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对人类网织红细胞进行定量质谱分析揭示了成熟过程中全蛋白质组的修饰。

Quantitative mass spectrometry of human reticulocytes reveal proteome-wide modifications during maturation.

作者信息

Chu Trang T T, Sinha Ameya, Malleret Benoit, Suwanarusk Rossarin, Park Jung E, Naidu Renugah, Das Rupambika, Dutta Bamaprasad, Ong Seow Theng, Verma Navin K, Chan Jerry K, Nosten François, Rénia Laurent, Sze Siu K, Russell Bruce, Chandramohanadas Rajesh

机构信息

Pillar of Engineering Product Development (EPD), Singapore University of Technology & Design (SUTD), Singapore.

Department of Microbiology & Immunology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.

出版信息

Br J Haematol. 2018 Jan;180(1):118-133. doi: 10.1111/bjh.14976. Epub 2017 Nov 2.

Abstract

Erythropoiesis is marked by progressive changes in morphological, biochemical and mechanical properties of erythroid precursors to generate red blood cells (RBC). The earliest enucleated forms derived in this process, known as reticulocytes, are multi-lobular and spherical. As reticulocytes mature, they undergo a series of dynamic cytoskeletal re-arrangements and the expulsion of residual organelles, resulting in highly deformable biconcave RBCs (normocytes). To understand the significant, yet neglected proteome-wide changes associated with reticulocyte maturation, we undertook a quantitative proteomics approach. Immature reticulocytes (marked by the presence of surface transferrin receptor, CD71) and mature RBCs (devoid of CD71) were isolated from human cord blood using a magnetic separation procedure. After sub-fractionation into triton-extracted membrane proteins and luminal samples (isobaric tags for relative and absolute quantitation), quantitative mass spectrometry was conducted to identify more than 1800 proteins with good confidence and coverage. While most structural proteins (such as Spectrins, Ankyrin and Band 3) as well as surface glycoproteins were conserved, proteins associated with microtubule structures, such as Talin-1/2 and ß-Tubulin, were detected only in immature reticulocytes. Atomic force microscopy (AFM)-based imaging revealed an extended network of spectrin filaments in reticulocytes (with an average length of 48 nm), which shortened during reticulocyte maturation (average spectrin length of 41 nm in normocytes). The extended nature of cytoskeletal network may partly account for increased deformability and shape changes, as reticulocytes transform to normocytes.

摘要

红细胞生成的特点是红系前体细胞在形态、生化和机械特性上发生渐进性变化,以生成红细胞(RBC)。在此过程中最早产生的无核形式,即网织红细胞,是多叶球形的。随着网织红细胞成熟,它们会经历一系列动态的细胞骨架重排以及残余细胞器的排出,从而产生高度可变形的双凹红细胞(正常红细胞)。为了了解与网织红细胞成熟相关的重大但被忽视的全蛋白质组变化,我们采用了定量蛋白质组学方法。使用磁分离程序从人脐带血中分离出未成熟网织红细胞(以表面转铁蛋白受体CD71的存在为标志)和成熟红细胞(缺乏CD71)。在将其亚分级为经 Triton 提取的膜蛋白和腔内样品(用于相对和绝对定量的等压标签)后,进行定量质谱分析,以高可信度和覆盖率鉴定出 1800 多种蛋白质。虽然大多数结构蛋白(如血影蛋白、锚蛋白和带 3 蛋白)以及表面糖蛋白是保守的,但与微管结构相关的蛋白质,如踝蛋白-1/2 和β-微管蛋白,仅在未成熟网织红细胞中被检测到。基于原子力显微镜(AFM)的成像显示,网织红细胞中血影蛋白丝的网络延伸(平均长度为 48 纳米),在网织红细胞成熟过程中会缩短(正常红细胞中血影蛋白平均长度为 41 纳米)。随着网织红细胞转变为正常红细胞,细胞骨架网络的延伸性质可能部分解释了其变形性增加和形状变化的原因。

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