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精子中的醚脂与一个过氧化物酶体之谜

Ether lipids and a peroxisomal riddle in sperm.

作者信息

Horta Remedios Mayrene, Liang Weisheng, González Lucas N, Li Victoria, Da Ros Vanina G, Cohen Débora J, Zaremberg Vanina

机构信息

Department of Biological Sciences, University of Calgary, Calgary, AB, Canada.

Instituto de Biología y Medicina Experimental (IByME-CONICET), Buenos Aires, Argentina.

出版信息

Front Cell Dev Biol. 2023 May 15;11:1166232. doi: 10.3389/fcell.2023.1166232. eCollection 2023.

Abstract

Sperm are terminally differentiated cells that lack most of the membranous organelles, resulting in a high abundance of ether glycerolipids found across different species. Ether lipids include plasmalogens, platelet activating factor, GPI-anchors and seminolipid. These lipids play important roles in sperm function and performance, and thus are of special interest as potential fertility markers and therapeutic targets. In the present article, we first review the existing knowledge on the relevance of the different types of ether lipids for sperm production, maturation and function. To further understand ether-lipid metabolism in sperm, we then query available proteomic data from highly purified sperm, and produce a map of metabolic steps retained in these cells. Our analysis pinpoints the presence of a truncated ether lipid biosynthetic pathway that would be competent for the production of precursors through the initial peroxisomal core steps, but devoid of subsequent microsomal enzymes responsible for the final synthesis of all complex ether-lipids. Despite the widely accepted notion that sperm lack peroxisomes, the thorough analysis of published data conducted herein identifies nearly 70% of all known peroxisomal resident proteins as part of the sperm proteome. In view of this, we highlight open questions related to lipid metabolism and possible peroxisomal functions in sperm. We propose a repurposed role for the truncated peroxisomal ether-lipid pathway in detoxification of products from oxidative stress, which is known to critically influence sperm function. The likely presence of a peroxisomal-derived remnant compartment that could act as a sink for toxic fatty alcohols and fatty aldehydes generated by mitochondrial activity is discussed. With this perspective, our review provides a comprehensive metabolic map associated with ether-lipids and peroxisomal-related functions in sperm and offers new insights into potentially relevant antioxidant mechanisms that warrant further research.

摘要

精子是终末分化细胞,缺乏大多数膜性细胞器,这导致在不同物种中都发现了高丰度的醚脂。醚脂包括缩醛磷脂、血小板活化因子、糖基磷脂酰肌醇锚定物和半乳糖神经酰胺。这些脂质在精子功能和性能中发挥重要作用,因此作为潜在的生育标志物和治疗靶点备受关注。在本文中,我们首先回顾了关于不同类型醚脂与精子产生、成熟和功能相关性的现有知识。为了进一步了解精子中的醚脂代谢,我们查询了来自高度纯化精子的现有蛋白质组学数据,并绘制了这些细胞中保留的代谢步骤图谱。我们的分析指出存在一条截断的醚脂生物合成途径,该途径能够通过最初的过氧化物酶体核心步骤产生前体,但缺乏负责所有复杂醚脂最终合成的后续微粒体酶。尽管普遍认为精子缺乏过氧化物酶体,但本文对已发表数据的深入分析确定,所有已知的过氧化物酶体驻留蛋白中有近70%是精子蛋白质组的一部分。鉴于此,我们强调了与精子脂质代谢和可能的过氧化物酶体功能相关的未解决问题。我们提出截断的过氧化物酶体醚脂途径在氧化应激产物解毒中具有新的作用,已知氧化应激会严重影响精子功能。本文还讨论了可能存在的过氧化物酶体衍生的残余区室,它可能作为线粒体活动产生的有毒脂肪醇和脂肪醛的汇集地。基于此观点,我们的综述提供了与精子中醚脂和过氧化物酶体相关功能相关的全面代谢图谱,并为潜在相关的抗氧化机制提供了新见解,值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4464/10309183/336b6eb38c3e/fcell-11-1166232-g001.jpg

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