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周期性机械应力通过CaMKII介导的Pyk2信号通路诱导软骨细胞增殖和基质合成。

Periodic Mechanical Stress INDUCES Chondrocyte Proliferation and Matrix Synthesis via CaMKII-Mediated Pyk2 Signaling.

作者信息

Liang Wenwei, Li Zeng, Wang Zhen, Zhou Jinchun, Song Huanghe, Xu Shun, Cui Weiding, Wang Qing, Chen Zhefeng, Liu Feng, Fan Weimin

机构信息

Department of Orthopedics, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China.

Department of Orthopedics, Huashan Hospital, Fudan University, Shanghai, China.

出版信息

Cell Physiol Biochem. 2017;42(1):383-396. doi: 10.1159/000477483. Epub 2017 May 25.

Abstract

BACKGROUND/AIMS: Periodic mechanical stress can promote chondrocyte proliferation and matrix synthesis to improve the quality of tissue-engineered cartilage. Although the integrin β1-ERK1/2 signal cascade has been implicated in periodic mechanical stress-induced mitogenic effects in chondrocytes, the precise mechanisms have not been fully established. The current study was designed to probe the roles of CaMKII and Pyk2 signaling in periodic mechanical stress-mediated chondrocyte proliferation and matrix synthesis.

METHODS

Chondrocytes were subjected to periodic mechanical stress, proliferation was assessed by direct cell counting and CCK-8 assay; gene expressions were analyzed using quantitative real-time PCR, protein abundance by Western blotting.

RESULTS

Mechanical stress, markedly enhanced the phosphorylation levels of Pyk2 at Tyr402 and CaMKII at Thr286. Both suppression of Pyk2 with Pyk2 inhibitor PF431396 or Pyk2 shRNA and suppression of CaMKII with CaMKII inhibitor KN-93 or CaMKII shRNA blocked periodic mechanical stress-induced chondrocyte proliferation and matrix synthesis. Additionally, either pretreatment with KN-93 or shRNA targeted to CaMKII prevented the activation of ERK1/2 and Pyk2 under conditions of periodic mechanical stress. Interestingly, in relation to periodic mechanical stress, in the context of Pyk2 inhibition with PF431396 or its targeted shRNA, only the phosphorylation levels of ERK1/2 were abrogated, while CaMKII signal activation was not affected. Moreover, the phosphorylation levels of CaMKII- Thr286 and Pyk2- Tyr402 were abolished after pretreatment with blocking antibody against integrinβ1 exposed to periodic mechanical stress.

CONCLUSION

Our results collectively indicate that periodic mechanical stress promotes chondrocyte proliferation and matrix synthesis through the integrinβ1-CaMKII-Pyk2-ERK1/2 signaling cascade.

摘要

背景/目的:周期性机械应力可促进软骨细胞增殖和基质合成,从而提高组织工程软骨的质量。尽管整合素β1-ERK1/2信号级联反应与周期性机械应力诱导的软骨细胞促有丝分裂作用有关,但其确切机制尚未完全明确。本研究旨在探讨CaMKII和Pyk2信号在周期性机械应力介导的软骨细胞增殖和基质合成中的作用。

方法

对软骨细胞施加周期性机械应力,通过直接细胞计数和CCK-8法评估细胞增殖;采用定量实时PCR分析基因表达,通过蛋白质印迹法检测蛋白质丰度。

结果

机械应力显著提高了Tyr402位点的Pyk2和Thr286位点的CaMKII的磷酸化水平。用Pyk2抑制剂PF431396或Pyk2短发夹RNA抑制Pyk2以及用CaMKII抑制剂KN-93或CaMKII短发夹RNA抑制CaMKII,均能阻断周期性机械应力诱导的软骨细胞增殖和基质合成。此外,用KN-93预处理或靶向CaMKII的短发夹RNA可防止在周期性机械应力条件下ERK1/2和Pyk2的激活。有趣的是,在周期性机械应力的情况下,在用PF431396或其靶向短发夹RNA抑制Pyk2时,仅ERK1/2的磷酸化水平被消除,而CaMKII信号激活不受影响。此外,在用抗整合素β1阻断抗体预处理后,暴露于周期性机械应力下的CaMKII-Thr286和Pyk2-Tyr402的磷酸化水平被消除。

结论

我们的结果共同表明,周期性机械应力通过整合素β1-CaMKII-Pyk2-ERK1/2信号级联反应促进软骨细胞增殖和基质合成。

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