Department of Biology, Southern University of Science and Technology, Shenzhen, 518055, Guangdong Province, China.
Multidiscipline Research Center, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2022 Oct 10;13(1):5979. doi: 10.1038/s41467-022-33690-2.
PldA, a phospholipase D (PLD) effector, catalyzes hydrolysis of the phosphodiester bonds of glycerophospholipids-the main component of cell membranes-and assists the invasion of the opportunistic pathogen Pseudomonas aeruginosa. As a cognate immunity protein, PA3488 can inhibit the activity of PldA to avoid self-toxicity. However, the precise inhibitory mechanism remains elusive. We determine the crystal structures of full-length and truncated PldA and the cryogenic electron microscopy structure of the PldA-PA3488 complex. Structural analysis reveals that there are different intermediates of PldA between the "open" and "closed" states of the catalytic pocket, accompanied by significant conformational changes in the "lid" region and the peripheral helical domain. Through structure-based mutational analysis, we identify the key residues responsible for the enzymatic activity of PldA. Together, these data provide an insight into the molecular mechanisms of PldA invasion and its neutralization by PA3488, aiding future design of PLD-targeted inhibitors and drugs.
PldA,一种磷酯酶 D(PLD)效应物,可催化甘油磷脂的磷酸二酯键水解 - 细胞膜的主要成分 - 并协助机会性病原体铜绿假单胞菌的入侵。作为一种同源免疫蛋白,PA3488 可以抑制 PldA 的活性,避免自身毒性。然而,精确的抑制机制仍不清楚。我们确定了全长和截短的 PldA 以及 PldA-PA3488 复合物的低温电子显微镜结构。结构分析表明,催化口袋的“打开”和“关闭”状态之间存在 PldA 的不同中间体,伴随着“盖子”区域和外围螺旋结构域的显著构象变化。通过基于结构的突变分析,我们确定了负责 PldA 酶活性的关键残基。总之,这些数据提供了对 PldA 入侵及其被 PA3488 中和的分子机制的深入了解,有助于未来设计针对 PLD 的抑制剂和药物。