Department of Biochemistry, University of Missouri, Columbia, MO 65211, USA.
Department of Biomedical Engineering, University of Illinois at Chicago, Chicago, IL 60607, USA.
Cells. 2021 Oct 30;10(11):2963. doi: 10.3390/cells10112963.
Phospholipids are major components in the lipid bilayer of cell membranes. These molecules are comprised of two acyl or alkyl groups and different phospho-base groups linked to the glycerol backbone. Over the years, substantial interest has focused on metabolism of phospholipids by phospholipases and the role of their metabolic products in mediating cell functions. The high levels of polyunsaturated fatty acids (PUFA) in the central nervous system (CNS) have led to studies centered on phospholipases A2 (PLA2s), enzymes responsible for cleaving the acyl groups at the -2 position of the phospholipids and resulting in production of PUFA and lysophospholipids. Among the many subtypes of PLA2s, studies have centered on three major types of PLA2s, namely, the calcium-dependent cytosolic cPLA2, the calcium-independent iPLA2 and the secretory sPLA2. These PLA2s are different in their molecular structures, cellular localization and, thus, production of lipid mediators with diverse functions. In the past, studies on specific role of PLA2 on cells in the CNS are limited, partly because of the complex cellular make-up of the nervous tissue. However, understanding of the molecular actions of these PLA2s have improved with recent advances in techniques for separation and isolation of specific cell types in the brain tissue as well as development of sensitive molecular tools for analyses of proteins and lipids. A major goal here is to summarize recent studies on the characteristics and dynamic roles of the three major types of PLA2s and their oxidative products towards brain health and neurological disorders.
磷脂是细胞膜脂质双层的主要成分。这些分子由两个酰基或烷基基团和连接到甘油主链上的不同磷酸碱基组成。多年来,人们对磷脂酶代谢磷脂以及其代谢产物在介导细胞功能中的作用产生了浓厚的兴趣。中枢神经系统(CNS)中多不饱和脂肪酸(PUFA)的含量很高,这导致了对磷脂酶 A2(PLA2)的研究,这种酶负责在磷脂的-2 位裂解酰基基团,从而产生 PUFA 和溶血磷脂。在众多 PLA2 亚型中,研究集中在三种主要类型的 PLA2 上,即钙依赖性胞质 cPLA2、钙非依赖性 iPLA2 和分泌型 sPLA2。这些 PLA2 在分子结构、细胞定位上存在差异,因此产生了具有不同功能的脂质介质。过去,由于神经组织的细胞组成复杂,对 CNS 中特定 PLA2 对细胞的具体作用的研究有限。然而,随着近年来用于分离脑组织中特定细胞类型的技术的进步以及用于分析蛋白质和脂质的敏感分子工具的发展,对这些 PLA2 的分子作用的理解得到了改善。这里的主要目标是总结最近关于三种主要类型的 PLA2 及其氧化产物对大脑健康和神经紊乱的特性和动态作用的研究。