首页> 美国卫生研究院文献>Frontiers in Endocrinology >The Thrombopoietin Receptor: Structural Basis of Traffic and Activation by Ligand, Mutations, Agonists, and Mutated Calreticulin
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The Thrombopoietin Receptor: Structural Basis of Traffic and Activation by Ligand, Mutations, Agonists, and Mutated Calreticulin

机译:血小板生成素受体:交通和配体,突变,激动剂和突变的钙网蛋白激活的结构基础。

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摘要

A well-functioning hematopoietic system requires a certain robustness and flexibility to maintain appropriate quantities of functional mature blood cells, such as red blood cells and platelets. This review focuses on the cytokine receptor that plays a significant role in thrombopoiesis: the receptor for thrombopoietin (TPO-R; also known as MPL). Here, we survey the work to date to understand how this receptor functions at a molecular level throughout its lifecycle, from traffic to the cell surface, dimerization and binding cognate cytokine via its extracellular domain, through to its subsequent activation of associated Janus kinases and initiation of downstream signaling pathways, as well as the regulation of these processes. Atomic level resolution structures of TPO-R have remained elusive. The identification of disease-causing mutations in the receptor has, however, offered some insight into structure and function relationships, as has artificial means of receptor activation, through TPO mimetics, transmembrane-targeting receptor agonists, and engineering in dimerization domains. More recently, a novel activation mechanism was identified whereby mutated forms of calreticulin form complexes with TPO-R via its extracellular N-glycosylated domain. Such complexes traffic pathologically in the cell and persistently activate JAK2, downstream signal transducers and activators of transcription (STATs), and other pathways. This pathologic TPO-R activation is associated with a large fraction of human myeloproliferative neoplasms.
机译:运转良好的造血系统需要一定的鲁棒性和灵活性,以维持适当数量的功能性成熟血细胞,例如红细胞和血小板。这篇综述着重于在血小板生成中起重要作用的细胞因子受体:血小板生成素的受体(TPO-R;也称为MPL)。在这里,我们调查迄今为止的工作,以了解该受体在其整个生命周期中如何在分子水平上发挥作用,从运输到细胞表面,二聚化和通过其胞外域结合同源细胞因子,直至随后激活相关的Janus激酶并引发下游信号通路以及这些过程的调节。 TPO-R的原子能级分辨率结构仍然难以捉摸。然而,通过TPO模拟物,跨膜靶向受体激动剂和二聚化域的工程化,鉴定受体中引起疾病​​的突变已为结构和功能关系提供了一些见识,以及人工激活受体的手段也是如此。最近,鉴定了一种新颖的激活机制,由此,钙网蛋白的突变形式通过其细胞外N-糖基化结构域与TPO-R形成复合物。此类复合物在细胞中进行病理性运输,并持续激活JAK2,下游信号转导子和转录激活子(STATs)和其他途径。这种病理性的TPO-R激活与大部分人类骨髓增生性肿瘤有关。

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