of membrane curvature by proteins has become of increasing interest to researchers with multiple mechanisms, from hydrophobic insertion to protein crowding, being identified. However, the role of charged lipids in the membrane curvature-sensing process is still far from understood. Many proteins involved in endocytosis bind phosphatidylinositol 4,5-bisphosphate (PIP2) lipids, allowing these proteins to accumulate at regions of local curvature. Here, using coarse-grained molecular dynamics simulations, we study the curvature-sensing behavior of the ANTH domain, a protein crucial for endocytosis. We selected three ANTH crystal structures containing either an intact, split, or truncated terminal amphipathic helix. On neutral membranes, the ANTH domain has innate curvature-sensing ability. In the presence of PIP2, however, only the domain with an intact helix senses curvature. Our work sheds light on the role of PIP2 and its modulation of membrane curvature sensing by proteins.
蛋白质产生和感应膜曲率的机制引起了研究人员越来越多的关注,这些机制包括从疏水性插入到蛋白质拥挤等多种机制。然而,带电荷的脂质在膜曲率感应过程中的作用仍远未被理解。许多参与胞吞作用的蛋白质与磷脂酰肌醇 4,5-二磷酸(PIP2)脂质结合,使这些蛋白质聚集在局部曲率的区域。在这里,我们使用粗粒分子动力学模拟研究了 ANTH 结构域的曲率感应行为,该结构域对于胞吞作用至关重要。我们选择了包含完整、分裂或截断末端两亲性螺旋的三种 ANTH 晶体结构。在中性膜上,ANTH 结构域具有固有曲率感应能力。然而,在存在 PIP2 的情况下,只有具有完整螺旋的结构域才能感应曲率。我们的工作阐明了 PIP2 的作用及其对蛋白质感知膜曲率的调节。