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由MSX2相互作用核靶标介导的Runx2反式激活需要同源结构域相互作用蛋白激酶-3。

Runx2 trans-activation mediated by the MSX2-interacting nuclear target requires homeodomain interacting protein kinase-3.

作者信息

Sierra Oscar L, Towler Dwight A

机构信息

Washington University School of Medicine, Internal Medicine-Endocrinology/Metabolism, Campus Box 8301, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.

出版信息

Mol Endocrinol. 2010 Jul;24(7):1478-97. doi: 10.1210/me.2010-0029. Epub 2010 May 19.

Abstract

Runt-related transcription factor 2 (Runx2) and muscle segment homeobox homolog 2-interacting nuclear target (MINT) (Spen homolog) are transcriptional regulators critical for mammalian development. MINT enhances Runx2 activation of osteocalcin (OC) fibroblast growth factor (FGF) response element in an FGF2-dependent fashion in C3H10T1/2 cells. Although the MINT N-terminal RNA recognition motif domain contributes, the muscle segment homeobox homolog 2-interacting domain is sufficient for Runx2 activation. Intriguingly, Runx1 cannot replace Runx2 in this assay. To better understand this Runx2 signaling cascade, we performed structure-function analysis of the Runx2-MINT trans-activation relationship. Systematic truncation and domain swapping in Runx1:Runx2 chimeras identified that the unique Runx2 activation domain 3 (AD3), encompassed by residues 316-421, conveys MINT+FGF2 trans-activation in transfection assays. Ala mutagenesis of Runx2 Ser/Thr residues identified that S301 and T326 in AD3 are necessary for full MINT+FGF2 trans-activation. Conversely, phosphomimetic Asp substitution of these AD3 Ser/Thr residues enhanced activation by MINT. Adjacent Pro residues implicated regulation by a proline-directed protein kinase (PDPK). Systematic screening with PDPK inhibitors identified that the casein kinase-2/homeodomain-interacting protein kinase (HIPK)/dual specificity tyrosine phosphorylation regulated kinase inhibitor 2-dimethylamino-4,5,6,7-tetrabromo-1H-benzimidazole (DMAT), but not ERK, c-Jun N-terminal kinase, p38MAPK, or other casein kinase-2 inhibitors, abrogated Runx2-, MINT-, and FGF2-activation. Systematic small interfering RNA-mediated silencing of DMAT-inhibited PDPKs revealed that HIPK3 depletion reduced MINT+FGF2-dependent activation of Runx2. HIPK3 and Runx2 coprecipitate after in vitro transcription-translation, and recombinant HIPK3 recognizes Runx2 AD3 as kinase substrate. Furthermore, DMAT treatment and HIPK3 RNAi inhibited MINT+FGF2 activation of Runx2 AD3, and nuclear HIPK3 colocalized with MINT. HIPK3 antisense oligodeoxynucleotide selectively reduced Runx2 protein accumulation and OC gene expression in C3H10T1/2 cells. Thus, HIPK3 participates in MINT+FGF2 regulation of Runx2 AD3 activity and controls Runx2-dependent OC expression.

摘要

runt相关转录因子2(Runx2)和肌肉节段同源盒同源物2相互作用核靶标(MINT)(Spen同源物)是哺乳动物发育所必需的转录调节因子。在C3H10T1/2细胞中,MINT以FGF2依赖的方式增强Runx2对骨钙素(OC)成纤维细胞生长因子(FGF)反应元件的激活作用。虽然MINT的N端RNA识别基序结构域有作用,但肌肉节段同源盒同源物2相互作用结构域足以激活Runx2。有趣的是,在该实验中Runx1不能替代Runx2。为了更好地理解这种Runx2信号级联反应,我们对Runx2-MINT反式激活关系进行了结构-功能分析。在Runx1:Runx2嵌合体中进行系统的截短和结构域交换,确定了由316-421位残基组成的独特的Runx2激活结构域3(AD3),在转染实验中传递MINT+FGF2反式激活作用。对Runx2的丝氨酸/苏氨酸残基进行丙氨酸诱变,确定AD3中的S301和T326是MINT+FGF2完全反式激活所必需的。相反,这些AD3丝氨酸/苏氨酸残基的模拟磷酸化天冬氨酸替代增强了MINT介导的激活作用。相邻的脯氨酸残基提示受脯氨酸定向蛋白激酶(PDPK)调节。用PDPK抑制剂进行系统筛选,确定酪蛋白激酶-2/同源结构域相互作用蛋白激酶(HIPK)/双特异性酪氨酸磷酸化调节激酶抑制剂2-二甲基氨基-4,5,6,7-四溴-1H-苯并咪唑(DMAT),而非ERK、c-Jun N端激酶、p38丝裂原活化蛋白激酶或其他酪蛋白激酶-2抑制剂,可消除Runx2、MINT和FGF2的激活作用。通过系统性小干扰RNA介导的DMAT抑制的PDPK沉默,发现HIPK3缺失降低了MINT+FGF2依赖的Runx2激活。体外转录-翻译后,HIPK3和Runx2共沉淀,重组HIPK3将Runx2 AD3识别为激酶底物。此外,DMAT处理和HIPK3 RNA干扰抑制了MINT+FGF2对Runx2 AD3的激活作用,并使核内HIPK3与MINT共定位。HIPK3反义寡脱氧核苷酸选择性降低了C3H10T1/2细胞中Runx2蛋白积累和OC基因表达。因此,HIPK3参与MINT+FGF2对Runx2 AD3活性的调节,并控制Runx2依赖的OC表达。

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