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Subcellular localization of IRS-1 in IGF-I-mediated chondrogenic proliferation, differentiation and hypertrophy of bone marrow mesenchymal stem cells.

机译:IRS-1在IGF-1介导的骨髓间充质干细胞的软骨形成增殖,分化和肥大中的亚细胞定位。

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Bone marrow derived mesenchymal stem cells (BM-MSC) can differentiate into chondrocytes. Understanding the mechanisms and growth factors that control the MSC stemness is critical to fully implement their therapeutic use in cartilage diseases. The activated type 1 insulin-like growth factor receptor (IGF-IR), interacting with the insulin receptor substrate-1 (IRS-1), can induce cancer cell proliferation and transformation. In cancer or transformed cells, IRS-1 has been shown to localize in the cytoplasm where it activates the canonical Akt pathway, as well as in the nucleus where it binds to nuclear proteins. We have previously demonstrated that IGF-I has distinct time-dependent effect on primary BM-MSC chondrogenic pellets: initially (2-day culture), IGF-I induces proliferation; subsequently, IGF-I promotes chondrocytic differentiation (7-day culture). In the present study, by using MSC from the BM of IRS-1(- / - ) mice we show that IRS-1 mediates almost 50% of the IGF-I mitogenic response and the MAPK-MEK/ERK signalling accounts for the other 50%. After stimulation with IGF-I, we found that in 2-day old human and mouse derived BM-MSC pellets, IRS-1 (total and phosphorylated) is nuclearly localized and that proliferation prevails over differentiation. The IGF-I mitogenic effect is Akt-independent. In 7-day MSC pellets, IGF-I stimulates the chondrogenic differentiation of MSC into chondrocytes, pre-hypertrophic and hypertrophic chondrocytes and IRS-1 accumulates in the cytoplasm. IGF-I-dependent differentiation is exclusively Akt-dependent. Our data indicate that in the physiologically relevant model of primary cultured MSC, IGF-I induces a temporally regulated nuclear or cytoplasmic localization of IRS-1 that correlate with the transition from proliferation to chondrogenic differentiation.
机译:骨髓来源的间充质干细胞(BM-MSC)可以分化为软骨细胞。了解控制MSC干的机制和生长因子对于在软骨疾病中充分实施其治疗用途至关重要。活化的1型胰岛素样生长因子受体(IGF-IR)与胰岛素受体底物1(IRS-1)相互作用,可以诱导癌细胞增殖和转化。在癌症或转化细胞中,IRS-1已显示位于激活其经典Akt途径的细胞质中,以及与核蛋白结合的细胞核中。先前我们已经证明,IGF-I对原代BM-MSC软骨形成颗粒具有明显的时间依赖性作用:最初(2天培养),IGF-I诱导增殖;随后,IGF-I促进软骨细胞分化(7天培养)。在本研究中,通过使用IRS-1(-/-)小鼠骨髓中的MSC,我们显示IRS-1介导了IGF-1促有丝分裂反应的近50%,而MAPK-MEK / ERK信号又50%。用IGF-I刺激后,我们发现在2天大的人和小鼠衍生的BM-MSC沉淀物中,IRS-1(全部和磷酸化)位于核内,增殖优先于分化。 IGF-1的促有丝分裂作用是不依赖于Akt的。在7天的MSC沉淀中,IGF-I刺激MSC软骨分化为软骨细胞,肥大性和肥大性软骨细胞,IRS-1积累在细胞质中。 IGF-I依赖的分化完全是Akt依赖的。我们的数据表明,在原代培养的MSC的生理相关模型中,IGF-I诱导了IRS-1的时间调控核或细胞质定位,该定位与从增殖到软骨形成分化的转变相关。

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