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PU.1和NFATc1介导小鼠β3整合素启动子的破骨细胞诱导作用。

PU.1 and NFATc1 mediate osteoclastic induction of the mouse beta3 integrin promoter.

作者信息

Crotti Tania N, Sharma Sudarshana M, Fleming Joseph D, Flannery Merrilee R, Ostrowski Michael C, Goldring Steven R, McHugh Kevin P

机构信息

The New England Baptist Bone and Joint Institute, Department of Rheumatology, Beth Israel Deaconess Medical Center, and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Cell Physiol. 2008 Jun;215(3):636-44. doi: 10.1002/jcp.21344.

Abstract

Expression of the alpha(v)beta(3) integrin is required for normal osteoclast function. We previously showed that an evolutionary conserved NFATc1 binding site is required for RANKL induction and NFATc1 transactivation of the human beta(3) promoter. The mechanism conferring specificity for RANKL induction and NFATc1 transduction of the beta(3) gene in osteoclast differentiation is unclear since NFATc1 is expressed and activated in numerous cell types that do not express the beta(3) gene. PU.1 is an ETS family transcription factor in myeloid cells associated with expression of various osteoclast genes. The present study investigates the role of NFATc1 in concert with PU.1 in osteoclast-specific transcription of the mouse beta(3) integrin gene. The mouse beta(3) promoter was transactivated by NFATc1 in RAW264.7 cells and deletion or mutation of either of the conserved NFAT and PU.1 binding sites abrogated transactivation. NFATc1 transactivation of the mouse beta(3) promoter was specifically dependent on co-transfected PU.1 in HEK293 cells, to the exclusion of other ETS family members. Direct binding of NFATc1 and PU.1 to their cognate sequences was demonstrated by EMSA and NFATc1 and PU.1 occupy their cognate sites in RANKL-treated mouse marrow precursors in chromatin immuno-precipitation (ChIP) assays. TAT-mediated transduction with dominant-negative NFATc1 dose-dependently blocked endogenous expression of the mouse beta(3) integrin and the formation of TRAP positive multinucleated cells in RANKL-treated mouse macrophages. These data provide evidence that NFATc1, in concert with PU.1, are involved in regulation of beta(3) integrin expression during osteoclast differentiation and suggest that PU.1 confers specificity to the NFATc1 response to macrophage lineage cells.

摘要

α(v)β(3)整合素的表达是破骨细胞正常功能所必需的。我们先前表明,人类β(3)启动子的RANKL诱导和NFATc1反式激活需要一个进化保守的NFATc1结合位点。由于NFATc1在许多不表达β(3)基因的细胞类型中表达并被激活,因此在破骨细胞分化过程中赋予β(3)基因RANKL诱导和NFATc1转导特异性的机制尚不清楚。PU.1是髓系细胞中的一种ETS家族转录因子,与各种破骨细胞基因的表达相关。本研究探讨了NFATc1与PU.1协同作用在小鼠β(3)整合素基因破骨细胞特异性转录中的作用。在RAW264.7细胞中,NFATc1可反式激活小鼠β(3)启动子,而保守的NFAT和PU.1结合位点中的任何一个缺失或突变都会消除反式激活。在HEK293细胞中,小鼠β(3)启动子的NFATc1反式激活特别依赖于共转染的PU.1,而排除了其他ETS家族成员。通过电泳迁移率变动分析(EMSA)证明了NFATc1和PU.1与其同源序列的直接结合,并且在染色质免疫沉淀(ChIP)分析中,NFATc1和PU.1占据了RANKL处理的小鼠骨髓前体细胞中的同源位点。用显性负性NFATc1进行TAT介导的转导以剂量依赖性方式阻断了RANKL处理的小鼠巨噬细胞中内源性小鼠β(3)整合素的表达以及TRAP阳性多核细胞的形成。这些数据提供了证据,表明NFATc1与PU.1协同参与破骨细胞分化过程中β(3)整合素表达的调节,并表明PU.1赋予NFATc1对巨噬细胞谱系细胞反应的特异性。

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