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溶血磷脂酰肌醇的作用和代谢,GPR55 的内源性激动剂。

The actions and metabolism of lysophosphatidylinositol, an endogenous agonist for GPR55.

机构信息

Faculty of Pharma-Sciences, Teikyo University, Kaga 2-11-1, Itabashi-Ku, Tokyo 173-8605, Japan.

出版信息

Prostaglandins Other Lipid Mediat. 2013 Dec;107:103-16. doi: 10.1016/j.prostaglandins.2013.05.004. Epub 2013 May 25.

Abstract

Lysophosphatidylinositol (LPI) is a subspecies of lysophospholipid and is assumed to be not only a degradation product of phosphatidylinositol (PI), but also a bioactive lysophospholipid mediator. However, not much attention has been directed toward LPI compared to lysophosphatidic acid (LPA), since the receptor for LPI has not been identified. During screening for an agonist for the orphan G protein coupled receptor GPR55, we identified LPI, 2-arachidonoyl LPI in particular, as an agonist for GPR55. Our efforts to identify an LPI receptor facilitated research on LPI as a lipid messenger. In addition, we also found that DDHD1, previously identified as phosphatidic acid-preferring phospholipase A1, was one of the synthesizing enzymes of 2-arachidonoyl LPI. Here, we summarized the background for discovering the LPI receptor, and the actions/metabolism of LPI. We also referred to the biosynthesis of PI, a 1-stearoyl-2-arachidonoyl species, since the molecule is the precursor of 2-arachidonoyl LPI. Furthermore, we discussed physiological and/or pathophysiological processes involving LPI and GPR55, including the relevance of LPI-GPR55 and cannabinoids, since GPR55 was previously postulated to be another cannabinoid receptor. Although there is no doubt that GPR55 is the LPI receptor, we should re-consider whether or not GPR55 is in fact another cannabinoid receptor.

摘要

溶血磷脂酰肌醇(LPI)是溶血磷脂的亚种,被认为不仅是磷脂酰肌醇(PI)的降解产物,而且还是一种生物活性溶血磷脂脂质介质。然而,与溶血磷脂酸(LPA)相比,人们对 LPI 的关注较少,因为尚未鉴定出 LPI 的受体。在筛选孤儿 G 蛋白偶联受体 GPR55 的激动剂时,我们发现 LPI,特别是 2-花生四烯酰基 LPI,是 GPR55 的激动剂。我们努力鉴定 LPI 受体有助于研究 LPI 作为脂质信使。此外,我们还发现先前被鉴定为花生四烯酸偏好性磷脂酶 A1 的 DDHD1 是 2-花生四烯酰基 LPI 的合成酶之一。在这里,我们总结了发现 LPI 受体的背景,以及 LPI 的作用/代谢。我们还提到了 PI 的生物合成,即 1-硬脂酰基-2-花生四烯酰基物种,因为该分子是 2-花生四烯酰基 LPI 的前体。此外,我们讨论了涉及 LPI 和 GPR55 的生理和/或病理生理过程,包括 LPI-GPR55 和大麻素的相关性,因为 GPR55 之前被假定为另一种大麻素受体。尽管毫无疑问 GPR55 是 LPI 受体,但我们应该重新考虑 GPR55 是否实际上是另一种大麻素受体。

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