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O-岩藻糖化的血栓反应素型 1 重复序列对于骨发育过程中细胞外基质重塑和信号转导是必需的。

O-fucosylation of thrombospondin type 1 repeats is essential for ECM remodeling and signaling during bone development.

机构信息

Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, NY, 11794, USA.

Department of Biochemistry and Molecular Biology, Complex Carbohydrate Research Center, University of Georgia, Athens, GA 30602, USA.

出版信息

Matrix Biol. 2022 Mar;107:77-96. doi: 10.1016/j.matbio.2022.02.002. Epub 2022 Feb 12.

Abstract

Many extracellular matrix (ECM) associated proteins that influence ECM properties have Thrombospondin type 1 repeats (TSRs) which are modified with O-linked fucose. The O-fucose is added in the endoplasmic reticulum to folded TSRs by the enzyme Protein O-fucosyltransferase-2 (POFUT2) and is proposed to promote efficient trafficking of substrates. The importance of this modification for function of TSR-proteins is underscored by the early embryonic lethality of mouse embryos lacking Pofut2. To overcome early lethality and investigate the impact of the Pofut2 knockout on the secretion of POFUT2 substrates and on extracellular matrix properties in vivo, we deleted Pofut2 in the developing limb mesenchyme using Prrx1-Cre recombinase. Loss of Pofut2 in the limb mesenchyme caused significant shortening of the limbs, long bones and tendons and stiff joint resembling the musculoskeletal dysplasias in human and in mice with mutations in ADAMTS or ADAMTSL proteins. Limb shortening was evident at embryonic day 14.5 where loss of O-fucosylation led to an accumulation of fibrillin 2 (FBN2), decreased BMP and IHH signaling, and increased TGF-β signaling. Consistent with these changes we saw a decrease in the size of the hypertrophic zone with lower levels of Collagen-X. Unexpectedly, we observed minimal effects of the Pofut2 knockout on secretion of two POFUT2 substrates, CCN2 or ADAMTS17, in the developing bone. In contrast, CCN2 and two other POFUT2 substrates important for bone development, ADAMTS6 and 10, showed a decrease in secretion from POFUT2-null HEK293T cells in vitro. These combined results suggest that the impact of the Pofut2 mutation is cell-type specific. In addition, these observations raise the possibility that the O-fucose modification on TSRs extends beyond promoting efficient trafficking of POFUT2 substrates and has the potential to influence their function in the extracellular environment.

摘要

许多影响细胞外基质(ECM)特性的细胞外基质相关蛋白都具有血栓素样蛋白 1 重复序列(TSR),这些 TSR 被 O-连接岩藻糖修饰。O-岩藻糖在内质网中通过蛋白-O-岩藻糖基转移酶 2(POFUT2)添加到折叠的 TSR 上,并被认为可促进底物的有效运输。缺乏 Pofut2 的小鼠胚胎具有早期胚胎致死性,这突出表明了这种修饰对于 TSR 蛋白功能的重要性。为了克服早期致死性并研究 Pofut2 敲除对 POFUT2 底物分泌和体内细胞外基质特性的影响,我们使用 Prrx1-Cre 重组酶在发育中的肢体间质中删除 Pofut2。肢体间质中 Pofut2 的缺失导致肢体、长骨和肌腱明显缩短,关节僵硬,类似于人类和 ADAMTS 或 ADAMTSL 蛋白突变的小鼠中的肌肉骨骼发育不良。肢体缩短在胚胎第 14.5 天就很明显,此时 O-岩藻糖基化的丧失导致纤维连接蛋白 2(FBN2)的积累,BMP 和 IHH 信号减少,以及 TGF-β信号增加。与这些变化一致,我们观察到肥大区缩小,Collagen-X 水平降低。出乎意料的是,我们发现 Pofut2 敲除对发育中骨骼中二种 POFUT2 底物,即 CCN2 或 ADAMTS17 的分泌影响最小。相比之下,CCN2 和另外两种对骨骼发育很重要的 POFUT2 底物,ADAMTS6 和 10,在体外从 POFUT2 缺失的 HEK293T 细胞中分泌减少。这些综合结果表明,Pofut2 突变的影响是细胞类型特异性的。此外,这些观察结果提出了一种可能性,即 TSR 上的 O-岩藻糖修饰不仅可以促进 POFUT2 底物的有效运输,而且有可能影响它们在细胞外环境中的功能。

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