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光敏酪氨酸类似物揭示了 TrkA 启动的 MAPK/ERK 信号转导中的位点依赖性磷酸化。

Photosensitive tyrosine analogues unravel site-dependent phosphorylation in TrkA initiated MAPK/ERK signaling.

机构信息

Shanghai Key Laboratory of Brain Functional Genomics, Ministry of Education, East China Normal University (ECNU), Shanghai, 200062, China.

Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University (ECNU), Shanghai, 200062, China.

出版信息

Commun Biol. 2020 Nov 25;3(1):706. doi: 10.1038/s42003-020-01396-0.

Abstract

Tyrosine kinase A (TrkA) is a membrane receptor which, upon ligand binding, activates several pathways including MAPK/ERK signaling, implicated in a spectrum of human pathologies; thus, TrkA is an emerging therapeutic target in treatment of neuronal diseases and cancer. However, mechanistic insights into TrKA signaling are lacking due to lack of site-dependent phosphorylation control. Here we engineer two light-sensitive tyrosine analogues, namely p-azido-L-phenylalanine (AzF) and the caged-tyrosine (ONB), through amber codon suppression to optically manipulate the phosphorylation state of individual intracellular tyrosines in TrkA. We identify TrkA-AzF and ONB mutants, which can activate the ERK pathway in the absence of NGF ligand binding through light control. Our results not only reveal how TrkA site-dependent phosphorylation controls the defined signaling process, but also extend the genetic code expansion technology to enable regulation of receptor-type kinase activation by optical control at the precision of a single phosphorylation site. It paves the way for comprehensive analysis of kinase-associated pathways as well as screening of compounds intervening in a site-directed phosphorylation pathway for targeted therapy.

摘要

酪氨酸激酶 A(TrkA)是一种膜受体,在配体结合后,它会激活包括 MAPK/ERK 信号通路在内的多种途径,这些途径与多种人类疾病有关;因此,TrkA 是治疗神经元疾病和癌症的新兴治疗靶点。然而,由于缺乏依赖于位点的磷酸化控制,因此对 TrKA 信号转导的机制见解有限。在这里,我们通过琥珀终止密码子抑制工程设计了两种光敏感的酪氨酸类似物,即对叠氮基-L-苯丙氨酸(AzF)和光笼酪氨酸(ONB),从而可以通过光学手段来操纵 TrkA 中单个细胞内酪氨酸的磷酸化状态。我们鉴定出 TrkA-AzF 和 ONB 突变体,它们可以通过光控在没有 NGF 配体结合的情况下激活 ERK 通路。我们的结果不仅揭示了 TrkA 依赖于位点的磷酸化如何控制特定的信号转导过程,而且还扩展了遗传密码扩展技术,从而可以通过光控在单个磷酸化位点的精度上调节受体型激酶的激活。这为全面分析激酶相关途径以及筛选干预靶向治疗中特定磷酸化途径的化合物铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5d/7689462/031779dddc10/42003_2020_1396_Fig1_HTML.jpg

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