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首页> 外文期刊>Developmental neurobiology >Patterns of p57Kip2 expression in embryonic rat brain suggest roles in progenitor cell cycle exit and neuronal differentiation.
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Patterns of p57Kip2 expression in embryonic rat brain suggest roles in progenitor cell cycle exit and neuronal differentiation.

机译:胚胎大鼠脑中p57Kip2表达的模式提示了祖细胞周期退出和神经元分化中的作用。

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In developing central nervous system, a variety of mechanisms couple cell cycle exit to differentiation during neurogenesis. The cyclin-dependent kinase (CDK) inhibitor p57Kip2 controls the transition from proliferation to differentiation in many tissues, but roles in developing brain remain uncertain. To characterize possible functions, we defined p57Kip2 protein expression in embryonic (E) day 12.5 to 20.5 rat brains using immunohistochemistry combined with markers of proliferation and differentiation. The p57Kip2 was localized primarily in cell nuclei and positive cells formed two distinct patterns including wide dispersion and laminar aggregation that were brain region-specific. From E12.5 to E16.5, p57Kip2 expression was detected mainly in ventricular zone (VZ) and/or mantle zone of hippocampus, septum, basal ganglia, thalamus, hypothalamus, midbrain, and spinal cord. After E18.5, p57Kip2 was detected in select regions undergoing differentiation. The p57Kip2 expression was also compared with regional transcription factors, including Ngn2, Nkx2.1, and Pax6. Time course studies performed in diencephalon showed that p57Kip2 immunoreactivity colocalized with BrdU at 8 hr in nuclei exhibiting the wide dispersion pattern, whereas colocalization in the laminar pattern occurred only later. Moreover, p57Kip2 frequently colocalized with neuronal marker, beta-III tubulin. Finally, we characterized relationships of p57Kip2 to CDK inhibitor p27Kip1: in proliferative regions, p57Kip2 expression preceded p27Kip1 as cells underwent differentiation, though the proteins colocalized in substantial numbers of cells, suggesting potentially related yet distinct functions of Cip/Kip family members during neurogenesis. Our observations that p57Kip2 exhibits nuclear expression as precursors exit the cell cycle and begin expressing neuronal characteristics suggests that the CDK inhibitor contributes to regulating the transition from proliferation to differentiation during brain development.
机译:在发展中枢神经系统中,在神经发生过程中,多种机制使细胞周期退出并分化。细胞周期蛋白依赖性激酶(CDK)抑制剂p57Kip2控制着许多组织从增殖到分化的转变,但是在大脑发育中的作用仍然不确定。为了表征可能的功能,我们使用免疫组织化学结合增殖和分化的标志物定义了在胚胎(E)第12.5至20.5天的大鼠大脑中p57Kip2蛋白的表达。 p57Kip2主要定位在细胞核中,阳性细胞形成两种不同的模式,包括脑区域特异性的宽分散和层状聚集。从E12.5到E16.5,p57Kip2表达主要在海马,间隔,基底神经节,丘脑,下丘脑,中脑和脊髓的心室区(VZ)和/或套膜区中检测到。在E18.5之后,在经历分化的特定区域中检测到p57Kip2。还将p57Kip2表达与包括Ngn2,Nkx2.1和Pax6在内的区域转录因子进行了比较。在间脑中进行的时程研究表明,p57Kip2免疫反应性在8小时时与BrdU在细胞核中共定位,表现出较宽的分散模式,而在层状模式中共定位仅在以后发生。此外,p57Kip2经常与神经元标记物β-III微管蛋白共定位。最后,我们表征了p57Kip2与CDK抑制剂p27Kip1的关系:在增殖区域,随着细胞的分化,p57Kip2的表达先于p27Kip1,尽管蛋白质在大量细胞中共定位,提示在神经发生过程中Cip / Kip家族成员的潜在相关功能却有所不同。我们的观察结果显示p57Kip2在前体退出细胞周期并开始表达神经元特征时显示出核表达,这表明CDK抑制剂有助于调节大脑发育过程中从增殖到分化的过渡。

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