磷脂酸- pka信号调节p38和ERK1/2在不依赖配体的EGFR内吞作用中的功能。

IF 3.6 3区 生物学 Q3 CELL BIOLOGY
Traffic Pub Date : 2021-10-01 DOI:10.1111/tra.12812
Claudia Metz, Claudia Oyanadel, Juan Jung, Claudio Retamal, Jorge Cancino, Jonathan Barra, Jaime Venegas, Guangwei Du, Andrea Soza, Alfonso González
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引用次数: 3

摘要

配体非依赖性表皮生长因子受体(EGFR)的内吞作用可被多种胁迫条件诱导,这些胁迫条件聚集在p38激酶上。一个鲜为人知的途径是磷脂酸(PA)信号传导到4型磷酸二酯酶(PDE4)的激活,从而降低cAMP水平和蛋白激酶A (PKA)活性。这一PA/PDE4/PKA途径是由抑制PA水解的心得安触发的,并诱导网格蛋白依赖性和非网格蛋白依赖性内吞作用,随后EGFR在循环内体中可逆积累。在这里,我们通过在活细胞中使用PA、cAMP和PKA的生物传感器进一步证明了这一信号通路,然后表明它激活p38和ERK1/2下游的PKA抑制。网格蛋白沉默和IN/SUR实验涉及到p38在网格蛋白依赖途径中的活性,而ERK1/2介导网格蛋白独立的EGFR内吞作用。PA/PDE4/PKA通路选择性地增加EGFR的内吞率,而不影响LDLR和TfR的内吞作用。这种选择性可能是因为EGFR磷酸化,正如在Th1046/1047和Ser669残基中检测到的那样。EGFR聚集在与TfR、荧光转铁蛋白和Rab11共定位的核周围再循环核内体中,而一小部分分布在alix核内体中。非选择性回收阻滞包括LDLR和TfR可逆方式。PA/PDE4/PKA通路涉及p38和ERK1/2,扩大了EGFR在癌症中的转调和干扰的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phosphatidic acid-PKA signaling regulates p38 and ERK1/2 functions in ligand-independent EGFR endocytosis.

Ligand-independent epidermal growth factor receptor (EGFR) endocytosis is inducible by a variety of stress conditions converging upon p38 kinase. A less known pathway involves phosphatidic acid (PA) signaling toward the activation of type 4 phosphodiesterases (PDE4) that decrease cAMP levels and protein kinase A (PKA) activity. This PA/PDE4/PKA pathway is triggered with propranolol used to inhibit PA hydrolysis and induces clathrin-dependent and clathrin-independent endocytosis, followed by reversible accumulation of EGFR in recycling endosomes. Here we give further evidence of this signaling pathway using biosensors of PA, cAMP, and PKA in live cells and then show that it activates p38 and ERK1/2 downstream the PKA inhibition. Clathrin-silencing and IN/SUR experiments involved the activity of p38 in the clathrin-dependent route, while ERK1/2 mediates clathrin-independent EGFR endocytosis. The PA/PDE4/PKA pathway selectively increases the EGFR endocytic rate without affecting LDLR and TfR constitute endocytosis. This selectiveness is probably because of EGFR phosphorylation, as detected in Th1046/1047 and Ser669 residues. The EGFR accumulates at perinuclear recycling endosomes colocalizing with TfR, fluorescent transferrin, and Rab11, while a small proportion distributes to Alix-endosomes. A non-selective recycling arrest includes LDLR and TfR in a reversible manner. The PA/PDE4/PKA pathway involving both p38 and ERK1/2 expands the possibilities of EGFR transmodulation and interference in cancer.

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来源期刊
Traffic
Traffic 生物-细胞生物学
CiteScore
8.10
自引率
2.20%
发文量
50
审稿时长
2 months
期刊介绍: Traffic encourages and facilitates the publication of papers in any field relating to intracellular transport in health and disease. Traffic papers span disciplines such as developmental biology, neuroscience, innate and adaptive immunity, epithelial cell biology, intracellular pathogens and host-pathogen interactions, among others using any eukaryotic model system. Areas of particular interest include protein, nucleic acid and lipid traffic, molecular motors, intracellular pathogens, intracellular proteolysis, nuclear import and export, cytokinesis and the cell cycle, the interface between signaling and trafficking or localization, protein translocation, the cell biology of adaptive an innate immunity, organelle biogenesis, metabolism, cell polarity and organization, and organelle movement. All aspects of the structural, molecular biology, biochemistry, genetics, morphology, intracellular signaling and relationship to hereditary or infectious diseases will be covered. Manuscripts must provide a clear conceptual or mechanistic advance. The editors will reject papers that require major changes, including addition of significant experimental data or other significant revision. Traffic will consider manuscripts of any length, but encourages authors to limit their papers to 16 typeset pages or less.
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