Laboratory of Red Cell Physiology, New York Blood Center, New York, New York, USA.
Curr Opin Hematol. 2011 May;18(3):133-8. doi: 10.1097/MOH.0b013e32834521f3.
In this review, we summarize our current knowledge on the expression patterns of various proteins during erythropoiesis and discuss how this information can lead to development of detailed understanding of membrane biogenesis during erythropoiesis.
Changes in expression pattern of more than 30 red cell membrane proteins during terminal erythroid differentiation and during reticulocyte maturation was discerned. During maturation of murine reticulocytes, tubulin and cytosolic actin were lost, while the membrane-associated levels of myosin, tropomyosin, ICAM-4, GLUT4, Na/K-ATPase, NHE1, GPA, CD47, Duffy, and Kell were reduced. During murine terminal erythroid differentiation, expression levels of all major transmembrane and skeletal proteins of the mature red blood cell increased, while those of various adhesion molecules decreased. A 30-fold decrease in expression of the adhesive protein CD44 was noted during differentiation of murine proerythroblast to orthochromatic erythroblast. These changing protein expression patterns were used to devise an effective strategy to distinguish erythroblasts at distinct stages of development.
All major red cell membrane proteins undergo dynamic changes during terminal erythroid differentiation. Use of CD44 in conjunction with TER119 and cell size enabled the development of a method for distinguishing distinct stages of erythroblasts during murine erythropoiesis. These findings should enable development of detailed understanding of membrane biogenesis during erythropoiesis and obtain mechanistic insights into disordered erythropoiesis in various red cell disorders.
在这篇综述中,我们总结了目前关于红细胞生成过程中各种蛋白质表达模式的知识,并讨论了这些信息如何帮助我们深入了解红细胞生成过程中的膜生物发生。
在终末红细胞分化和网织红细胞成熟过程中,超过 30 种红细胞膜蛋白的表达模式发生了变化。在鼠网织红细胞成熟过程中,微管蛋白和胞质肌动蛋白丢失,而肌球蛋白、原肌球蛋白、ICAM-4、GLUT4、Na/K-ATP 酶、NHE1、GPA、CD47、Duffy 和 Kell 的膜相关水平降低。在鼠终末红细胞分化过程中,所有成熟红细胞的主要跨膜和骨架蛋白的表达水平增加,而各种黏附分子的表达水平降低。在鼠原红细胞向正染红细胞的分化过程中,黏附蛋白 CD44 的表达水平下降了 30 倍。这些不断变化的蛋白质表达模式被用于设计一种有效的策略,以区分处于不同发育阶段的红细胞。
所有主要的红细胞膜蛋白在终末红细胞分化过程中都发生了动态变化。在结合 TER119 和细胞大小使用 CD44 的情况下,我们开发了一种方法,可以区分鼠红细胞生成过程中不同阶段的红细胞。这些发现应该能够深入了解红细胞生成过程中的膜生物发生,并深入了解各种红细胞疾病中紊乱的红细胞生成的机制。