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JNK/ERK-AP-1/Runx2的诱导为软骨负荷引发的软骨细胞分化“铺平了道路”。

JNK/ERK-AP-1/Runx2 induction "paves the way" to cartilage load-ignited chondroblastic differentiation.

作者信息

Papachristou Dionysios J, Pirttiniemi Pertti, Kantomaa Tuomo, Papavassiliou Athanasios G, Basdra Efthimia K

机构信息

Department of Biochemistry, School of Medicine, University of Patras, Greece.

出版信息

Histochem Cell Biol. 2005 Sep;124(3-4):215-23. doi: 10.1007/s00418-005-0026-8. Epub 2005 Oct 28.

Abstract

Chondro-osteogenesis and subsequently skeletal morphology are greatly influenced by mechanical loads. The exact mechanism(s) by which mechanical stimuli are transduced in chondrocytes remains obscure and appears to be equally complex with similar signal transducing systems. Here we investigated whether and to what extent the MAPK (JNK/ERK)-AP-1/Runx2 signaling pathways are engaged in this phenomenon, and assessed their involvement in the functional biology of articular cartilage. For this purpose, 14-day-old female Wistar rats were divided into 2 groups: the first group was fed hard diet (simulating physiologic temporomandibular joint (TMJ) loading), while the second group was fed soft diet (reduced TMJ loading). On day 21 (experiment initiation day - weaning day), biopsies from condyles of both groups were obtained after 6, 12 and 48 h of functional TMJ loading. Immunohistochemical methodology was employed to evaluate the expression levels of pc-Jun, c-Fos, JNK2, p-JNK, p-ERK and Runx2 due to alteration in functional load. Our data demsonstrate that the protein levels of all the aforementioned molecules were markedly increased in animals fed with the hard diet, throughout the experimental procedure. These results indicate that functional cartilage loading induces the AP-1 and Runx2 transcription factors through the JNK and ERK MAPK cascades. In as much as the above signaling mediators/effectors are considered to be crucial in the differentiation/maturation process of cartilage tissue, we pose that functional mechanical loading of condylar cartilage serves to "fine tune" chondroblastic differentiation/maturation.

摘要

软骨骨生成以及随后的骨骼形态受到机械负荷的极大影响。机械刺激在软骨细胞中传导的确切机制仍不清楚,并且似乎与类似的信号转导系统一样复杂。在这里,我们研究了丝裂原活化蛋白激酶(JNK/ERK)-AP-1/Runx2信号通路是否以及在多大程度上参与了这一现象,并评估了它们在关节软骨功能生物学中的作用。为此,将14日龄雌性Wistar大鼠分为2组:第一组喂食硬食(模拟生理性颞下颌关节(TMJ)负荷),而第二组喂食软食(减少TMJ负荷)。在第21天(实验开始日——断奶日),在功能性TMJ负荷6、12和48小时后,从两组的髁突获取活检组织。采用免疫组织化学方法评估由于功能负荷改变而导致的磷酸化Jun(pc-Jun)、c-Fos、JNK2、磷酸化JNK(p-JNK)、磷酸化ERK(p-ERK)和Runx2的表达水平。我们的数据表明,在整个实验过程中,喂食硬食的动物中所有上述分子的蛋白质水平均显著升高。这些结果表明,功能性软骨负荷通过JNK和ERK丝裂原活化蛋白激酶级联反应诱导AP-1和Runx2转录因子。鉴于上述信号介质/效应器被认为在软骨组织的分化/成熟过程中至关重要,我们认为髁突软骨的功能性机械负荷有助于“微调”成软骨细胞的分化/成熟。

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