首页> 外文期刊>Journal of cell biology >A mechanism generating heterogeneity in thyroid epithelial cells: suppression of the thyrotropin/cAMP-dependent mitogenic pathway after cell division induced by cAMP-independent factors
【24h】

A mechanism generating heterogeneity in thyroid epithelial cells: suppression of the thyrotropin/cAMP-dependent mitogenic pathway after cell division induced by cAMP-independent factors

机译:在甲状腺上皮细胞中产生异质性的机制:cAMP依赖性因子诱导的细胞分裂后促甲状腺激素/ cAMP依赖性有丝分裂途径的抑制

获取原文
           

摘要

The mechanisms that generate the intercellular heterogeneity of functional and proliferation responses in a tissue are generally unknown. In the thyroid gland, this heterogeneity is peculiarly marked and it has been proposed that it could result from the coexistence of genetically different subpopulations of thyrocytes. To evaluate the heterogeneity of proliferative responses in primary culture of dog thyrocytes, we asked whether the progeny of cells having incorporated 3H thymidine in a first period of the culture could have a distinct proliferative fate during a second labeling period (incorporation of bromodeoxyuridine revealed by immunofluorescence staining combined with autoradiography of 3H thymidine). No growth-prone subpopulations were detected and the great majority of cells were found to response to either EGF or thyrotropin (TSH) through cAMP. However, only a fraction of cells replicated DNA at one given period and a clustered distribution of labeled cells within the monolayer, which was different for thymidine- or bromodeoxyuridine-labeled cells, indicates some local and temporal synchrony of neighboring cells. The TSH/cAMP-dependent division of thyrocytes preserved their responsiveness to both TSH and EGF mitogenic pathways. By contrast, cells that had divided during a momentary treatment with EGF lost the mitogenic sensitivity to TSH and cAMP (forskolin) but retained the sensitivity to EGF. Since cells that had not divided kept responsiveness to both TSH and EGF, this generated two subpopulations differing in mitogen responsiveness. The extinction of the TSH/cAMP-dependent mitogenic pathway was delayed (1-2 d) but stable. Cell fusion experiments suggest it was due to the induction of a diffusible intracellular inhibitor of the cAMP-dependent growth pathway. These findings provide a useful model of the generation of a qualitative heterogeneity in the cell sensitivity to various mitogens, which presents analogies with other epigenetic processes, such as differentiation and senescence. They shed a new light on the significance of the coexistence of different modes of cell cycle controls in thyroid epithelial cells.
机译:在组织中产生功能和增殖反应的细胞间异质性的机制通常是未知的。在甲状腺中,这种异质性是特别明显的,有人提出,这可能是由于甲状腺细胞遗传上不同亚群的共存所致。为了评估犬甲状腺细胞原代培养中增殖反应的异质性,我们询问在培养的第一阶段掺入3H胸腺嘧啶核苷的细胞的子代在第二个标记期间是否会具有明显的增殖命运(免疫荧光揭示掺入溴脱氧尿嘧啶核苷)染色结合3H胸腺嘧啶的放射自显影)。未检测到易于生长的亚群,并且发现大多数细胞通过cAMP对EGF或促甲状腺素(TSH)产生反应。但是,只有一小部分细胞在给定的时间段内复制DNA,并且单层内标记细胞的簇状分布与胸腺嘧啶核苷或溴脱氧尿苷标记的细胞不同,表明邻近细胞在局部和时间上具有同步性。 TSH / cAMP依赖性的甲状腺细胞分裂保留了它们对TSH和EGF有丝分裂途径的响应。相比之下,在用EGF短暂治疗期间分裂的细胞失去了对TSH和cAMP(福司可林)的有丝分裂敏感性,但保留了对EGF的敏感性。由于未分裂的细胞同时保持对TSH和EGF的反应性,因此产生了两个有丝分裂原反应性不同的亚群。 TSH / cAMP依赖的有丝分裂途径的消失被延迟(1-2天),但稳定。细胞融合实验表明,这是由于cAMP依赖性生长途径的可扩散细胞内抑制剂的诱导。这些发现为细胞对各种促分裂原的敏感性定性异质性的产生提供了有用的模型,这与其他表观遗传过程(例如分化和衰老)具有相似性。他们为甲状腺上皮细胞中不同模式的细胞周期控制共存的重要性提供了新的思路。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号