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E-选择素配体-1 通过抑制成熟 TGF-β的细胞内加工和分泌来调节小鼠生长板的内稳态。

E-selectin ligand-1 regulates growth plate homeostasis in mice by inhibiting the intracellular processing and secretion of mature TGF-beta.

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Clin Invest. 2010 Jul;120(7):2474-85. doi: 10.1172/JCI42150. Epub 2010 Jun 7.

Abstract

The majority of human skeletal dysplasias are caused by dysregulation of growth plate homeostasis. As TGF-beta signaling is a critical determinant of growth plate homeostasis, skeletal dysplasias are often associated with dysregulation of this pathway. The context-dependent action of TFG-beta signaling is tightly controlled by numerous mechanisms at the extracellular level and downstream of ligand-receptor interactions. However, TGF-beta is synthesized as an inactive precursor that is cleaved to become mature in the Golgi apparatus, and the regulation of this posttranslational intracellular processing and trafficking is much less defined. Here, we report that a cysteine-rich protein, E-selectin ligand-1 (ESL-1), acts as a negative regulator of TGF-beta production by binding TGF-beta precursors in the Golgi apparatus in a cell-autonomous fashion, inhibiting their maturation. Furthermore, ESL-1 inhibited the processing of proTGF-beta by a furin-like protease, leading to reduced secretion of mature TGF-beta by primary mouse chondrocytes and HEK293 cells. In vivo loss of Esl1 in mice led to increased TGF-beta/SMAD signaling in the growth plate that was associated with reduced chondrocyte proliferation and delayed terminal differentiation. Gain-of-function and rescue studies of the Xenopus ESL-1 ortholog in the context of early embryogenesis showed that this regulation of TGF-beta/Nodal signaling was evolutionarily conserved. This study identifies what we believe to be a novel intracellular mechanism for regulating TGF-beta during skeletal development and homeostasis.

摘要

大多数人类骨骼发育不良是由生长板稳态失调引起的。由于 TGF-β 信号是生长板稳态的关键决定因素,因此骨骼发育不良通常与该途径的失调有关。TGF-β 信号的上下文依赖性作用受到细胞外水平和配体-受体相互作用下游的许多机制的严格控制。然而,TGF-β 作为无活性的前体合成,在高尔基体内被切割成熟,其翻译后细胞内加工和运输的调节还远未确定。在这里,我们报告了富含半胱氨酸的蛋白 E 选择素配体 1 (ESL-1) 作为 TGF-β 产生的负调节剂,通过在高尔基体内以细胞自主的方式结合 TGF-β 前体,抑制其成熟,从而发挥作用。此外,ESL-1 抑制了脯氨酸内切酶样蛋白酶对 proTGF-β 的加工,导致原代小鼠软骨细胞和 HEK293 细胞成熟 TGF-β 的分泌减少。体内敲除 Esl1 导致生长板中 TGF-β/SMAD 信号增加,这与软骨细胞增殖减少和终末分化延迟有关。在早期胚胎发生中对 Xenopus ESL-1 同源物的功能获得和挽救研究表明,这种对 TGF-β/Nodal 信号的调节在进化上是保守的。本研究确定了我们认为在骨骼发育和稳态过程中调节 TGF-β 的一种新的细胞内机制。

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