Bidwell J, van Wijnen A, Banerjee C, Fey E, Merriman H, Penman S, Stein J, Lian J, Stein G
Department of Cell Biology, University of Massachusetts, Worcester 01655.
Endocrinology. 1994 Apr;134(4):1738-44. doi: 10.1210/endo.134.4.8137738.
PTH is a mediator of skeletal development and remodeling that influences gene expression in osteoblastic cells. It is well established that PTH modulates the activity of membrane-associated second messenger signal transduction pathways. In these studies we have addressed the potential contribution of components of cell structure to the integration of PTH-related regulatory signals that influence the expression of bone cell genes. Chronic treatment of ROS 17/2.8 rat osteosarcoma cells with PTH is accompanied by changes in gene expression that are at least in part transcriptionally controlled. To explore the involvement of nuclear architecture in PTH-responsive modifications in gene expression, we investigated changes in the nuclear matrix after PTH treatment. Consistent with a role for the nuclear matrix in determining spatial organization and topology of chromatin as well as in the localization and targeting of transcription factors, we observed PTH-associated changes in a 200-kilodalton nuclear matrix protein in response to PTH. A significant down-regulation of synthesis was observed when nuclear matrix proteins were resolved electrophoretically in two-dimensional gels. This protein was restricted to the nuclear matrix and was not detected in the chromatin or cytoskeletal cellular fractions. These alterations in nuclear matrix proteins that occur after PTH treatment in osteosarcoma cells were phenotype related. They did not occur in UMR-106 POL or H4 hepatoma cells. Our findings support a role for the nuclear matrix in transducing PTH-mediated regulatory signals to facilitate the extent to which genes in osteoblasts are transcribed.
甲状旁腺激素(PTH)是骨骼发育和重塑的介质,可影响成骨细胞中的基因表达。众所周知,PTH可调节膜相关第二信使信号转导途径的活性。在这些研究中,我们探讨了细胞结构成分对影响骨细胞基因表达的PTH相关调节信号整合的潜在贡献。用PTH长期处理ROS 17/2.8大鼠骨肉瘤细胞会伴随基因表达的变化,这些变化至少部分受转录控制。为了探究核结构在PTH反应性基因表达修饰中的作用,我们研究了PTH处理后核基质的变化。与核基质在确定染色质的空间组织和拓扑结构以及转录因子的定位和靶向中的作用一致,我们观察到响应PTH后200千道尔顿核基质蛋白出现了与PTH相关的变化。当在二维凝胶中对核基质蛋白进行电泳分离时,观察到合成显著下调。这种蛋白质局限于核基质,在染色质或细胞骨架细胞组分中未检测到。骨肉瘤细胞经PTH处理后核基质蛋白的这些改变与表型相关。它们在UMR-106 POL或H4肝癌细胞中未出现。我们的研究结果支持核基质在转导PTH介导的调节信号以促进成骨细胞中基因转录程度方面的作用。