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缺乏金属蛋白酶组织抑制剂-3(TIMP-3)的小鼠肺部出现自发性气腔扩大。

Spontaneous air space enlargement in the lungs of mice lacking tissue inhibitor of metalloproteinases-3 (TIMP-3).

作者信息

Leco K J, Waterhouse P, Sanchez O H, Gowing K L, Poole A R, Wakeham A, Mak T W, Khokha R

机构信息

Ontario Cancer Institute, University of Toronto, Toronto, Ontario, Canada.

出版信息

J Clin Invest. 2001 Sep;108(6):817-29. doi: 10.1172/JCI12067.

Abstract

Tissue inhibitors of metalloproteinases regulate ECM degradation by matrix metalloproteinases (MMPs). We have developed a mouse line deficient for tissue inhibitor of metalloproteinases-3 (TIMP-3), the only TIMP known to reside within the ECM. Homozygous Timp-3-null animals develop spontaneous air space enlargement in the lung that is evident at 2 weeks after birth and progresses with age of the animal. As early as 13 months of age animals become moribund. Lung function, measured by carbon monoxide uptake, is impaired in aged null animals. Lungs from aged null animals have reduced abundance of collagen, enhanced degradation of collagen in the peribronchiolar space, and disorganization of collagen fibrils in the alveolar interstitium, but no increase in inflammatory cell infiltration or evidence of fibrosis in comparison with controls. Using in situ zymography, we show that lungs from aged null animals have heightened MMP activity over wild-type and heterozygotic animals. Finally, TIMP-3-null fibroblast cultures demonstrate enhanced destruction of ECM molecules in vitro. We propose that the deletion of TIMP-3 results in a shift of the TIMP/MMP balance in the lung to favor ECM degradation, culminating in incapacitating illness and a shorter life span.

摘要

金属蛋白酶组织抑制剂通过基质金属蛋白酶(MMPs)调节细胞外基质(ECM)的降解。我们构建了一种金属蛋白酶组织抑制剂-3(TIMP-3)基因缺失的小鼠品系,TIMP-3是唯一已知定位于ECM中的TIMP。纯合Timp-3基因敲除动物在出生后2周肺部出现自发性气腔扩大,且随动物年龄增长而进展。早在13月龄时动物就会濒死。通过一氧化碳摄取量测定的肺功能在老年基因敲除动物中受损。与对照相比,老年基因敲除动物的肺中胶原蛋白丰度降低,细支气管周围空间胶原蛋白降解增强,肺泡间质中胶原纤维排列紊乱,但炎症细胞浸润未增加或无纤维化迹象。通过原位酶谱分析,我们发现老年基因敲除动物的肺中MMP活性高于野生型和杂合动物。最后,TIMP-3基因敲除的成纤维细胞培养物在体外显示出对ECM分子的破坏增强。我们提出,TIMP-3的缺失导致肺中TIMP/MMP平衡向有利于ECM降解的方向转变,最终导致失能性疾病和较短的寿命。

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