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磷脂酰丝氨酸生物合成途径与脂质动态平衡:解决数十年来悬而未决的核心问题。

Phosphatidylserine biosynthesis pathways in lipid homeostasis: Toward resolution of the pending central issue for decades.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, ON, Canada.

出版信息

FASEB J. 2021 Jan;35(1):e21177. doi: 10.1096/fj.202001802R. Epub 2020 Nov 17.

DOI:10.1096/fj.202001802R
PMID:33205488
Abstract

Enzymatic control of lipid homeostasis in the cell is a vital element in the complex organization of life. Phosphatidylserine (PS) is an essential anionic phospholipid of cell membranes, and conducts numerous roles for their structural and functional integrity. In mammalian cells, two distinct enzymes phosphatidylserine synthases-1 (PSS1) and -2 (PSS2) in the mitochondria-associated membrane (MAM) in the ER perform de novo synthesis of PS. It is based on base-exchange reactions of the preexisting dominant phospholipids phosphatidylcholine (PC) and phosphatidylethanolamine (PE). While PSS2 specifically catalyzes the reaction "PE → PS," whether or not PSS1 is responsible for the same reaction along with the reaction "PC → PS" remains unsettled despite its fundamental impact on the major stoichiometry. We propose here that a key but the only report that appeared to have put scientists on hold for decades in answering to this issue may be viewed consistently with other available research reports; PSS1 utilizes the two dominant phospholipid classes at a similar intrinsic rate. In this review, we discuss the issue in view of the current information for the enzyme machineries, membrane structure and dynamics, intracellular network of lipid transport, and PS synthesis in health and disease. Resolution of the pending issue is thus critical in advancing our understanding of roles of the essential anionic lipid in biology, health, and disease.

摘要

细胞中脂质动态平衡的酶控制是生命复杂组织的重要组成部分。磷脂酰丝氨酸 (PS) 是细胞膜的必需阴离子磷脂,对其结构和功能完整性起着重要作用。在哺乳动物细胞中,两种不同的酶——线粒体相关膜 (MAM) 中的磷脂酰丝氨酸合成酶-1 (PSS1) 和 -2 (PSS2)——在 ER 中从头合成 PS。这是基于前体主要磷脂磷脂酰胆碱 (PC) 和磷脂酰乙醇胺 (PE) 的碱基交换反应。虽然 PSS2 特异性催化反应“PE → PS”,但 PSS1 是否负责与反应“PC → PS”相同的反应,尽管它对主要化学计量学有根本影响,但仍未解决。在这里,我们提出一个关键但唯一的报告,该报告似乎使科学家们在几十年内无法回答这个问题,但可以与其他可用的研究报告一致;PSS1 以相似的内在速率利用两种主要的磷脂类。在这篇综述中,我们根据当前有关酶机制、膜结构和动力学、细胞内脂质转运网络以及健康和疾病中 PS 合成的信息来讨论这个问题。因此,解决悬而未决的问题对于提高我们对生物学、健康和疾病中必需阴离子脂质的作用的理解至关重要。

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