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Bone-Specific Expression of the Alpha Chain of the Nascent Polypeptide-Associated Complex, a Coactivator Potentiating c-Jun-Mediated Transcription

机译:新生多肽相关复合物,增强c-Jun介导转录的共激活子的α链的骨特异性表达。

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The alpha chain of the nascent polypeptide-associated complex (α-NAC) coactivator was shown to potentiate the activity of the homodimeric c-Jun activator, while transcription mediated by the c-Fos/c-Jun heterodimer was unaffected. The use of deletion mutants in pull-down assays revealed that α-NAC interacted with amino acids 1 to 89 of the c-Jun protein and that the coactivator could interact with both the unphosphorylated and the serine 73-phosphorylated form of c-Jun. N-terminal-deleted c-Jun protein failed to interact with α-NAC in mammalian two-hybrid assays, while mutant c-Jun proteins lacking the leucine zipper or the basic domain retained interaction with α-NAC in vivo. Kinetics studies with purified c-Jun homodimer and recombinant α-NAC proteins allowed determination of the mechanism of coactivation by α-NAC: the coactivator stabilized the AP-1 complex formed by the c-Jun homodimer on its DNA recognition sequence through an eightfold reduction in the dissociation constant (kd ) of the complex. This effect of α-NAC was specific, because α-NAC could not stabilize the interactions of JunB or Sp1 with their cognate binding sites. Interestingly, the expression of α-NAC was first detected at 14.5 to 15 days postconception, concomitantly with the onset of ossification during embryogenesis. The α-NAC protein was specifically expressed in differentiated osteoblasts at the centers of ossification. Thus, the α-NAC gene product exhibits the properties of a developmentally regulated, bone-specific transcriptional coactivator.
机译:新生多肽相关复合物(α-NAC)共激活因子的α链显示出可增强同型二聚c-Jun激活剂的活性,而c-Fos / c-Jun异二聚体介导的转录不受影响。在下拉测定法中使用缺失突变体表明,α-NAC与c-Jun蛋白的1至89位氨基酸相互作用,并且该共激活剂可以与c-Jun的未磷酸化和丝氨酸73-磷酸化形式相互作用。在哺乳动物双杂交试验中,N末端缺失的c-Jun蛋白无法与α-NAC相互作用,而缺少亮氨酸拉链或基本域的突变体c-Jun蛋白则在体内与α-NAC相互作用。使用纯化的c-Jun同型二聚体和重组α-NAC蛋白进行的动力学研究可以确定由α-NAC进行共激活的机制:该共激活剂通过八倍还原作用将c-Jun同型二聚体在其DNA识别序列上形成的AP-1复合物稳定化。在复合物的解离常数( k d )中。 α-NAC的这种作用是特定的,因为α-NAC无法稳定JunB或Sp1与它们的同源结合位点的相互作用。有趣的是,α-NAC的表达首先在受孕后的14.5至15天被检测到,并伴随着胚胎发生过程中的骨化。 α-NAC蛋白在骨化中心的分化成骨细胞中特异性表达。因此,α-NAC基因产物表现出发育调节的骨特异性转录共激活因子的特性。

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