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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Cell-to-cell variability in the differentiation program of human megakaryocytes
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Cell-to-cell variability in the differentiation program of human megakaryocytes

机译:人巨核细胞分化程序中的细胞间差异

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Differentiation of CD34~+ stem/progenitor cells into megakaryocytes is thought to be a uniform, unidirectional process, in which cells transform step by step from less differentiated precursor stages to more differentiated megakaryocytes. Here we propose the concept and present evidence based on single-cell analysis that differentiation occurs along multiple, partially asynchronous routes. In all CD34~+ cells cultured with thrombopoietin, surface appearance of glycoprotein IIIa(GPIIIa) preceded that of GPIB, indicating that the expression of these glycoproteins occurs in a timely ordered manner. Cellular F-actin content increased in parallel with GPIb expression. Only cells that expressed GPIb were polyploid, pointing to co-regulation of GPIb expression, actin cytoskeleton formation and polyploidization during megakaryocytopoiesis. On the other hand, most progenitor cells responded to thrombin but not to thromboxane A_2 analogue by rises in cytosolic [Ca~(2+)]_i. The appearance of thromboxane-induced responses during megakaryocytopoiesis was not strictly linked to glycoprotein expression, because cells showed responsiveness either before or after GPIb expression. The same non-strictly sequential pattern was observed for disappearance of the Ca~(2+) response by prostacyclin mimetic; in some megakaryocytes it occurred before and in others after GPIb expression. Thus, megakaryocytic differentiation follows along independent routes that are either strictly sequential (GPIIIa and GPIb expression) or proceed at different velocities (Ca~(2+) signal regulation).
机译:CD34〜+干细胞/祖细胞分化为巨核细胞被认为是一个统一的单向过程,其中细胞逐步从分化程度较低的前体阶段转变为分化程度更高的巨核细胞。在这里,我们提出了这一概念并基于单细胞分析提出了证据,即分化是沿着多个部分异步的路线发生的。在所有与血小板生成素一起培养的CD34 +细胞中,糖蛋白IIIa(GPIIIa)的表面出现先于GPIB,这表明这些糖蛋白的表达以有序的方式发生。细胞中F-肌动蛋白含量与GPIb表达平行增加。只有表达GPIb的细胞才是多倍体,这表明在巨核细胞生成过程中GPIb表达,肌动蛋白细胞骨架形成和多倍体化的共同调控。另一方面,大多数祖细胞通过增加胞浆中的[Ca〜(2 +)] _ i来响应凝血酶,而不响应于血栓烷A_2类似物。巨核细胞生成过程中血栓烷诱导的反应的出现与糖蛋白表达并不严格相关,因为细胞在GPIb表达之前或之后均显示出反应能力。前列环素模拟物观察到Ca〜(2+)反应消失的非限制性顺序模式相同;在某些巨核细胞中,它发生在GPIb表达之前和之后。因此,巨核细胞分化遵循严格的顺序(GPIIIa和GPIb表达)或以不同的速度(Ca〜(2+)信号调节)进行的独立途径。

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