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基底膜聚糖/HSPG2:IV 结构域在软骨细胞聚集过程中的信号传导作用及其与施瓦茨-扬佩尔综合征的关联

Perlecan/HSPG2: Signaling role of domain IV in chondrocyte clustering with implications for Schwartz-Jampel Syndrome.

作者信息

Martinez Jerahme R, Grindel Brian J, Hubka Kelsea M, Dodge George R, Farach-Carson Mary C

机构信息

Department of BioSciences, Rice University, Houston, Texas.

Department of Mechanical Engineering, University of Delaware, Newark, Delaware.

出版信息

J Cell Biochem. 2019 Feb;120(2):2138-2150. doi: 10.1002/jcb.27521. Epub 2018 Sep 11.

Abstract

Perlecan/heparan sulfate proteoglycan 2 (HSPG2), a large HSPG, is indispensable for the development of musculoskeletal tissues, where it is deposited within the pericellular matrix (PCM) surrounding chondrocytes and disappears nearly completely at the chondro-osseous junction (COJ) of developing long bones. Destruction of perlecan at the COJ converts an avascular cartilage compartment into one that permits blood vessel infiltration and osteogenesis. Mutations in perlecan are associated with chondrodysplasia with widespread musculoskeletal and joint defects. This study elucidated novel signaling roles of perlecan core protein in endochondral bone formation and chondrocyte behavior. Perlecan subdomains were tested for chondrogenic properties in ATDC5 cells, a model for early chondrogenesis. A region within domain IV of perlecan (HSPG2 IV-3) was found to promote rapid prechondrocyte clustering. Introduction of the mutation (R3452Q) associated with the human skeletal disorder Schwartz-Jampel syndrome limited HSPG2 IV-3-induced clustering. HSPG2 IV-3 activity was enhanced when thermally unfolded, likely because of increased exposure of the active motif(s). HSPG2 IV-3-induced clustering was accompanied by the deactivation of key components of the focal adhesion complex, FAK and Src, with increased messenger RNA (mRNA) levels of precartilage condensation markers Sox9 and N-cadherin ( Cdh2), and cartilage PCM components collagen II ( Col2a1) and aggrecan ( Acan). HSPG2 IV-3 reduced signaling through the ERK pathway, where loss of ERK1/2 phosphorylation coincided with reduced FoxM1 protein levels and increased mRNA levels cyclin-dependent kinase inhibitor 1C (Cdkn1c) and activating transcription factor 3 ( Atf3), reducing cell proliferation. These findings point to a critical role for perlecan domain IV in cartilage development through triggering chondrocyte condensation.

摘要

基底膜聚糖/硫酸乙酰肝素蛋白聚糖2(HSPG2)是一种大型硫酸乙酰肝素蛋白聚糖,对肌肉骨骼组织的发育至关重要,它沉积在软骨细胞周围的细胞周基质(PCM)中,并在发育中的长骨的软骨-骨交界处(COJ)几乎完全消失。COJ处基底膜聚糖的破坏会将无血管的软骨隔室转变为允许血管浸润和成骨的隔室。基底膜聚糖的突变与具有广泛肌肉骨骼和关节缺陷的软骨发育异常有关。本研究阐明了基底膜聚糖核心蛋白在软骨内骨形成和软骨细胞行为中的新信号作用。在ATDC5细胞(一种早期软骨形成模型)中测试了基底膜聚糖亚结构域的软骨生成特性。发现基底膜聚糖结构域IV内的一个区域(HSPG2 IV-3)可促进前软骨细胞快速聚集。与人类骨骼疾病施瓦茨-扬佩尔综合征相关的突变(R3452Q)的引入限制了HSPG2 IV-3诱导的聚集。热变性时HSPG2 IV-3活性增强,可能是因为活性基序暴露增加。HSPG2 IV-3诱导的聚集伴随着粘着斑复合物关键成分FAK和Src的失活,同时前软骨凝聚标志物Sox9和N-钙黏蛋白(Cdh2)以及软骨PCM成分胶原蛋白II(Col2a1)和聚集蛋白聚糖(Acan)的信使核糖核酸(mRNA)水平升高。HSPG2 IV-3通过ERK途径减少信号传导,其中ERK1/2磷酸化的丧失与FoxM1蛋白水平降低以及细胞周期蛋白依赖性激酶抑制剂1C(Cdkn1c)和激活转录因子3(Atf3)的mRNA水平升高同时发生,从而减少细胞增殖。这些发现表明基底膜聚糖结构域IV通过触发软骨细胞凝聚在软骨发育中起关键作用。

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