Montecino M, Pockwinse S, Lian J, Stein G, Stein J
Department of Cell Biology, University of Massachusetts Medical Center, Worcester 01655.
Biochemistry. 1994 Jan 11;33(1):348-53. doi: 10.1021/bi00167a045.
Nuclease hypersensitive sites were mapped in the proximal promoter of the osteocalcin gene, which is expressed only in bone cells exhibiting the mature osteoblast phenotype. Nuclei from proliferating and confluent rat osteosarcoma (ROS) 17/2.8 cells were subjected to DNase I digestion, and hypersensitivity was assayed by the indirect end-labeling method, using osteocalcin gene probes. Hypersensitive sites were detected in two promoter domains: -590 to -390, which spans the vitamin D responsive element, and -170 to -70, which spans the TATA box and the CCAAT-containing OC box domain. Together, these elements regulate basal and vitamin D enhanced osteocalcin gene transcription. We observed a parallel relationship between the intensity of bands representing the hypersensitive sites and the extent to which the osteocalcin gene is transcribed. Both in confluent cultures and in response to vitamin D, when osteocalcin transcription was upregulated, the hypersensitive bands were significantly intensified. Additionally, the bands were decreased under conditions that downregulate osteocalcin gene transcription. A functional relationship between the presence of hypersensitive sites and osteocalcin gene transcription is further supported by the absence of hypersensitivity in nonosseous cells that do not express osteocalcin, although these proliferating cells exhibited hypersensitivity in a cell cycle regulated histone gene promoter. Our results suggest the involvement of chromatin structure in transcriptional responsiveness of the osteocalcin gene to physiologic modulation.
在骨钙素基因的近端启动子区域绘制了核酸酶超敏位点图谱,该基因仅在表现出成熟成骨细胞表型的骨细胞中表达。对增殖期和汇合期的大鼠骨肉瘤(ROS)17/2.8细胞的细胞核进行DNA酶I消化,并使用骨钙素基因探针通过间接末端标记法检测超敏性。在两个启动子区域检测到超敏位点:跨越维生素D反应元件的-590至-390区域,以及跨越TATA盒和含CCAAT的OC盒结构域的-170至-70区域。这些元件共同调节基础的和维生素D增强的骨钙素基因转录。我们观察到代表超敏位点的条带强度与骨钙素基因转录程度之间存在平行关系。在汇合培养物中以及对维生素D的反应中,当骨钙素转录上调时,超敏条带显著增强。此外,在下调骨钙素基因转录的条件下,条带减弱。在不表达骨钙素的非骨细胞中不存在超敏性,进一步支持了超敏位点的存在与骨钙素基因转录之间的功能关系,尽管这些增殖细胞在细胞周期调控的组蛋白基因启动子中表现出超敏性。我们的结果表明染色质结构参与了骨钙素基因对生理调节的转录反应。