首页> 美国卫生研究院文献>Journal of Lipid Research >Thematic Review Series: Phospholipases: Central Role in Lipid Signaling and Disease: Calcium-independent phospholipases A2 and their roles in biological processes and diseases
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Thematic Review Series: Phospholipases: Central Role in Lipid Signaling and Disease: Calcium-independent phospholipases A2 and their roles in biological processes and diseases

机译:专题回顾系列:磷脂酶:在脂质信号传导和疾病中的核心作用:非钙依赖性磷脂酶A2及其在生物过程和疾病中的作用

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摘要

Among the family of phospholipases A2 (PLA2s) are the Ca2+-independent PLA2s (iPLA2s) and they are designated group VI iPLA2s. In relation to secretory and cytosolic PLA2s, the iPLA2s are more recently described and details of their expression and roles in biological functions are rapidly emerging. The iPLA2s or patatin-like phospholipases (PNPLAs) are intracellular enzymes that do not require Ca2+ for activity, and contain lipase (GXSXG) and nucleotide-binding (GXGXXG) consensus sequences. Though nine PNPLAs have been recognized, PNPLA8 (membrane-associated iPLA2γ) and PNPLA9 (cytosol-associated iPLA2β) are the most widely studied and understood. The iPLA2s manifest a variety of activities in addition to phospholipase, are ubiquitously expressed, and participate in a multitude of biological processes, including fat catabolism, cell differentiation, maintenance of mitochondrial integrity, phospholipid remodeling, cell proliferation, signal transduction, and cell death. As might be expected, increased or decreased expression of iPLA2s can have profound effects on the metabolic state, CNS function, cardiovascular performance, and cell survival; therefore, dysregulation of iPLA2s can be a critical factor in the development of many diseases. This review is aimed at providing a general framework of the current understanding of the iPLA2s and discussion of the potential mechanisms of action of the iPLA2s and related involved lipid mediators.
机译:在磷脂酶A2(PLA2s)家族中,有不依赖Ca 的PLA2s(iPLA2s),它们被称为VI iPLA2组。关于分泌性和胞质PLA2,最近描述了iPLA2,并且其表达和在生物学功能中的作用的细节正在迅速出现。 iPLA2或类似patatin的磷脂酶(PNPLAs)是不需要Ca 2 + 进行活性的细胞内酶,并且包含脂肪酶(GXSXG)和核苷酸结合(GXGXXG)共有序列。尽管已识别出九种PNPLA,但对PNPLA8(膜相关的iPLA2γ)和PNPLA9(与胞浆相关的iPLA2β)的研究和了解最为广泛。 iPLA2除磷脂酶外还表现出多种活性,并广泛表达,并参与多种生物学过程,包括脂肪分解代谢,细胞分化,线粒体完整性维持,磷脂重塑,细胞增殖,信号转导和细胞死亡。可以预料,iPLA2s表达的增加或减少可能对代谢状态,中枢神经系统功能,心血管功能和细胞存活产生深远影响。因此,iPLA2的失调可能是许多疾病发展的关键因素。这篇综述旨在提供对iPLA2的当前理解的一般框架,并讨论iPLA2和相关脂质介体的潜在作用机制。

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