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明胶酶,基质金属蛋白酶 2 和 9,在骨骼发育中发挥着各自的作用。

The gelatinases, matrix metalloproteinases 2 and 9, play individual roles in skeleton development.

机构信息

The Koret School of Veterinary Medicine, The Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel; The Institute of Biochemistry, Food Science and Nutrition, The Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel.

The Institute of Biochemistry, Food Science and Nutrition, The Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 76100, Israel.

出版信息

Matrix Biol. 2022 Nov;113:100-121. doi: 10.1016/j.matbio.2022.10.002. Epub 2022 Oct 17.

Abstract

The gelatinases, a subgroup of the matrix metalloproteinases (MMPs) superfamily are composed of two members; MMP2 and MMP9. They are known to degrade gelatin among other components of the extracellular matrix. Recently, the two gelatinases were found to be necessary for neural crest cell migration and to compensate for each other loss in these cells. To characterize their involvement in the skeletal system, and to better reveal their individual or common roles, we have generated double knockout (dKO) mice, lacking both MMP2 and MMP9. Comprehensive analysis of the skeleton morphological and mechanical parameters at postnatal day (P) 0, P21, 3 months (M) and 8M of age, revealed an unexpected distinct role for each gelatinase; MMP2 was found to be involved merely in intramembranous ossification which led to a smaller skull and inferior cortical parameters upon its loss, while MMP9 was found to affect only the endochondral ossification process, which led to shorter long-bones in its absence. Importantly, the dKO mice demonstrated a combination of both the skull and long bone phenotypes as found in the single-KOs, and not a severer additive phenotype. Transcriptome analysis on the cortical bone, the growth plate and the skull frontal bone, found many genes that were differentially expressed as a direct or indirect result of MMP-loss, and reinforced the specific and distinct role of each gelatinase in each bone type. Altogether, these results suggest that although both gelatinases share the same substrates and are highly expressed in flat and long bones, they are indispensable and control separately the development of different bones.

摘要

明胶酶是基质金属蛋白酶(MMPs)超家族的一个亚组,由两个成员组成;MMP2 和 MMP9。它们被认为能够降解细胞外基质中的明胶和其他成分。最近,这两种明胶酶被发现对于神经嵴细胞迁移是必要的,并相互补偿这些细胞的缺失。为了描述它们在骨骼系统中的参与情况,并更好地揭示它们各自或共同的作用,我们生成了缺乏 MMP2 和 MMP9 的双敲除(dKO)小鼠。对出生后第 0、21、3 个月和 8 个月时骨骼形态和力学参数的全面分析表明,每种明胶酶都具有意想不到的独特作用;MMP2 仅参与膜内成骨,导致其缺失时颅骨较小,皮质参数较低,而 MMP9 仅影响软骨内成骨过程,导致其缺失时长骨较短。重要的是,dKO 小鼠表现出与单个 KO 小鼠相同的颅骨和长骨表型的组合,而不是更严重的附加表型。对皮质骨、生长板和颅骨额骨的转录组分析发现,许多基因由于 MMP 缺失而直接或间接地表达不同,这增强了每种明胶酶在每种骨类型中的特定和独特作用。总之,这些结果表明,尽管两种明胶酶具有相同的底物,并且在扁平骨和长骨中高度表达,但它们是不可或缺的,并分别控制不同骨骼的发育。

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