Anderson David M, Sato Hiromi, Dirck Aaron T, Feix Jimmy B, Frank Dara W
Departments of Microbiology and Molecular Genetics, Medical College of Wisconsin, Milwaukee, Wisconsin, USA Center for Infectious Disease Research, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
Departments of Microbiology and Molecular Genetics, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.
J Bacteriol. 2015 Feb;197(3):529-41. doi: 10.1128/JB.02402-14. Epub 2014 Nov 17.
Phospholipase A2 enzymes are ubiquitously distributed throughout the prokaryotic and eukaryotic kingdoms and are utilized in a wide array of cellular processes and physiological and immunological responses. Several patatin-like phospholipase homologs of ExoU from Pseudomonas aeruginosa were selected on the premise that ubiquitin activation of this class of bacterial enzymes was a conserved process. We found that ubiquitin activated all phospholipases tested in both in vitro and in vivo assays via a conserved serine-aspartate catalytic dyad. Ubiquitin chains versus monomeric ubiquitin were superior in inducing catalysis, and ubiquitin-like proteins failed to activate phospholipase activity. Toxicity studies in a prokaryotic dual-expression system grouped the enzymes into high- and low-toxicity classes. Toxicity measured in eukaryotic cells also suggested a two-tiered classification but was not predictive of the severity of cellular damage, suggesting that each enzyme may correspond to unique properties perhaps based on its specific biological function. Additional studies on lipid binding preference suggest that some enzymes in this family may be differentially sensitive to phosphatidyl-4,5-bisphosphate in terms of catalytic activation enhancement and binding affinity. Further analysis of the function and amino acid sequences of this enzyme family may lead to a useful approach to formulating a unifying model of how these phospholipases behave after delivery into the cytoplasmic compartment.
磷脂酶A2酶广泛分布于原核生物和真核生物界,并参与多种细胞过程以及生理和免疫反应。基于这类细菌酶的泛素激活是一个保守过程这一前提,从铜绿假单胞菌中选择了几种ExoU的类马铃薯Patatin磷脂酶同源物。我们发现,泛素通过保守的丝氨酸-天冬氨酸催化二元组在体外和体内试验中激活了所有测试的磷脂酶。泛素链比单体泛素在诱导催化方面更具优势,而类泛素蛋白未能激活磷脂酶活性。在原核双表达系统中的毒性研究将这些酶分为高毒性和低毒性类别。在真核细胞中测量的毒性也表明存在两级分类,但不能预测细胞损伤的严重程度,这表明每种酶可能因其特定的生物学功能而具有独特的特性。关于脂质结合偏好的进一步研究表明,该家族中的一些酶在催化激活增强和结合亲和力方面可能对磷脂酰-4,5-二磷酸有不同的敏感性。对该酶家族的功能和氨基酸序列进行进一步分析,可能会形成一种有用的方法,来构建一个关于这些磷脂酶在进入细胞质区室后如何发挥作用的统一模型。