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I型胶原蛋白是小鼠骨骼发育过程中基质金属蛋白酶2的遗传修饰因子。

Type I collagen is a genetic modifier of matrix metalloproteinase 2 in murine skeletal development.

作者信息

Egeblad Mikala, Shen H-C Jennifer, Behonick Danielle J, Wilmes Lisa, Eichten Alexandra, Korets Lidiya V, Kheradmand Farrah, Werb Zena, Coussens Lisa M

机构信息

Department of Anatomy, University of California, San Francisco, San Francisco, California 94143-0452, USA.

出版信息

Dev Dyn. 2007 Jun;236(6):1683-93. doi: 10.1002/dvdy.21159.

Abstract

Recessive inactivating mutations in human matrix metalloproteinase 2 (MMP2, gelatinase A) are associated with syndromes that include abnormal facial appearance, short stature, and severe bone loss. Mmp2(-/-) mice have only mild aspects of these abnormalities, suggesting that MMP2 function is redundant during skeletal development in the mouse. Here, we report that Mmp2(-/-) mice with additional mutations that render type I collagen resistant to collagenase-mediated cleavage to TC(A) and TC(B) fragments (Col1a1(r/r) mice) have severe developmental defects resembling those observed in MMP2-null humans. Composite Mmp2(-/-);Col1a1(r/r) mice were born in expected Mendelian ratios but were half the size of wild-type, Mmp2(-/-), and Col1a1(r/r) mice and failed to thrive. Furthermore, composite Mmp2(-/-);Col1a1(r/r) animals had very abnormal craniofacial features with shorter snouts, bulging skulls, incompletely developed calvarial bones and unclosed cranial sutures. In addition, trabecular bone mass was reduced concomitant with increased numbers of bone-resorbing osteoclasts and osteopenia. In vitro, MMP2 had a unique ability among the collagenolytic MMPs to degrade mutant collagen, offering a possible explanation for the genetic interaction between Mmp2 and Col1a1(r). Thus, because mutations in the type I collagen gene alter the phenotype of mice with null mutations in Mmp2, we conclude that type I collagen is an important modifier gene for Mmp2. Developmental Dynamics 236:1683-1693, 2007. (c) 2007 Wiley-Liss, Inc.

摘要

人类基质金属蛋白酶2(MMP2,明胶酶A)的隐性失活突变与包括面部外观异常、身材矮小和严重骨质流失在内的综合征相关。Mmp2基因敲除小鼠仅表现出这些异常的轻微症状,这表明MMP2功能在小鼠骨骼发育过程中具有冗余性。在此,我们报道,携带额外突变的Mmp2基因敲除小鼠,其I型胶原对胶原酶介导的切割产生抗性,形成TC(A)和TC(B)片段(Col1a1(r/r)小鼠),具有严重的发育缺陷,类似于在MMP2基因缺失的人类中观察到的情况。复合Mmp2(-/-);Col1a1(r/r)小鼠按预期孟德尔比例出生,但体型只有野生型、Mmp2(-/-)和Col1a1(r/r)小鼠的一半,且无法茁壮成长。此外,复合Mmp2(-/-);Col1a1(r/r)动物具有非常异常的颅面特征,口鼻部较短、颅骨凸出、颅盖骨发育不完全且颅缝未闭合。此外,小梁骨量减少,同时骨吸收破骨细胞数量增加且出现骨质减少。在体外,MMP2在胶原olytic MMPs中具有独特的降解突变型胶原的能力,这为Mmp2和Col1a1(r)之间的基因相互作用提供了一种可能的解释。因此,由于I型胶原基因的突变改变了Mmp2基因敲除小鼠的表型,我们得出结论,I型胶原是Mmp2的重要修饰基因。《发育动力学》236:1683 - 1693,2007年。(c) 2007威利 - 利斯公司。

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