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来自紧皮小鼠的突变原纤蛋白1增加了微原纤维相关糖蛋白2和I型胶原在细胞外基质中的掺入。

Mutant fibrillin 1 from tight skin mice increases extracellular matrix incorporation of microfibril-associated glycoprotein 2 and type I collagen.

作者信息

Lemaire Raphael, Farina Guiseppina, Kissin Eugene, Shipley J Michael, Bona Constantine, Korn Joseph H, Lafyatis Robert

机构信息

Boston University School of Medicine, The Arthritis Center, Boston, Massachusetts 02118, USA.

出版信息

Arthritis Rheum. 2004 Mar;50(3):915-26. doi: 10.1002/art.20053.

Abstract

OBJECTIVE

Skin fibrosis in the TSK mouse, a model of skin fibrosis seen in systemic sclerosis (SSc), is caused by a large in-frame duplication in the Fbn1 gene, tsk-Fbn1. We investigated whether tsk-Fbn1 might cause dermal fibrosis by affecting Fbn1 and associated extracellular matrices. We also studied whether deposition of microfibril-associated glycoprotein 2 (MAGP-2), a protein that is associated with fibrillin 1, was altered in the skin of patients with SSc.

METHODS

An in vitro model of the TSK mouse was created by conditionally expressing tsk-Fbn1 in mouse embryonic fibroblasts (MEFs). Cell cultures were examined by immunofluorescence and Western and Northern blotting to determine the effect of tsk-Fbn1 on the structure, expression, and deposition of fibrillin 1 (Fbn-1), type I collagen, and MAGP-2. The skin of TSK mice and SSc patients was analyzed by immunohistochemistry for MAGP-2 expression.

RESULTS

Expression of tsk-Fbn1 in cultured MEF cells altered the morphology of Fbn-1 fibers and increased the deposition of type I collagen into the extracellular matrix (ECM) without concomitantly changing messenger RNA expression, secretion, or processing of type I procollagen. Moreover, MEF cells expressing tsk-Fbn1 showed increased MAGP-2 matrix. MAGP-2 was increased in the dermis of TSK mice. Fibrotic SSc skin also showed higher levels of MAGP-2 in the dermis than nonfibrotic SSc skin and normal skin.

CONCLUSION

Tsk-Fbn1 altered ECM organization and caused fibrosis by affecting the deposition of MAGP-2 or other Fbn-1-associated proteins. Alterations in microfibril structure or deposition might contribute to fibrosis in SSc.

摘要

目的

TSK小鼠的皮肤纤维化是系统性硬化症(SSc)中所见皮肤纤维化的一种模型,由Fbn1基因(tsk-Fbn1)的一个大的框内重复引起。我们研究了tsk-Fbn1是否可能通过影响Fbn1及相关细胞外基质而导致真皮纤维化。我们还研究了微原纤维相关糖蛋白2(MAGP-2,一种与原纤蛋白1相关的蛋白质)在SSc患者皮肤中的沉积是否发生改变。

方法

通过在小鼠胚胎成纤维细胞(MEF)中条件性表达tsk-Fbn1建立TSK小鼠的体外模型。通过免疫荧光、蛋白质印迹法和Northern印迹法检测细胞培养物,以确定tsk-Fbn1对原纤蛋白1(Fbn-1)、I型胶原和MAGP-2的结构、表达及沉积的影响。通过免疫组织化学分析TSK小鼠和SSc患者皮肤中MAGP-2的表达。

结果

tsk-Fbn1在培养的MEF细胞中的表达改变了Fbn-1纤维的形态,并增加了I型胶原向细胞外基质(ECM)中的沉积,而未同时改变I型前胶原的信使核糖核酸表达、分泌或加工。此外,表达tsk-Fbn1的MEF细胞显示MAGP-2基质增加。TSK小鼠真皮中的MAGP-2增加。纤维化的SSc皮肤在真皮中也显示出比非纤维化的SSc皮肤和正常皮肤更高水平的MAGP-2。

结论

Tsk-Fbn1通过影响MAGP-2或其他Fbn-1相关蛋白的沉积改变了ECM组织并导致纤维化。微原纤维结构或沉积的改变可能导致SSc中的纤维化。

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