首页> 美国卫生研究院文献>Journal of Bone and Mineral Research >IGF-1R Signaling in Chondrocytes Modulates Growth Plate Development by Interacting With the PTHrP/Ihh Pathway
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IGF-1R Signaling in Chondrocytes Modulates Growth Plate Development by Interacting With the PTHrP/Ihh Pathway

机译:软骨细胞中的IGF-1R信号传导通过与PTHrP / Ihh途径相互作用来调节生长板的发育。

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摘要

Systemic derangements and perinatal death of generalized insulin-like growth factor 1 (IGF-1) and IGF-1 receptor (IGF-1R) knockout mice preclude definitive assessment of IGF-1R actions in growth-plate (GP) chondrocytes. We generated cartilage-specific Igf1r knockout (CartIgf1r−/−) mice to investigate local control of chondrocyte differentiation in the GP by this receptor. These mice died shortly after birth and showed disorganized chondrocyte columns, delayed ossification and vascular invasion, decreased cell proliferation, increased apoptosis, and increased expression of parathyroid hormone-related protein (Pthrp) RNA and protein in their GPs. The increased Pthrp expression in the knockout GPs likely was due to an increase in gene transcription, as determined by the increased activity of a LacZ reporter that was inserted downstream of the endogenous PTHrP promoter and bred into the knockout mice. To circumvent the early death of CartIgf1r−/− mice and investigate the role of IGF-1R during postnatal growth, we made tamoxifen (Tam)–inducible, cartilage-specific Igf1r knockout (TamCartIgf1r−/−) mice. At 2 weeks of age and 7 to 8 days after Tam injection, the TamCartIgf1r−/− mice showed growth retardation with a disorganized GP, reduced chondrocyte proliferation, decreased type 2 collagen and Indian Hedgehog (Ihh) expression, but increased expression of PTHrP. Consistent with in vivo observations, in vitro knockout of the Igf1r gene by adenoviral expression of Cre recombinase suppressed cell proliferation, promoted apoptosis, and increased Pthrp expression. Our data indicate that the IGF-1R in chondrocytes controls cell growth, survival, and differentiation in embryonic and postnatal GPs in part by suppression of Pthrp expression.
机译:全身性胰岛素样生长因子1(IGF-1)和IGF-1受体(IGF-1R)敲除小鼠的系统紊乱和围产期死亡排除了对生长板(GP)软骨细胞中IGF-1R作用的确切评估。我们生成了软骨特异性Igf1r基因敲除( Cart Igf1r -/-)小鼠,以研究该受体对GP中软骨细胞分化的局部控制。这些小鼠出生后不久死亡,并显示软骨细胞列紊乱,骨化和血管浸润延迟,细胞增殖减少,细胞凋亡增加以及其GP中甲状旁腺激素相关蛋白(Pthrp)RNA和蛋白的表达增加。敲除GP中Pthrp表达的增加可能是由于基因转录的增加所致,这是由插入内源PTHrP启动子下游并繁殖入敲除小鼠的LacZ报道基因的活性增加所确定的。为了避免 Cart Igf1r -/-小鼠的早期死亡并研究IGF-1R在产后生长中的作用,我们制备了他莫昔芬(Tam)可诱导的,软骨特异性的Igf1r基因敲除( TamCart Igf1r -/-)小鼠。 Tam注射后2周龄和7至8天, TamCart Igf1r -// 小鼠表现出生长迟缓,GP紊乱,软骨细胞增殖减少,2型减少胶原蛋白和印度刺猬(Ihh)表达,但PTHrP表达增加。与体内观察结果一致,通过腺病毒表达Cre重组酶体外敲除Igf1r基因可抑制细胞增殖,促进细胞凋亡,并增加Pthrp表达。我们的数据表明,软骨细胞中的IGF-1R部分地通过抑制Pthrp表达来控制胚胎和出生后GP中的细胞生长,存活和分化。

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