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甲状旁腺激素相关蛋白(PTHrP)信号传导作用于细胞周期蛋白D1并诱导成骨细胞生长停滞。

PTHrP signaling targets cyclin D1 and induces osteoblastic cell growth arrest.

作者信息

Datta Nabanita S, Chen Chen, Berry Janice E, McCauley Laurie K

机构信息

Department of Periodontics/Prevention/Geriatrics, University of Michigan, Ann Arbor, Michigan 48109-1078, USA.

出版信息

J Bone Miner Res. 2005 Jun;20(6):1051-64. doi: 10.1359/JBMR.050106. Epub 2005 Jan 18.

Abstract

UNLABELLED

PTHrP control of the MC3T3-E1 cell cycle machinery showed that, during differentiation, PTHrP induced G1 growth arrest. Cyclin D1 was a critical mediator as a downstream effector of cAMP, PKC, and MAPK signaling, and the process was PKA-independent. The involvement of JunB has been found critical for PTHrP effects.

INTRODUCTION

PTH-related protein (PTHrP) has been implicated in the control of bone cell turnover, but the mechanisms underlying its effect on osteoblast proliferation and differentiation have not been clearly defined. The mechanisms by which PTHrP impacts cell cycle proteins and the role of signaling pathways in differentiated osteoblasts were studied.

MATERIALS AND METHODS

To elucidate the role of PTHrP, flow cytometric analyses were performed using MC3T3-E1 and primary mouse calvarial cells. Relative protein abundance (Western blot), physical association of partners (immunoprecipitation), and kinase activities (in vitro kinase assays using either GST-Rb or H1-histone as substrates) of cell cycle-associated proteins in vehicle and PTHrP-treated 7-day differentiated cells were determined. ELISA and/or Northern blot analyses were done to evaluate JunB and cyclin D1 expression. SiRNA-mediated gene silencing experiments were performed to silence JunB protein. Finally, inhibitors of cAMP, protein kinase A (PKA), protein kinase C (PKC), and mitogen-activated protein kinase (MAPK) were used to determine involvement of different signaling pathways.

RESULTS

PTHrP inhibited cyclin D1 protein expression 7-fold in a dose- and time-dependent manner and increased the level of p16 protein in differentiated osteoblasts. Additionally, PTHrP reduced cyclin D1-CDK4/CDK6 and CDK1 kinase activities. Forskolin, a cAMP agonist, mimicked PTHrP action, and the PKC inhibitor, GF109203X, slightly blocked downregulation of cyclin D1, implying involvement of both cAMP and PKC. U0126, a MAPK inhibitor, alone decreased cyclin D1 protein, suggesting that the basal cyclin D1 protein is MAPK dependent. H-89, a PKA inhibitor, did not alter the effect of PTHrP on cyclin D1, suggesting a PKA-independent mechanism. Finally, expression of JunB, an activating protein-1 transcription factor, was significantly upregulated, and silencing JunB (siRNA) partially reversed the cyclin D1 response, implying involvement of JunB in the PTHrP-mediated growth arrest of MC3T3-E1 cells.

CONCLUSION

PTHrP upregulates JunB and reduces cyclin D1 expression while inducing G1 cell cycle arrest in differentiated osteoblasts. Such regulation could be an important determinant of the life span and bone-forming activity of osteoblasts.

摘要

未标记

甲状旁腺激素相关蛋白(PTHrP)对MC3T3-E1细胞周期机制的调控表明,在分化过程中,PTHrP诱导G1期生长停滞。细胞周期蛋白D1作为环磷酸腺苷(cAMP)、蛋白激酶C(PKC)和丝裂原活化蛋白激酶(MAPK)信号传导的下游效应物,是一个关键的介质,且该过程不依赖蛋白激酶A(PKA)。已发现JunB的参与对PTHrP的作用至关重要。

引言

甲状旁腺激素相关蛋白(PTHrP)与骨细胞周转的控制有关,但其对成骨细胞增殖和分化影响的潜在机制尚未明确界定。研究了PTHrP影响细胞周期蛋白的机制以及信号通路在分化成骨细胞中的作用。

材料与方法

为阐明PTHrP的作用,使用MC3T3-E1细胞和原代小鼠颅骨细胞进行了流式细胞术分析。测定了在未处理和PTHrP处理的7天分化细胞中,细胞周期相关蛋白的相对蛋白丰度(蛋白质印迹法)、相互作用伙伴的物理结合(免疫沉淀法)以及激酶活性(使用谷胱甘肽-S-转移酶-Rb或H1-组蛋白作为底物的体外激酶测定法)。进行酶联免疫吸附测定(ELISA)和/或Northern印迹分析以评估JunB和细胞周期蛋白D1的表达。进行小干扰RNA(siRNA)介导的基因沉默实验以沉默JunB蛋白。最后,使用cAMP、蛋白激酶A(PKA)抑制剂、蛋白激酶C(PKC)和丝裂原活化蛋白激酶(MAPK)抑制剂来确定不同信号通路的参与情况。

结果

PTHrP以剂量和时间依赖性方式抑制细胞周期蛋白D1蛋白表达达7倍,并增加分化成骨细胞中p16蛋白的水平。此外,PTHrP降低了细胞周期蛋白D1-CDK4/CDK6和CDK1激酶活性。cAMP激动剂福斯高林模拟了PTHrP的作用,PKC抑制剂GF109203X略微阻断了细胞周期蛋白D1的下调,这意味着cAMP和PKC均参与其中。MAPK抑制剂U0126单独使用可降低细胞周期蛋白D1蛋白水平,表明基础细胞周期蛋白D1蛋白依赖于MAPK。PKA抑制剂H-89并未改变PTHrP对细胞周期蛋白D1的作用,提示存在不依赖PKA的机制。最后,活化蛋白-1转录因子JunB的表达显著上调,沉默JunB(siRNA)可部分逆转细胞周期蛋白D1的反应,这意味着JunB参与了PTHrP介导的MC3T3-E1细胞生长停滞。

结论

PTHrP上调JunB并降低细胞周期蛋白D1表达,同时在分化的成骨细胞中诱导G1期细胞周期停滞。这种调节可能是成骨细胞寿命和骨形成活性的重要决定因素。

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