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首页> 外文期刊>Cellular and molecular life sciences: CMLS >The growth plate's response to load is partially mediated by mechano-sensing via the chondrocytic primary cilium
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The growth plate's response to load is partially mediated by mechano-sensing via the chondrocytic primary cilium

机译:生长板对负荷的反应部分通过软骨细胞初级纤毛的机械感测介导

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摘要

Mechanical load plays a significant role in bone and growth-plate development. Chondrocytes sense and respond to mechanical stimulation; however, the mechanisms by which those signals exert their effects are not fully understood. The primary cilium has been identified as a mechano-sensor in several cell types, including renal epithelial cells and endothelium, and accumulating evidence connects it to mechano-transduction in chondrocytes. In the growth plate, the primary cilium is involved in several regulatory pathways, such as the non-canonical Wnt and Indian Hedgehog. Moreover, it mediates cell shape, orientation, growth, and differentiation in the growth plate. In this work, we show that mechanical load enhances ciliogenesis in the growth plate. This leads to alterations in the expression and localization of key members of the Ihh-PTHrP loop resulting in decreased proliferation and an abnormal switch from proliferation to differentiation, together with abnormal chondrocyte morphology and organization. Moreover, we use the chondrogenic cell line ATDC5, a model for growth-plate chondrocytes, to understand the mechanisms mediating the participation of the primary cilium, and in particular KIF3A, in the cell's response to mechanical stimulation. We show that this key component of the cilium mediates gene expression in response to mechanical stimulation.
机译:机械负荷在骨骼和生长板的发育中起重要作用。软骨细胞感知并响应机械刺激;但是,这些信号发挥作用的机制尚未完全了解。初级纤毛已被鉴定为包括肾上皮细胞和内皮在内的几种细胞类型的机械传感器,并且越来越多的证据将其与软骨细胞的机械转导联系起来。在生长板中,初级纤毛参与多种调节途径,例如非经典的Wnt和印度刺猬。此外,它介导生长板中的细胞形状,方向,生长和分化。在这项工作中,我们表明机械负荷增强了生长板上的纤毛发生。这导致Ihh-PTHrP环关键成员的表达和定位发生变化,从而导致增殖减少以及从增殖到分化的异常转换,以及异常的软骨细胞形态和组织。此外,我们使用软骨生长细胞系ATDC5(一种生长板软骨细胞的模型)来了解介导初级纤毛,尤其是KIF3A参与细胞对机械刺激反应的机制。我们显示纤毛的关键组成部分介导响应机械刺激的基因表达。

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