增强子α和β(FAM150)是受体酪氨酸激酶ALK和LTK的配体:配体与受体相互作用的层次性和特异性。

Journal of spinal disorders Pub Date : 2015-12-29 Epub Date: 2015-11-16 DOI:10.1073/pnas.1520099112
Andrey V Reshetnyak, Phillip B Murray, Xiarong Shi, Elizabeth S Mo, Jyotidarsini Mohanty, Francisco Tome, Hanwen Bai, Murat Gunel, Irit Lax, Joseph Schlessinger
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引用次数: 0

摘要

受体酪氨酸激酶(RTK)是一类细胞表面受体,与配体结合后可刺激多种关键的细胞功能。孤儿受体无性淋巴瘤激酶(ALK)是极少数仍未确定蛋白配体的 RTKs 之一。在这里,我们提出了一种新型细胞因子 FAM150B,并将其命名为增强子-α(AUG-α),作为 ALK 的配体。AUG-α 能以高亲和力结合 ALK,并以亚摩尔效力激活细胞中的 ALK。使用表达 ALK 或相关受体白细胞酪氨酸激酶(LTK)的细胞进行的详细结合实验表明,AUG-α 可结合并强力激活 ALK 和 LTK。我们的研究表明,以前建立的 LTK 配体 FAM150A(AUG-β)对 LTK 具有特异性,而与 ALK 的结合力很弱。此外,AUG-α的表达可刺激表达ALK的NIH/3T3细胞转化,诱导表达ALK的Ba/F3细胞独立于IL-3的生长,并在部分由ALK驱动的癌症--神经母细胞瘤中表达。这些实验揭示了两种细胞因子作为 ALK 和 LTK 配体的层次性和特异性,为阐明它们在发育和疾病状态中的作用奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Augmentor α and β (FAM150) are ligands of the receptor tyrosine kinases ALK and LTK: Hierarchy and specificity of ligand-receptor interactions.

Receptor tyrosine kinases (RTKs) are a class of cell surface receptors that, upon ligand binding, stimulate a variety of critical cellular functions. The orphan receptor anaplastic lymphoma kinase (ALK) is one of very few RTKs that remain without a firmly established protein ligand. Here we present a novel cytokine, FAM150B, which we propose naming augmentor-α (AUG-α), as a ligand for ALK. AUG-α binds ALK with high affinity and activates ALK in cells with subnanomolar potency. Detailed binding experiments using cells expressing ALK or the related receptor leukocyte tyrosine kinase (LTK) demonstrate that AUG-α binds and robustly activates both ALK and LTK. We show that the previously established LTK ligand FAM150A (AUG-β) is specific for LTK and only weakly binds to ALK. Furthermore, expression of AUG-α stimulates transformation of NIH/3T3 cells expressing ALK, induces IL-3 independent growth of Ba/F3 cells expressing ALK, and is expressed in neuroblastoma, a cancer partly driven by ALK. These experiments reveal the hierarchy and specificity of two cytokines as ligands for ALK and LTK and set the stage for elucidating their roles in development and disease states.

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