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成骨细胞中整合素连接激酶(ILK)的失活会增加矿化。

Inactivation of the integrin-linked kinase (ILK) in osteoblasts increases mineralization.

机构信息

Research Unit, Shriners Hospital for Children, Montreal, Quebec H3G 1A6, Canada; Department of Human Genetics, McGill University, Montreal, Quebec H3A 2T5, Canada.

出版信息

Gene. 2014 Jan 1;533(1):246-52. doi: 10.1016/j.gene.2013.09.074. Epub 2013 Oct 2.

DOI:10.1016/j.gene.2013.09.074
PMID:24095779
Abstract

In osteoblasts, Integrin-Linked Kinase (ILK)-dependent phosphorylation of the cJUN transcriptional coactivator, αNAC, induces the nuclear accumulation of the coactivator and potentiates cJUN-dependent transcription. Mutation of the ILK phosphoacceptor site within the αNAC protein leads to cytoplasmic retention of the coactivator and cell-autonomous increases in osteoblastic activity. In order to gain further insight into the ILK-αNAC signaling cascade, we inactivated ILK using RNA knockdown in osteoblastic cells and engineered mice with specific ablation of ILK in osteoblasts. ILK knockdown in MC3T3-E1 osteoblast-like cells reduced phosphorylation of its downstream target glycogen synthase kinase 3β (GSK3β), which led to cytoplasmic retention of αNAC and increased mineralization with augmented expression of the osteoblastic differentiation markers, pro-α1(I) collagen (col1A1), Bone Sialoprotein (Bsp) and Osteocalcin (Ocn). Cultured ILK-deficient primary osteoblasts also showed increased cytoplasmic αNAC levels, and augmented mineralization with higher Runx2, Col1a1 and Bsp expression. Histomorphometric analysis of bones from mutant mice with ILK-deficient osteoblasts (Col1-Cre;Ilk(-/fl)) revealed transient changes, with increased bone volume in newborn animals that was corrected by two weeks of age. Our data suggest that the ILK-αNAC cascade acts to reduce the pace of osteoblast maturation. We propose that in vivo, functional redundancy is able to compensate for the loss of ILK activity, leading to the absence of an obvious phenotype when osteoblast-specific Ilk-deficient mice reach puberty.

摘要

在成骨细胞中,整合素连接激酶(ILK)依赖性磷酸化 cJUN 转录共激活因子αNAC,诱导共激活因子的核积累,并增强 cJUN 依赖性转录。在αNAC 蛋白内的 ILK 磷酸化接受位点突变导致共激活因子的细胞质保留,并导致成骨细胞活性的自主增加。为了进一步深入了解 ILK-αNAC 信号级联,我们使用 RNA 敲低在成骨细胞中失活 ILK,并在成骨细胞中特异性缺失 ILK 的工程小鼠中进行了实验。MC3T3-E1 成骨样细胞中 ILK 的敲低降低了其下游靶标糖原合酶激酶 3β(GSK3β)的磷酸化,导致αNAC 的细胞质保留,并增加了矿化,同时增加了成骨细胞分化标志物的表达,如前胶原 I 链(col1A1)、骨涎蛋白(Bsp)和骨钙素(Ocn)。培养的缺乏 ILK 的原代成骨细胞也显示出细胞质αNAC 水平增加,并且矿化增加,Runx2、Col1a1 和 Bsp 表达增加。缺乏 ILK 的成骨细胞(Col1-Cre;Ilk(-/fl))的突变小鼠骨的组织形态计量学分析显示出短暂的变化,新生动物的骨体积增加,两周龄时得到纠正。我们的数据表明,ILK-αNAC 级联作用是为了降低成骨细胞成熟的速度。我们提出,在体内,功能冗余能够补偿 ILK 活性的丧失,导致当成骨细胞特异性缺乏 Ilk 的小鼠达到青春期时,缺乏明显的表型。

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