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三种 P4-磷脂翻转酶-atp11a、atp11b 和 atp11c 在斑马鱼(Danio rerio)中的表达。

Expression of three P4-phospholipid flippases-atp11a, atp11b, and atp11c in zebrafish (Danio rerio).

机构信息

Discipline of Genetics, Faculty of Medicine, Memorial University of Newfoundland, Canada.

Discipline of Genetics, Faculty of Medicine, Memorial University of Newfoundland, Canada.

出版信息

Gene Expr Patterns. 2020 Jun;36:119115. doi: 10.1016/j.gep.2020.119115. Epub 2020 Apr 25.

Abstract

Cellular membrane asymmetry is a hallmark characteristic of all eukaryotic cells. The balance of phospholipid composition within the cytoplasmic inner leaflet and the extracellular outer leaflet of the plasma membrane (PM) maintains cellular function and vitality. The proper exposure of particular phospholipids is necessary to maintain cellular signalling, controlled apoptosis, and vesicle transportation among other roles. Phospholipid asymmetry is coordinated by P4-type phospholipid transferases (flippases or ATPases). ATP11A, ATP11B, and ATP11C belong to class VI of the P4-flippase family (vertebrates) and are responsible for the movement of phosphatidylserine (PS) from the outer leaflet to the inner leaflet of the PM. To date, there is a lack of knowledge of the tissue specific expression of these three flippases on a whole-organism level in a vertebrate system. Here we have determined the spatial-temporal expression profiles of each gene in a zebrafish model using in situ hybridization and performed comparative phylogenetic analyses with other vertebrates. Our data reveals sequence similarity between vertebrate flippases and specific synteny of zebrafish and human chromosomes. Both atp11b and atp11c are maternally expressed in zebrafish, while zygotic expression analysis demonstrates tissue and temporal specificity for all three genes. atp11a is expressed in the neural crest cells as well as in the developing eye and ear, while atp11b is expressed early in the ventricular epithelial lining and later in the ear. atp11c is expressed in the anterior most rhombomeres of the hindbrain, pharyngeal arches, and liver. Our expression data suggests that each of the three flippases are integral for the development of specific tissues, and aberrant function of either could lead to visual, hearing, neural, or liver dysfunction.

摘要

细胞膜不对称性是所有真核细胞的标志性特征。细胞质内层和质膜(PM)的细胞外外层之间的磷脂成分平衡维持着细胞的功能和活力。特定磷脂的适当暴露对于维持细胞信号转导、受控细胞凋亡和囊泡运输等功能是必要的。磷脂不对称性由 P4 型磷脂转移酶(翻转酶或 ATP 酶)协调。ATP11A、ATP11B 和 ATP11C 属于 P4-翻转酶家族的第六类(脊椎动物),负责将磷脂酰丝氨酸(PS)从质膜的外叶转移到内叶。迄今为止,在脊椎动物系统中,缺乏关于这三种翻转酶在整个生物体水平上的组织特异性表达的知识。在这里,我们使用原位杂交技术在斑马鱼模型中确定了每个基因的时空表达谱,并与其他脊椎动物进行了比较系统发育分析。我们的数据揭示了脊椎动物翻转酶之间的序列相似性以及斑马鱼和人类染色体的特定基因同线性。atp11b 和 atp11c 在斑马鱼中均为母源表达,而合子表达分析表明所有三个基因在组织和时间上都具有特异性。atp11a 在神经嵴细胞以及发育中的眼睛和耳朵中表达,而 atp11b 则在心室上皮衬里早期表达,然后在耳朵中表达。atp11c 在后脑的最前几个脑节、咽弓和肝脏中表达。我们的表达数据表明,这三种翻转酶中的每一种都对特定组织的发育至关重要,并且它们的功能异常都可能导致视觉、听觉、神经或肝功能障碍。

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