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低β脂蛋白血症棘形红细胞的细胞骨架和膜生物物理特性受损——病例研究

Impaired Cytoskeletal and Membrane Biophysical Properties of Acanthocytes in Hypobetalipoproteinemia - A Case Study.

作者信息

Cloos Anne-Sophie, Daenen Laura G M, Maja Mauriane, Stommen Amaury, Vanderroost Juliette, Van Der Smissen Patrick, Rab Minke, Westerink Jan, Mignolet Eric, Larondelle Yvan, Terrasi Romano, Muccioli Giulio G, Dumitru Andra C, Alsteens David, van Wijk Richard, Tyteca Donatienne

机构信息

CELL Unit & PICT Imaging Platform, de Duve Institute, UCLouvain, Brussels, Belgium.

Department of Hematology, University Medical Center Utrecht, Utrecht University, Utrecht, Netherlands.

出版信息

Front Physiol. 2021 Feb 23;12:638027. doi: 10.3389/fphys.2021.638027. eCollection 2021.

Abstract

Familial hypobetalipoproteinemia is a metabolic disorder mainly caused by mutations in the gene. In its homozygous form it can lead without treatment to severe ophthalmological and neurological manifestations. In contrast, the heterozygous form is generally asymptomatic but associated with a low risk of cardiovascular disease. Acanthocytes or thorny red blood cells (RBCs) are described for both forms of the disease. However, those morphological changes are poorly characterized and their potential consequences for RBC functionality are not understood. Thus, in the present study, we asked whether, to what extent and how acanthocytes from a patient with heterozygous familial hypobetalipoproteinemia could exhibit altered RBC functionality. Acanthocytes represented 50% of the total RBC population and contained mitoTracker-positive surface patches, indicating the presence of mitochondrial fragments. While RBC osmotic fragility, calcium content and ATP homeostasis were preserved, a slight decrease of RBC deformability combined with an increase of intracellular free reactive oxygen species were observed. The spectrin cytoskeleton was altered, showing a lower density and an enrichment in patches. At the membrane level, no obvious modification of the RBC membrane fatty acids nor of the cholesterol content were detected but the ceramide species were all increased. Membrane stiffness and curvature were also increased whereas transversal asymmetry was preserved. In contrast, lateral asymmetry was highly impaired showing: (i) increased abundance and decreased functionality of sphingomyelin-enriched domains; (ii) cholesterol enrichment in spicules; and (iii) ceramide enrichment in patches. We propose that oxidative stress induces cytoskeletal alterations, leading to increased membrane stiffness and curvature and impaired lipid lateral distribution in domains and spicules. In addition, ceramide- and spectrin-enriched patches could result from a RBC maturation defect. Altogether, the data indicate that acanthocytes are associated with cytoskeletal and membrane lipid lateral asymmetry alterations, while deformability is only mildly impaired. In addition, familial hypobetalipoproteinemia might also affect RBC precursors leading to disturbed RBC maturation. This study paves the way for the potential use of membrane biophysics and lipid vital imaging as new methods for diagnosis of RBC disorders.

摘要

家族性低β脂蛋白血症是一种主要由该基因突变引起的代谢紊乱疾病。其纯合形式若不治疗可导致严重的眼科和神经学表现。相比之下,杂合形式通常无症状,但与心血管疾病低风险相关。两种形式的该疾病均有棘红细胞或带刺红细胞(RBC)的描述。然而,这些形态变化特征描述不足,其对RBC功能的潜在影响尚不清楚。因此,在本研究中,我们探讨了杂合性家族性低β脂蛋白血症患者的棘红细胞是否、在何种程度以及如何表现出RBC功能改变。棘红细胞占RBC总数的50%,且含有线粒体追踪阳性表面斑块,表明存在线粒体片段。虽然RBC的渗透脆性、钙含量和ATP稳态得以维持,但观察到RBC变形性略有下降,同时细胞内游离活性氧增加。血影蛋白细胞骨架发生改变,显示密度降低且斑块富集。在膜水平,未检测到RBC膜脂肪酸或胆固醇含量有明显改变,但神经酰胺种类均增加。膜硬度和曲率也增加,而横向不对称性得以保留。相比之下,侧向不对称性严重受损,表现为:(i)富含鞘磷脂区域的丰度增加且功能降低;(ii)棘突中胆固醇富集;(iii)斑块中神经酰胺富集。我们提出氧化应激诱导细胞骨架改变,导致膜硬度和曲率增加以及膜脂在区域和棘突中的侧向分布受损。此外,富含神经酰胺和血影蛋白的斑块可能是RBC成熟缺陷所致。总之,数据表明棘红细胞与细胞骨架和膜脂侧向不对称性改变有关,而变形性仅轻度受损。此外,家族性低β脂蛋白血症可能还会影响RBC前体,导致RBC成熟紊乱。本研究为膜生物物理学和脂质活体成像作为诊断RBC疾病的新方法的潜在应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02b5/7940373/2a9db99752a7/fphys-12-638027-g001.jpg

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