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发育与疾病中的肌腱蛋白-C:基因调控与细胞功能

Tenascin-C in development and disease: gene regulation and cell function.

作者信息

Jones P L, Jones F S

机构信息

Pediatric Cardiology Research, Abramson Research Center, Children's Hospital of Philadelphia & The University of Pennsylvania School of Medicine, 34th Street and Civic Center Boulevard, Philadelphia, PA, 19104, USA.

出版信息

Matrix Biol. 2000 Dec;19(7):581-96. doi: 10.1016/s0945-053x(00)00106-2.

Abstract

Tenascin-C (TN-C) is a modular and multifunctional extracellular matrix (ECM) glycoprotein that is exquisitely regulated during embryonic development and in adult tissue remodeling. TN-C gene transcription is controlled by intracellular signals that are generated by multiple soluble factors, integrins and mechanical forces. These external cues are interpreted by particular DNA control elements that interact with different classes of transcription factors to activate or repress TN-C expression in a cell type- and differentiation-dependent fashion. Among the transcriptional regulators of the TN-C gene that have been identified, the homeobox family of proteins has emerged as a major player. Downstream from TN-C, intracellular signals that are relayed via specific cell surface receptors often impart contrary cellular functions, even within the same cell type. A key to understanding this behavior may lie in the dual ability of TN-C-enriched extracellular matrices to generate intracellular signals, and to define unique cellular morphologies that modulate these signal transduction pathways. Thus, despite the contention that TN-C null mice appear to develop and act normally, TN-C biology continues to provide a wealth of information regarding the complex nature of the ECM in development and disease.

摘要

腱生蛋白-C(TN-C)是一种模块化的多功能细胞外基质(ECM)糖蛋白,在胚胎发育和成人组织重塑过程中受到精确调控。TN-C基因转录受多种可溶性因子、整合素和机械力产生的细胞内信号控制。这些外部信号由特定的DNA控制元件解读,这些元件与不同类别的转录因子相互作用,以细胞类型和分化依赖的方式激活或抑制TN-C表达。在已确定的TN-C基因转录调节因子中,同源盒蛋白家族已成为主要角色。在TN-C下游,通过特定细胞表面受体传递的细胞内信号通常赋予相反的细胞功能,即使在同一细胞类型中也是如此。理解这种行为的关键可能在于富含TN-C的细胞外基质产生细胞内信号以及定义调节这些信号转导途径的独特细胞形态的双重能力。因此,尽管有人认为TN-C基因敲除小鼠似乎发育正常且行为正常,但TN-C生物学仍继续提供大量有关ECM在发育和疾病中复杂性质的信息。

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